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"\u0645\u0643\u062B\u0641 \u0641\u0627\u0626\u0642" , "lang" : "ar" } , { "type" : "literal", "value" : "Superkondensator" , "lang" : "pl" } , { "type" : "literal", "value" : "Superkondensator" , "lang" : "sv" } , { "type" : "literal", "value" : "Superkondensator" , "lang" : "de" } , { "type" : "literal", "value" : "Supercapacitor" , "lang" : "pt" } ] , "http://www.w3.org/2000/01/rdf-schema#comment" : [ { "type" : "literal", "value" : "Um supercapacitor (portugu\u00EAs brasileiro) ou supercondensador (portugu\u00EAs europeu) \u00E9 um tipo de capacitor capaz de armazenar e fornecer uma elevada densidade de pot\u00EAncia em um curto intervalo de tempo, apresenta capacit\u00E2ncia elevada se comparada com outros tipos de capacitores e ocupa o intervalo de aplica\u00E7\u00F5es entre capacitores eletrol\u00EDticos e baterias. Eles tipicamente armazenam de 10 a 100 vezes mais energia por unidade de volume ou massa do que capacitores eletrol\u00EDticos, podem ser carregados muito mais r\u00E1pido do que uma bateria e toleram mais ciclos de carga e descarga do que baterias recarreg\u00E1veis." , "lang" : "pt" } , { "type" : "literal", "value" : "Un supercondensatore (in inglese: supercapacitor) \u00E8 un particolare condensatore che ha la caratteristica di accumulare una quantit\u00E0 di carica elettrica eccezionalmente grande rispetto ai condensatori tradizionali. Infatti mentre questi ultimi hanno valori di capacit\u00E0 dell'ordine dei mF, i supercondensatori possono arrivare oltre i 5000 F (farad). Sono dispositivi di conversione ed accumulo dell'energia caratterizzati da elevate potenze specifiche ed energie di gran lunga superiori rispetto ai condensatori convenzionali." , "lang" : "it" } , { "type" : "literal", "value" : "\u0406\u043E\u043D\u0456\u0441\u0442\u043E\u0440 (\u0441\u0443\u043F\u0435\u0440-\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0443\u043B\u044C\u0442\u0440\u0430-\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440) \u2014 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440 \u0437 \u043E\u0431\u043C\u0435\u0436\u0435\u043D\u0438\u043C \u0430\u0431\u043E \u043D\u0435\u043E\u0431\u043C\u0435\u0436\u0435\u043D\u0438\u043C \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0456\u0442\u043E\u043C, \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u0432 \u044F\u043A\u043E\u043C\u0443 \u0441\u043B\u0443\u0436\u0438\u0442\u044C \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u0438\u0439 \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u0438\u0439 \u0448\u0430\u0440 \u043D\u0430 \u043C\u0435\u0436\u0456 \u0440\u043E\u0437\u0434\u0456\u043B\u0443 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 \u0456 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0456\u0442\u0443. \u0423 \u0437\u0432'\u044F\u0437\u043A\u0443 \u0437 \u0442\u0438\u043C, \u0449\u043E \u0442\u043E\u0432\u0449\u0438\u043D\u0430 \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u043E\u0433\u043E \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u043E\u0433\u043E \u0448\u0430\u0440\u0443 (\u0442\u043E\u0431\u0442\u043E \u0432\u0456\u0434\u0441\u0442\u0430\u043D\u044C \u043C\u0456\u0436 \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u0430) \u0434\u0443\u0436\u0435 \u043C\u0430\u043B\u0430, \u043D\u0430\u043A\u043E\u043F\u0438\u0447\u0435\u043D\u0430 \u0456\u043E\u043D\u0456\u0441\u0442\u043E\u0440\u043E\u043C \u0435\u043D\u0435\u0440\u0433\u0456\u044F \u0432\u0438\u0449\u0430 \u0432 \u043F\u043E\u0440\u0456\u0432\u043D\u044F\u043D\u043D\u0456 \u0437\u0456 \u0437\u0432\u0438\u0447\u0430\u0439\u043D\u0438\u043C\u0438 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u0430\u043C\u0438 \u0442\u043E\u0433\u043E \u0436 \u0440\u043E\u0437\u043C\u0456\u0440\u0443. \u0414\u043E \u0442\u043E\u0433\u043E \u0436, \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u0430\u043D\u043D\u044F \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u043E\u0433\u043E \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u043E\u0433\u043E \u0448\u0430\u0440\u0443 \u0437\u0430\u043C\u0456\u0441\u0442\u044C \u0437\u0432\u0438\u0447\u0430\u0439\u043D\u043E\u0433\u043E \u0434\u0456\u0435\u043B\u0435\u043A\u0442\u0440\u0438\u043A\u0430 \u0434\u043E\u0437\u0432\u043E\u043B\u044F\u0454 \u043D\u0430\u0431\u0430\u0433\u0430\u0442\u043E \u0437\u0431\u0456\u043B\u044C\u0448\u0438\u0442\u0438 \u043F\u043B\u043E\u0449\u0443 \u043F\u043E\u0432\u0435\u0440\u0445\u043D\u0456 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 (\u043D\u0430\u043F\u0440\u0438\u043A\u043B\u0430\u0434, \u0448\u043B\u044F\u0445\u043E\u043C \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u0430\u043D\u043D\u044F \u043F\u043E\u0440\u0438\u0441\u0442\u0438\u0445 \u043C\u0430\u0442\u0435\u0440\u0456\u0430\u043B\u0456\u0432, \u0442\u0430\u043A\u0438\u0445, \u044F\u043A \u0430\u043A\u0442\u0438\u0432\u043E\u0432\u0430\u043D\u0435 \u0432\u0443\u0433\u0456\u043B\u043B\u044F \u0430\u0431\u043E \u0441\u043F\u0456\u043D\u0435\u043D\u0456 \u043C\u0435\u0442\u0430\u043B\u0438). \u041F\u0438\u0442\u043E\u043C\u0430 \u0454\u043C\u043D\u0456\u0441\u0442\u044C \u0456\u043E\u043D\u0456\u0441\u0442\u043E\u0440\u0430 \u0441\u044F\u0433\u0430\u0454 \u0434\u0435\u0441\u044F\u0442\u043A\u0430 , \u043F\u0440\u0438 \u043D\u043E\u043C\u0456\u043D\u0430\u043B\u044C\u043D\u0456\u0439 \u043D\u0430\u043F\u0440\u0443\u0437\u0456 2-4 \u0432\u043E\u043B\u044C\u0442\u0430." , "lang" : "uk" } , { "type" : "literal", "value" : "Superkapasitor (atau dalam bahasa Inggris: supercap, ultracapacitor or Goldcap) adalah kapasitor yang memiliki nilai kapasitansi jauh melebihi kapasitor lain (namun dengan batas tegangan yang lebih rendah), dan dapat dianggap sebagai pertengahan antara kapasitor elektrolit (biasa) dan baterai isi ulang. Superkapasitor dapat menyimpan muatan per kubik 10 hingga 100 kali lebih banyak dari kapasitor elektrolit, bisa menerima dan menyalurkan muatan lebih cepat dari baterai, dan mempunyai toleransi terhadap siklus cas/pakai lebih baik dari baterai yang dapat dicas ulang." , "lang" : "in" } , { "type" : "literal", "value" : "\u0627\u0644\u0645\u064F\u0643\u062B\u0650\u0651\u0641 \u0627\u0644\u0641\u0627\u0626\u0642 (\u0628\u0627\u0644\u0625\u0646\u062C\u0644\u064A\u0632\u064A\u0629: Supercapacitor)\u200F \u0647\u0648 \u0645\u0643\u062B\u0641 \u0639\u0627\u0644\u064A \u0627\u0644\u0633\u0639\u0629\u060C \u0641\u062A\u0643\u0648\u0646 \u0642\u064A\u0645\u0629 \u0633\u0639\u062A\u0647 \u0623\u0643\u062B\u0631 \u0628\u0643\u062B\u064A\u0631 \u0645\u0646 \u0627\u0644\u0645\u0643\u062B\u0641\u0627\u062A \u0627\u0644\u0639\u0627\u062F\u064A\u0629 (\u0648\u0644\u0643\u0646 \u0642\u064A\u0645 \u062C\u0647\u062F\u0647 \u0627\u0644\u0643\u0647\u0631\u0628\u0627\u0626\u064A \u062A\u0643\u0648\u0646 \u0645\u0646\u062E\u0641\u0636\u0629)\u060C \u0648\u064A\u062F\u0645\u062C \u0627\u0644\u0645\u0643\u062B\u0641 \u0641\u0643\u0631\u062A\u064A \u0627\u0644\u0645\u0643\u062B\u0641 \u0627\u0644\u0643\u0647\u0631\u0644\u064A \u0648\u0627\u0644\u0628\u0637\u0627\u0631\u064A\u0627\u062A \u0627\u0644\u0642\u0627\u0628\u0644\u0629 \u0644\u0625\u0639\u0627\u062F\u0629 \u0627\u0644\u0634\u062D\u0646 (\u0648\u0627\u0644\u062A\u064A \u062A\u064F\u0639\u0631\u0641 \u0628\u0627\u0644\u062E\u0644\u064A\u0629 \u0627\u0644\u062B\u0627\u0646\u0648\u064A\u0629). \u064A\u064F\u062E\u0632\u0646 \u0627\u0644\u0645\u0643\u062B\u0641 \u0627\u0644\u0641\u0627\u0626\u0642 \u0637\u0627\u0642\u0629 \u0644\u0643\u0644 \u0648\u062D\u062F\u0629 \u062D\u062C\u0645 \u0623\u0648 \u0644\u0643\u0644 \u0648\u062D\u062F\u0629 \u0643\u062A\u0644\u0629 \u0623\u0643\u062B\u0631 \u0645\u0646 \u0627\u0644\u0645\u0643\u062B\u0641 \u0627\u0644\u0643\u0647\u0631\u0644\u064A \u0628\u0639\u0634\u0631\u0629 \u0623\u0636\u0639\u0627\u0641 \u0644\u0645\u0626\u0629 \u0636\u0639\u0641\u060C \u0648\u064A\u0642\u0628\u0644 \u0648\u064A\u064F\u0648\u0635\u0644 \u0627\u0644\u0634\u062D\u0646\u0627\u062A \u0623\u0633\u0631\u0639 \u0645\u0646 \u0627\u0644\u0628\u0637\u0627\u0631\u064A\u0629\u060C \u0648\u064A\u062A\u062D\u0645\u0644 \u0627\u0644\u0639\u062F\u064A\u062F \u0645\u0646 \u062F\u0648\u0631\u0627\u062A \u0627\u0644\u0634\u062D\u0646 \u0648\u0627\u0644\u062A\u0641\u0631\u064A\u063A \u0623\u0643\u062B\u0631 \u0645\u0646 \u0627\u0644\u0628\u0637\u0627\u0631\u064A\u0627\u062A \u0627\u0644\u0642\u0627\u0628\u0644\u0629 \u0644\u0625\u0639\u0627\u062F\u0629 \u0627\u0644\u0634\u062D\u0646.\u062A\u064F\u0633\u062A\u062E\u062F\u0645 \u0627\u0644\u0645\u0643\u062B\u0641\u0627\u062A \u0627\u0644\u0641\u0627\u0626\u0642\u0629 \u0641\u064A \u0627\u0644\u062A\u0637\u0628\u064A\u0642\u0627\u062A \u0627\u0644\u062A\u064A \u062A\u062A\u0637\u0644\u0628 \u0627\u0644\u0639\u062F\u064A\u062F \u0645\u0646 \u062F\u0648\u0631\u0627\u062A \u0627\u0644\u0634\u062D\u0646 \u0623\u0648 \u0627\u0644\u062A\u0641\u0631\u064A\u063A \u0627\u0644\u0633\u0631\u064A\u0639 \u0628\u062F\u0644\u064B\u0627 \u0645\u0646 \u062A\u062E\u0632\u064A\u0646 \u0627\u0644\u0637\u0627\u0642\u0629 \u0627\u0644\u0645\u062F\u0645\u062C\u0629 \u0639\u0644\u0649 \u0627\u0644\u0645\u062F\u0649 \u0627\u0644\u0637\u0648\u064A\u0644\u060C \u0648\u0645\u0646 \u0627\u0644\u0623\u0645\u062B\u0644\u0629 \u0639\u0644\u0649 \u0630\u0644\u0643: \u062F\u0627\u062E\u0644 \u0627\u0644\u0633\u064A\u0627\u0631\u0627\u062A\u060C \u0648\u0627\u0644\u062D\u0627\u0641\u0644\u0627\u062A\u060C \u0648\u0627\u0644\u0642\u0637\u0627\u0631\u0627\u062A\u060C \u0648\u0627\u0644\u0631\u0627\u0641\u0639\u0627\u062A\u060C \u0648\u0627\u0644\u0645\u0635\u0627\u0639\u062F\u060C \u0648\u064A\u064F\u0633\u062A\u062E\u062F\u0645 \u0623\u064A\u0636\u064B\u0627 \u0641\u064A \u060C \u0648\u0641\u064A \u062A\u062E\u0632\u064A\u0646 \u0627\u0644\u0637\u0627\u0642\u0629 \u0639\u0644\u0649 \u0627\u0644\u0645\u062F\u0649 \u0627\u0644\u0642\u0635\u064A\u0631\u060C \u0648\u0644\u062A\u0648\u0635\u064A\u0644 \u0627\u0644\u0637\u0627\u0642\u0629 \u0641\u064A \u0648\u0636\u0639 \u0627\u0644\u0627\u0646\u062F\u0641\u0627\u0639. \u0648\u062A\u064F\u0633\u062A\u062E\u062F\u0645 \u0627\u0644\u0648\u062D\u062F\u0627\u062A \u0627\u0644\u0635\u063A\u064A\u0631\u0629 \u0645\u0646 \u0647" , "lang" : "ar" } , { "type" : "literal", "value" : "Un supercondensador o ultracondensador \u00E9s un condensador electroqu\u00EDmic que t\u00E9 una extraordin\u00E0riament alta. Tenen aplicacions en el camp dels vehicles h\u00EDbrids com a magatzem d'energia suplementari i en el futur estan destinats a substituir les bateries." , "lang" : "ca" } , { "type" : "literal", "value" : "\u96D9\u96FB\u5C64\u96FB\u5BB9\u5668\uFF08\u82F1\u8A9E\uFF1AElectrostatic double-layer capacitor\uFF09\u6709\u6642\u4E5F\u7A31\u70BA\u96FB\u96D9\u5C64\u96FB\u5BB9\u5668\uFF0C\u6216\u8D85\u7EA7\u96FB\u5BB9\u5668\uFF0C\u662F\u62E5\u6709\u9AD8\u80FD\u91CF\u5BC6\u5EA6\u7684\u7535\u5316\u5B66\u7535\u5BB9\u5668\uFF0C\u6BD4\u50B3\u7D71\u7684\u7535\u89E3\u7535\u5BB9\u5BB9\u91CF\u9AD8\u4E0A\u6578\u767E\u500D\u81F3\u5343\u500D\u4E0D\u7B49\u3002 \u4E00\u4E2A\u6A19\u6E96\u96FB\u6C60\u5927\u5C0F\u7684\u7535\u89E3\u7535\u5BB9\u7535\u5BB9\u4E3A\u51E0\u5341\u5FAE\u6CD5\u62C9\uFF0C\u4F46\u540C\u6837\u5927\u5C0F\u7684EDLC\u7684\u5247\u53EF\u4EE5\u8FBE\u5230\u51E0\u6CD5\u62C9\uFF0C\u5DEE\u5225\u53EF\u9054\u4E94\u4E2A\u6570\u91CF\u7EA7\u3002\u622A\u81F3\u57282010\u5E74\uFF0C\u6700\u9AD8\u5546\u4E1A\u5316\u53CC\u7535\u5C42\u7535\u5BB9\u5668\u7684\u80FD\u91CF\u5BC6\u5EA6\u4E3A30 W\u22C5h/kg (0.1 MJ/kg)\u3002\u9AD8\u8FBE85 W\u22C5h/kg\u7684\u80FD\u91CF\u5BC6\u5EA6\u5DF2\u5728\u5BA4\u6E29\u5B9E\u9A8C\u5BA4\u5B9E\u73B0\uFF0C\u4F46\u4ECD\u7136\u6BD4\u9502\u79BB\u5B50\u7535\u6C60\u4F4E\u3002 2011\u5E74\uFF0C\u5728\u5B9E\u9A8C\u5BA4\u7684\u96D9\u96FB\u5C64\u96FB\u5BB9\u5668\u7684\u80FD\u91CF\u5BC6\u5EA6\u63D0\u9AD8\u4E86\u4E00\u500B\u6578\u91CF\u7EA7\u3002EDLC\u7684\u4EF7\u683C\u4EA6\u6B63\u5728\u4E0B\u964D\uFF1A\u57282000\u5E74\u6210\u672C\u70BA5000\u7F8E\u5143\u76843 kF\u7535\u5BB9\u57282011\u5E74\u53EA\u970050\u7F8E\u5143\u3002 \u53CC\u7535\u5C42\u7535\u5BB9\u5668\u4E3B\u8981\u7528\u4E8E\u80FD\u6E90\u50A8\u5B58\uFF0C\u800C\u975E\u901A\u7528\u7535\u8DEF\u5143\u4EF6\uFF0C\u7279\u522B\u9002\u7528\u4E8E\u7CBE\u5BC6\u80FD\u6E90\u63A7\u5236\u548C\u77AC\u95F4\u8D1F\u8F7D\u8BBE\u5907\u3002EDLC\u4E5F\u6709\u4F5C\u4E3A\u80FD\u91CF\u50A8\u5B58\u548C\u52D5\u80FD\u56DE\u6536\u7CFB\u7D71\u8BBE\u5907\u5728\u8F66\u8F86\u4F7F\u7528\uFF0C\u53E6\u5916\u4EA6\u6709\u7528\u65BC\u5176\u4ED6\u5C0F\u578B\u7CFB\u7D71\uFF0C\u4F8B\u5982\u9700\u8981\u5FEB\u901F\u5145\uFF0F\u653E\u96FB\u7684\u5BB6\u7528\u592A\u9633\u80FD\u7CFB\u7EDF\u3002" , "lang" : "zh" } , { "type" : "literal", "value" : "\u0418\u043E\u043D\u0438\u0301\u0441\u0442\u043E\u0440 (\u0441\u0443\u043F\u0435\u0440\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0443\u043B\u044C\u0442\u0440\u0430\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0434\u0432\u0443\u0445\u0441\u043B\u043E\u0439\u043D\u044B\u0439 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u0438\u0439 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440) \u2014 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u043E\u0435 \u0443\u0441\u0442\u0440\u043E\u0439\u0441\u0442\u0432\u043E, \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440 \u0441 \u043E\u0440\u0433\u0430\u043D\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u0438\u043B\u0438 \u043D\u0435\u043E\u0440\u0433\u0430\u043D\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0438\u0442\u043E\u043C, \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u0432 \u043A\u043E\u0442\u043E\u0440\u043E\u043C \u0441\u043B\u0443\u0436\u0438\u0442 \u0434\u0432\u043E\u0439\u043D\u043E\u0439 \u044D\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u0435\u0441\u043A\u0438\u0439 \u0441\u043B\u043E\u0439 \u043D\u0430 \u0433\u0440\u0430\u043D\u0438\u0446\u0435 \u0440\u0430\u0437\u0434\u0435\u043B\u0430 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 \u0438 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0438\u0442\u0430. \u041F\u043E \u0445\u0430\u0440\u0430\u043A\u0442\u0435\u0440\u0438\u0441\u0442\u0438\u043A\u0430\u043C \u0437\u0430\u043D\u0438\u043C\u0430\u0435\u0442 \u043F\u0440\u043E\u043C\u0435\u0436\u0443\u0442\u043E\u0447\u043D\u043E\u0435 \u043F\u043E\u043B\u043E\u0436\u0435\u043D\u0438\u0435 \u043C\u0435\u0436\u0434\u0443 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u043E\u043C \u0438 \u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u0438\u0441\u0442\u043E\u0447\u043D\u0438\u043A\u043E\u043C \u0442\u043E\u043A\u0430." , "lang" : "ru" } , { "type" : "literal", "value" : "Superkondensatoro (markonomoj Goldcaps, Supercaps, BoostCaps a\u016D Ultracaps) estas kondensatoro, kun pli granda ol \u0109e kutimaj kondensatoroj. \u011Cia pli granda kapacito bazi\u011Das je granda elektroda surfaco kaj kaj likva elektrolito. La superkondensatoro konsistas el du elektrodoj, kiuj surretas elektroliton kaj kolektas, altiras la jonojn okaze de tensio. \u011Ci rezervas la energion ne kemie, sed elektrostatike. La elekroda surfaco kun povas atingi la surfacan grandon de 3.000 m2/g, dum karbon-aero\u011Dela (CRF) atingis e\u0109 pli grandan surfacon. La energio-enteno de la kondensatoro kun kapacito donas jene: ," , "lang" : "eo" } , { "type" : "literal", "value" : "Los supercondensadores, tambi\u00E9n conocidos como condensadores electroqu\u00EDmicos de doble capa, pseudocapacitores, ultracapacitores o simplemente EDLC por sus siglas en ingl\u00E9s, son dispositivos electroqu\u00EDmicos capaces de sustentar una densidad de energ\u00EDa inusualmente alta en comparaci\u00F3n con los condensadores normales, presentando una capacidad miles de veces mayor que la de los condensadores electrol\u00EDticos de alta capacidad." , "lang" : "es" } , { "type" : "literal", "value" : "\u96FB\u6C17\u4E8C\u91CD\u5C64\u30B3\u30F3\u30C7\u30F3\u30B5\uFF08\u3067\u3093\u304D\u306B\u3058\u3085\u3046\u305D\u3046\u30B3\u30F3\u30C7\u30F3\u30B5\u3001\u82F1: electric double-layer capacitor\u3001EDLC\uFF09\u306F\u3001\u96FB\u6C17\u4E8C\u91CD\u5C64\u3068\u3044\u3046\u7269\u7406\u73FE\u8C61\u3092\u5229\u7528\u3059\u308B\u3053\u3068\u3067\u84C4\u96FB\u91CF\u304C\u8457\u3057\u304F\u9AD8\u3081\u3089\u308C\u305F\u30B3\u30F3\u30C7\u30F3\u30B5\uFF08\u30AD\u30E3\u30D1\u30B7\u30BF\uFF09\u3067\u3042\u308B\u300220\u4E16\u7D00\u672B\u304B\u3089\u96FB\u6C17\u4E8C\u91CD\u5C64\u30AD\u30E3\u30D1\u30B7\u30BF\u306E\u958B\u767A\u304C\u59CB\u307E\u308A\u3001\u3044\u304F\u3064\u304B\u306E\u5206\u91CE\u3067\u4F7F\u7528\u304C\u59CB\u307E\u3063\u3066\u3044\u308B\u3002\u4ECA\u5F8C\u6027\u80FD\u304C\u3055\u3089\u306B\u5411\u4E0A\u3059\u308C\u3070\u30EA\u30C1\u30A6\u30E0\u30A4\u30AA\u30F3\u96FB\u6C60\u306A\u3069\u306E\u4E8C\u6B21\u96FB\u6C60\u3092\u4EE3\u66FF\u3059\u308B\u53EF\u80FD\u6027\u304C\u3042\u308B\u3002 \u96FB\u6C17\u4E8C\u91CD\u5C64\u30AD\u30E3\u30D1\u30B7\u30BF\u306F\u967D\u6975\u3068\u9670\u6975\u306E2\u3064\u306E\u96FB\u6975\u3092\u6301\u3064\u304C\u3001\u3053\u306E2\u3064\u304C\u4E8C\u91CD\u5C64\u3068\u3044\u3046\u540D\u524D\u306E\u5143\u3068\u306A\u3063\u305F\u308F\u3051\u3067\u306F\u306A\u304F\u3001\u4E21\u6975\u305D\u308C\u305E\u308C\u306E\u8868\u9762\u4ED8\u8FD1\u3067\u8D77\u3053\u308B\u7269\u7406\u73FE\u8C61\u3067\u3042\u308B\u300C\u96FB\u6C17\u4E8C\u91CD\u5C64\u300D\u304C\u5143\u3068\u306A\u3063\u3066\u3044\u308B\u3002\u96FB\u6C17\u4E8C\u91CD\u5C64\u30AD\u30E3\u30D1\u30B7\u30BF\u306F\u30A6\u30EB\u30C8\u30E9\u30FB\u30AD\u30E3\u30D1\u30B7\u30BF\uFF08\u82F1: ultracapacitor\uFF09\u3084\u30B9\u30FC\u30D1\u30FC\u30FB\u30AD\u30E3\u30D1\u30B7\u30BF\uFF08\u82F1: supercapacitor\uFF09\u3068\u3082\u547C\u3070\u308C\u308B\u3002" , "lang" : "ja" } , { "type" : "literal", "value" : "Superkondensator (eller kemisk kondensator) \u00E4r en typ av kondensator med mycket h\u00F6g kapacitans, den kan lagra mycket h\u00F6ga elektriska laddningar. Den h\u00F6ga kapacitansen uppn\u00E5s genom det elektriska dubbelskiktet, vilket inneb\u00E4r en mycket stor yta mellan kondensatorns \"plattor\". D\u00E5 en st\u00F6rre yta inneb\u00E4r st\u00F6rre kapacitans s\u00E5 \u00E4r detta \u00F6nskv\u00E4rt. Att ytan blir stor beror p\u00E5 att molekylerna i kondensatorn \u00E4r vecklade kring varandra." , "lang" : "sv" } , { "type" : "literal", "value" : "Superkondensatoren (englisch Supercapacitors, kurz Supercaps oder SC), auch Ultrakondensatoren genannt, sind elektrochemische Kondensatoren (englisch electrochemical capacitors) und als solche eine Weiterentwicklung der Doppelschichtkondensatoren (englisch electric double-layer capacitor, EDLC)." , "lang" : "de" } , { "type" : "literal", "value" : "Superkondensator lub ultrakondensator \u2013 rodzaj kondensatora elektrolitycznego o specyficznej konstrukcji, kt\u00F3ry wykazuje niezwykle du\u017C\u0105 pojemno\u015B\u0107 elektryczn\u0105 (rz\u0119du kilku tysi\u0119cy farad\u00F3w), w por\u00F3wnaniu z klasycznymi kondensatorami elektrolitycznymi du\u017Cej pojemno\u015Bci, lecz przy napi\u0119ciu pracy 2-3 V (typowo 2,7 V). Najwi\u0119ksz\u0105 zalet\u0105 superkondensator\u00F3w jest bardzo kr\u00F3tki czas \u0142adowania i roz\u0142adowania w por\u00F3wnaniu z innymi urz\u0105dzeniami do przechowywania energii (np. akumulatorami). Pozwala to na uzyskanie mocy zasilania dochodz\u0105cej do 10 kW na kilogram masy kondensatora." , "lang" : "pl" } , { "type" : "literal", "value" : "A supercapacitor (SC), also called an ultracapacitor, is a high-capacity capacitor, with a capacitance value much higher than other capacitors but with lower voltage limits. It bridges the gap between electrolytic capacitors and rechargeable batteries. It typically stores 10 to 100 times more energy per unit volume or mass than electrolytic capacitors, can accept and deliver charge much faster than batteries, and tolerates many more charge and discharge cycles than rechargeable batteries." , "lang" : "en" } , { "type" : "literal", "value" : "Een supercondensator is een condensator met een uitzonderlijk hoge elektrische capaciteit van 1 tot vele farad, maar met relatief hoge lekstroom. De maximale spanning per element is ongeveer 2,7 V. De supercondensator vult het gat op tussen een elektrolytische condensator en een oplaadbare batterij. Hij is een verdere ontwikkeling van de elektrische dubbellaagcondensator. In supercondensatoren is de elektrolyt de geleidende verbinding tussen twee elektroden, terwijl bij elektrolytische condensatoren de elektrolyt de kathode is en dus de tweede elektrode vormt. Pseudocondensatoren en hybride supercondensatoren die elektrochemische ladingseigenschappen hebben, mogen niet met omgekeerde polariteit worden gebruikt, wat hun gebruik bij wisselstroom uitsluit. Deze beperking is echter niet van to" , "lang" : "nl" } , { "type" : "literal", "value" : "Un supercondensateur est un condensateur de technique particuli\u00E8re permettant d'obtenir une densit\u00E9 de puissance et une densit\u00E9 d'\u00E9nergie interm\u00E9diaires entre les batteries et les condensateurs \u00E9lectrolytiques classiques. Un supercondensateur est principalement constitu\u00E9 de collecteurs de courant (g\u00E9n\u00E9ralement en aluminium), d'\u00E9lectrodes (une anode et une cathode) g\u00E9n\u00E9ralement en charbon actif impr\u00E9gn\u00E9es d'un \u00E9lectrolyte organique ou aqueux, et d'un s\u00E9parateur qui isole les deux \u00E9lectrodes l'une de l'autre." , "lang" : "fr" } ] , "http://www.w3.org/2000/01/rdf-schema#seeAlso" : [ { "type" : "uri", "value" : "http://dbpedia.org/resource/Hybrid_vehicle_drivetrain" } ] , "http://xmlns.com/foaf/0.1/depiction" : [ { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Pseudocapacitance-Priciple.png" } , { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Variable_capacitance_vs_device_voltage.png" } , { "type" : "uri", "value" : "http://commons.wikimedia.org/wiki/Special:FilePath/Figure4CDC.jpg" } , { "type" : "uri", "value" : 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La superkondensatoro konsistas el du elektrodoj, kiuj surretas elektroliton kaj kolektas, altiras la jonojn okaze de tensio. \u011Ci rezervas la energion ne kemie, sed elektrostatike. La elekroda surfaco kun povas atingi la surfacan grandon de 3.000 m2/g, dum karbon-aero\u011Dela (CRF) atingis e\u0109 pli grandan surfacon. La energio-enteno de la kondensatoro kun kapacito donas jene: , kie estas la \u015Dar\u011Da tensio. Se la superkondensatoro fordonas energion , la fordona tempo estas kalkulebla jene: , estas la minimuma funkcia tensio. Se iu uzanto eluzas \u011Din per konstanta povumo , oni povas kalkuli la funkcian tempon jene: . Grava specifa propreco de la superkondensatoroj estas la povuma denso (Vatto/kg). La kapacito de merkatkutima superkondensatoro estas (2007) de 1 \u011Dis 50 Farado \u0109e tensio de 2,3...2,75 Volto. \u011Ci povas servi kiel aldona energiodona ekipa\u0135o apud baterioj. La superkondensatoro tre rapide fordonas kaj akceptas energion. La unuan superkondensatoron patentigis en 1957 General Electric (kun karbona elektrodo)." , "lang" : "eo" } , { "type" : "literal", "value" : "Un supercondensateur est un condensateur de technique particuli\u00E8re permettant d'obtenir une densit\u00E9 de puissance et une densit\u00E9 d'\u00E9nergie interm\u00E9diaires entre les batteries et les condensateurs \u00E9lectrolytiques classiques. Compos\u00E9s de plusieurs cellules mont\u00E9es en s\u00E9rie-parall\u00E8le, ils permettent une tension et un courant de sortie \u00E9lev\u00E9s (densit\u00E9 de puissance de l'ordre de plusieurs kW/kg) et stockent une quantit\u00E9 d'\u00E9nergie interm\u00E9diaire entre les deux modes de stockage cit\u00E9s ci-dessus (densit\u00E9 d'\u00E9nergie de l'ordre de quelque Wh/kg), et peuvent la restituer plus rapidement qu'une batterie. Ils sont donc souvent utilis\u00E9s comme \u00E9l\u00E9ment de stockage d\u2019appoint d'\u00E9nergie, en compl\u00E9ment \u00E0 des batteries ou \u00E0 une pile \u00E0 combustible. Ils pr\u00E9sentent notamment l'int\u00E9r\u00EAt d'\u00EAtre efficaces par tr\u00E8s faible temp\u00E9rature. Un supercondensateur est principalement constitu\u00E9 de collecteurs de courant (g\u00E9n\u00E9ralement en aluminium), d'\u00E9lectrodes (une anode et une cathode) g\u00E9n\u00E9ralement en charbon actif impr\u00E9gn\u00E9es d'un \u00E9lectrolyte organique ou aqueux, et d'un s\u00E9parateur qui isole les deux \u00E9lectrodes l'une de l'autre." , "lang" : "fr" } , { "type" : "literal", "value" : "Een supercondensator is een condensator met een uitzonderlijk hoge elektrische capaciteit van 1 tot vele farad, maar met relatief hoge lekstroom. De maximale spanning per element is ongeveer 2,7 V. De supercondensator vult het gat op tussen een elektrolytische condensator en een oplaadbare batterij. Hij is een verdere ontwikkeling van de elektrische dubbellaagcondensator. In supercondensatoren is de elektrolyt de geleidende verbinding tussen twee elektroden, terwijl bij elektrolytische condensatoren de elektrolyt de kathode is en dus de tweede elektrode vormt. Pseudocondensatoren en hybride supercondensatoren die elektrochemische ladingseigenschappen hebben, mogen niet met omgekeerde polariteit worden gebruikt, wat hun gebruik bij wisselstroom uitsluit. Deze beperking is echter niet van toepassing op de elektrostatische dubbellaagsupercondensatoren. In vergelijking met accumulatoren van hetzelfde gewicht, zijn supercondensatoren slechts goed voor ongeveer 10% van hun energiedichtheid, terwijl hun vermogensdichtheid ongeveer 10 tot 100 keer zo groot is. Supercondensatoren kunnen daardoor veel sneller worden opgeladen en ontladen. Ze kunnen ook veel vaker herhaaldelijk opgeladen en ontladen worden dan oplaadbare batterijen en zijn daardoor geschikt als vervanging of aanvulling wanneer er vaak opgeladen en ontladen wordt. Het toepassingsgebied van supercondensatoren varieert van het afgeven van zeer kleine stromen voor het bewaren van gegevens in de static random-access memory (SRAM) in elektronische apparaten tot aan het gebied van vermogenselektronica, bijvoorbeeld als opslag van elektrische energie in een KERS-systeem bij formule 1-raceauto's, in het terugwinnen van remenergie bij voertuigen zoals stadsbussen en treinen, in hybride auto's of bij een railgun. Supercondensatoren kunnen effectief opereren tussen \u221250 \u00B0C en 80 \u00B0C, waardoor zij in veel omgevingen ingezet kunnen worden. In 2016 bedroeg de wereldwijde verkoop van supercondensatoren ongeveer US$ 400 miljoen. De verwachting is dat de wereldwijde omzet van supercondensatoren vanaf 2016 jaarlijks met 28,7% groeit tot $ 6,3 miljard in 2022. Bij een geavanceerde lood-koolstofaccu (ALC=advanced lead-carbon) is aan de negatieve plaat (kathode) van de loodaccu koolstof toegevoegd, waardoor er als het ware een asymmetrische supercondensator ontstaat, wat de loodaccu verbeterde laad- en ontlaadprestaties heeft gekregen." , "lang" : "nl" } , { "type" : "literal", "value" : "A supercapacitor (SC), also called an ultracapacitor, is a high-capacity capacitor, with a capacitance value much higher than other capacitors but with lower voltage limits. It bridges the gap between electrolytic capacitors and rechargeable batteries. It typically stores 10 to 100 times more energy per unit volume or mass than electrolytic capacitors, can accept and deliver charge much faster than batteries, and tolerates many more charge and discharge cycles than rechargeable batteries. Supercapacitors are used in applications requiring many rapid charge/discharge cycles, rather than long-term compact energy storage \u2014 in automobiles, buses, trains, cranes and elevators, where they are used for regenerative braking, short-term energy storage, or burst-mode power delivery. Smaller units are used as power backup for static random-access memory (SRAM). Unlike ordinary capacitors, supercapacitors do not use the conventional solid dielectric, but rather, they use electrostatic double-layer capacitance and electrochemical pseudocapacitance, both of which contribute to the total capacitance of the capacitor, with a few differences: \n* Electrostatic double-layer capacitors (EDLCs) use carbon electrodes or derivatives with much higher electrostatic double-layer capacitance than electrochemical pseudocapacitance, achieving separation of charge in a Helmholtz double layer at the interface between the surface of a conductive electrode and an electrolyte. The separation of charge is of the order of a few \u00E5ngstr\u00F6ms (0.3\u20130.8 nm), much smaller than in a conventional capacitor. \n* Electrochemical pseudocapacitors use metal oxide or conducting polymer electrodes with a high amount of electrochemical pseudocapacitance additional to the double-layer capacitance. Pseudocapacitance is achieved by Faradaic electron charge-transfer with redox reactions, intercalation or electrosorption. \n* Hybrid capacitors, such as the lithium-ion capacitor, use electrodes with differing characteristics: one exhibiting mostly electrostatic capacitance and the other mostly electrochemical capacitance. The electrolyte forms an ionic conductive connection between the two electrodes which distinguishes them from conventional electrolytic capacitors where a dielectric layer always exists, and the so-called electrolyte, e.g., MnO2 or conducting polymer, is in fact part of the second electrode (the cathode, or more correctly the positive electrode). Supercapacitors are polarized by design with asymmetric electrodes, or, for symmetric electrodes, by a potential applied during manufacturing." , "lang" : "en" } , { "type" : "literal", "value" : "Superkapasitor (atau dalam bahasa Inggris: supercap, ultracapacitor or Goldcap) adalah kapasitor yang memiliki nilai kapasitansi jauh melebihi kapasitor lain (namun dengan batas tegangan yang lebih rendah), dan dapat dianggap sebagai pertengahan antara kapasitor elektrolit (biasa) dan baterai isi ulang. Superkapasitor dapat menyimpan muatan per kubik 10 hingga 100 kali lebih banyak dari kapasitor elektrolit, bisa menerima dan menyalurkan muatan lebih cepat dari baterai, dan mempunyai toleransi terhadap siklus cas/pakai lebih baik dari baterai yang dapat dicas ulang. Superkapasitor digunakan dalam aplikasi yang membutuhkan sumber energi yang memiliki siklus cas/pakai lebih cepat daripada sumber energi yang tahan lama: di dalam mobil, bus, kereta api, mesin derek dan tangga berjalan. Superkapasitor yang lebih kecil digunakan untuk pemasok daya bagi memori akses acak statis (SRAM). Tidak seperti kapasitor biasa yang menggunakan dielektrik padat, superkapasitor menggunakan kapasitansi elektrostatis lapis-ganda dan pseudo-kapasitansi elektrokimia, yang keduanya turut andil dalam total kapasitansi yang dimiliki superkapasitor, dengan beberapa perbedaan: \n* Kapasitor lapis-ganda elektrostatis (electrostatic double-layer capacitors/EDLCs) menggunakan karbon sebagai elektrode atau sejenis dengan jumlah kapasitansi elektrostatis lapis-ganda lebih besar dari jumlah pseudo-kapasitansi elektrokimia, menimbulkan pemisahan muatan lapis-ganda Helmholtz pada permukaan elektrode konduktif dan elektrolit. Jumlah pemisahan muatannya adalah beberapa \u00E5ngstr\u00F6m (0,3-0,8 nm), lebih kecil daripada kapasitor biasa. \n* Pseudo-kapasitor elektrokimia menggunakan metal oksida atau elektrode berbahan polimer konduktif dengan jumlah pseudo-kapasitansi elektrokimia lebih tinggi ditambah dengan kapasitansi lapis-ganda. Pseudo-kapasitansi dicapai melalui pemidahan elektron Faradais dengan redoks, interkalasi, dan penyerapan oleh permukaan elektrode. \n* Kapasitor hibrid, seperti kapasitor litium-ion, menggunakan elektrode dengan karakteristik berbeda: satu menonjolkan kapasitansi elektrostatis sementara yang lain lebih menonjolkan kapasitansi elektrokimia. Elektrolit yang terkandung dalam superkapasitor membentuk hubungan konduksi ionis antara dua elektrode yang membedakan superkapasitor dari kapasitor elektrolit yang mana lapisan dielektrik merupakan keharusan, lalu yang disebut elektrolit (contoh: MnO2 atau polimer konduktif) sebenarnya adalah bagian dari elektrode kedua (katode, atau lebih tepat lagi elektrode positif). Superkapasitor dipolarisasi untuk elektrode asimetris, atau untuk elektrode simetris, dengan potensial yang dikenakan saat proses produksi." , "lang" : "in" } , { "type" : "literal", "value" : "Los supercondensadores, tambi\u00E9n conocidos como condensadores electroqu\u00EDmicos de doble capa, pseudocapacitores, ultracapacitores o simplemente EDLC por sus siglas en ingl\u00E9s, son dispositivos electroqu\u00EDmicos capaces de sustentar una densidad de energ\u00EDa inusualmente alta en comparaci\u00F3n con los condensadores normales, presentando una capacidad miles de veces mayor que la de los condensadores electrol\u00EDticos de alta capacidad. Mientras que un t\u00EDpico condensador electrol\u00EDtico D-Cell tiene una capacidad de decenas de miliFaradios (mF), la de un EDLC del mismo tama\u00F1o ser\u00E1 de varios faradios, o sea alrededor de dos o tres \u00F3rdenes de magnitud mayor, pero generalmente con una menor tensi\u00F3n de trabajo. Los EDLC comerciales de mayor tama\u00F1o cuentan con capacidades tan elevadas como 5000 F, alcanzando densidades de energ\u00EDa de hasta 30 Wh/kg (unas 500 veces menos que la gasolina)." , "lang" : "es" } , { "type" : "literal", "value" : "\u0627\u0644\u0645\u064F\u0643\u062B\u0650\u0651\u0641 \u0627\u0644\u0641\u0627\u0626\u0642 (\u0628\u0627\u0644\u0625\u0646\u062C\u0644\u064A\u0632\u064A\u0629: Supercapacitor)\u200F \u0647\u0648 \u0645\u0643\u062B\u0641 \u0639\u0627\u0644\u064A \u0627\u0644\u0633\u0639\u0629\u060C \u0641\u062A\u0643\u0648\u0646 \u0642\u064A\u0645\u0629 \u0633\u0639\u062A\u0647 \u0623\u0643\u062B\u0631 \u0628\u0643\u062B\u064A\u0631 \u0645\u0646 \u0627\u0644\u0645\u0643\u062B\u0641\u0627\u062A \u0627\u0644\u0639\u0627\u062F\u064A\u0629 (\u0648\u0644\u0643\u0646 \u0642\u064A\u0645 \u062C\u0647\u062F\u0647 \u0627\u0644\u0643\u0647\u0631\u0628\u0627\u0626\u064A \u062A\u0643\u0648\u0646 \u0645\u0646\u062E\u0641\u0636\u0629)\u060C \u0648\u064A\u062F\u0645\u062C 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"Superkondensatoren (englisch Supercapacitors, kurz Supercaps oder SC), auch Ultrakondensatoren genannt, sind elektrochemische Kondensatoren (englisch electrochemical capacitors) und als solche eine Weiterentwicklung der Doppelschichtkondensatoren (englisch electric double-layer capacitor, EDLC). Im Vergleich zu Akkumulatoren gleichen Gewichts weisen Superkondensatoren nur etwa 10\u202F% von deren Energiedichte auf, allerdings ist ihre Leistungsdichte etwa zehn- bis hundertmal so gro\u00DF. Superkondensatoren k\u00F6nnen deshalb sehr viel schneller ge- und entladen werden. Sie \u00FCberstehen au\u00DFerdem sehr viel mehr Schaltzyklen als Akkumulatoren und eignen sich deshalb als deren Ersatz oder Erg\u00E4nzung, wenn eine gro\u00DFe Schaltbeanspruchung gefordert wird. Das Einsatzgebiet von Superkondensatoren reicht von der Bereitstellung kleinster Str\u00F6me zum Datenerhalt von statischen Speichern (SRAM) in elektronischen Ger\u00E4ten bis in den Bereich der Leistungselektronik, so zum Beispiel als Speicher elektrischer Energie im KERS-System von Formel-1-Rennwagen oder bei der Nutzbremsung in Fahrzeugen wie Bussen und Bahnen." , "lang" : "de" } , { "type" : "literal", "value" : "Un supercondensador o ultracondensador \u00E9s un condensador electroqu\u00EDmic que t\u00E9 una extraordin\u00E0riament alta. Tenen aplicacions en el camp dels vehicles h\u00EDbrids com a magatzem d'energia suplementari i en el futur estan destinats a substituir les bateries." , "lang" : "ca" } , { "type" : "literal", "value" : "Um supercapacitor (portugu\u00EAs brasileiro) ou supercondensador (portugu\u00EAs europeu) \u00E9 um tipo de capacitor capaz de armazenar e fornecer uma elevada densidade de pot\u00EAncia em um curto intervalo de tempo, apresenta capacit\u00E2ncia elevada se comparada com outros tipos de capacitores e ocupa o intervalo de aplica\u00E7\u00F5es entre capacitores eletrol\u00EDticos e baterias. Eles tipicamente armazenam de 10 a 100 vezes mais energia por unidade de volume ou massa do que capacitores eletrol\u00EDticos, podem ser carregados muito mais r\u00E1pido do que uma bateria e toleram mais ciclos de carga e descarga do que baterias recarreg\u00E1veis. Os supercapacitores s\u00E3o usados \u200B\u200Bem aplica\u00E7\u00F5es que exigem muitos ciclos r\u00E1pidos de carga/descarga, em vez de armazenamento de energia a longo prazo. Eles s\u00E3o usados em sistemas de frenagem regenerativa, autom\u00F3veis, \u00F4nibus, trens, guindastes, reserva de energia para backup, equipamentos eletrom\u00E9dicos e elevadores, por armazenar energia rapidamente e entregar pot\u00EAncia instantaneamente. Supercapacitores flex\u00EDveis e transparentes s\u00E3o uma das promessas para o futuro por permitir o desenvolvimento tecnol\u00F3gico de produtos como telas interativas de para-brisas, combina\u00E7\u00E3o de c\u00E9lulas fotovoltaicas transparentes com supercapacitores e janelas inteligentes." , "lang" : "pt" } , { "type" : "literal", "value" : "Superkondensator lub ultrakondensator \u2013 rodzaj kondensatora elektrolitycznego o specyficznej konstrukcji, kt\u00F3ry wykazuje niezwykle du\u017C\u0105 pojemno\u015B\u0107 elektryczn\u0105 (rz\u0119du kilku tysi\u0119cy farad\u00F3w), w por\u00F3wnaniu z klasycznymi kondensatorami elektrolitycznymi du\u017Cej pojemno\u015Bci, lecz przy napi\u0119ciu pracy 2-3 V (typowo 2,7 V). Najwi\u0119ksz\u0105 zalet\u0105 superkondensator\u00F3w jest bardzo kr\u00F3tki czas \u0142adowania i roz\u0142adowania w por\u00F3wnaniu z innymi urz\u0105dzeniami do przechowywania energii (np. akumulatorami). Pozwala to na uzyskanie mocy zasilania dochodz\u0105cej do 10 kW na kilogram masy kondensatora. Zale\u017Cnie od rodzaju elektrod, superkondensatory dziel\u0105 si\u0119 na trzy grupy: \n* kondensatory elektrochemiczne z podw\u00F3jn\u0105 warstw\u0105 Helmholtza \u2013 z elektrodami w\u0119glowymi lub pochodnymi z du\u017Co wi\u0119ksz\u0105 pojemno\u015Bci\u0105 ni\u017C elektrochemiczne kondensatory pseudopojemno\u015Bciowe; \n* kondensatory pseudopojemno\u015Bciowe \u2013 z tlenkami metali lub polimerowymi elektrodami przewodz\u0105cymi; \n* kondensatory hybrydowe \u2013 kondensatory z asymetrycznymi elektrodami, jedna z nich wykazuje wi\u0119ksz\u0105 pojemno\u015B\u0107 elektrostatyczn\u0105 a druga wi\u0119ksz\u0105 pojemno\u015B\u0107 elektrochemiczn\u0105 np. kondensator litowo-jonowy." , "lang" : "pl" } , { "type" : "literal", "value" : "Superkondensator (eller kemisk kondensator) \u00E4r en typ av kondensator med mycket h\u00F6g kapacitans, den kan lagra mycket h\u00F6ga elektriska laddningar. Den h\u00F6ga kapacitansen uppn\u00E5s genom det elektriska dubbelskiktet, vilket inneb\u00E4r en mycket stor yta mellan kondensatorns \"plattor\". D\u00E5 en st\u00F6rre yta inneb\u00E4r st\u00F6rre kapacitans s\u00E5 \u00E4r detta \u00F6nskv\u00E4rt. Att ytan blir stor beror p\u00E5 att molekylerna i kondensatorn \u00E4r vecklade kring varandra." , "lang" : "sv" } , { "type" : "literal", "value" : "\u96D9\u96FB\u5C64\u96FB\u5BB9\u5668\uFF08\u82F1\u8A9E\uFF1AElectrostatic double-layer capacitor\uFF09\u6709\u6642\u4E5F\u7A31\u70BA\u96FB\u96D9\u5C64\u96FB\u5BB9\u5668\uFF0C\u6216\u8D85\u7EA7\u96FB\u5BB9\u5668\uFF0C\u662F\u62E5\u6709\u9AD8\u80FD\u91CF\u5BC6\u5EA6\u7684\u7535\u5316\u5B66\u7535\u5BB9\u5668\uFF0C\u6BD4\u50B3\u7D71\u7684\u7535\u89E3\u7535\u5BB9\u5BB9\u91CF\u9AD8\u4E0A\u6578\u767E\u500D\u81F3\u5343\u500D\u4E0D\u7B49\u3002 \u4E00\u4E2A\u6A19\u6E96\u96FB\u6C60\u5927\u5C0F\u7684\u7535\u89E3\u7535\u5BB9\u7535\u5BB9\u4E3A\u51E0\u5341\u5FAE\u6CD5\u62C9\uFF0C\u4F46\u540C\u6837\u5927\u5C0F\u7684EDLC\u7684\u5247\u53EF\u4EE5\u8FBE\u5230\u51E0\u6CD5\u62C9\uFF0C\u5DEE\u5225\u53EF\u9054\u4E94\u4E2A\u6570\u91CF\u7EA7\u3002\u622A\u81F3\u57282010\u5E74\uFF0C\u6700\u9AD8\u5546\u4E1A\u5316\u53CC\u7535\u5C42\u7535\u5BB9\u5668\u7684\u80FD\u91CF\u5BC6\u5EA6\u4E3A30 W\u22C5h/kg (0.1 MJ/kg)\u3002\u9AD8\u8FBE85 W\u22C5h/kg\u7684\u80FD\u91CF\u5BC6\u5EA6\u5DF2\u5728\u5BA4\u6E29\u5B9E\u9A8C\u5BA4\u5B9E\u73B0\uFF0C\u4F46\u4ECD\u7136\u6BD4\u9502\u79BB\u5B50\u7535\u6C60\u4F4E\u3002 2011\u5E74\uFF0C\u5728\u5B9E\u9A8C\u5BA4\u7684\u96D9\u96FB\u5C64\u96FB\u5BB9\u5668\u7684\u80FD\u91CF\u5BC6\u5EA6\u63D0\u9AD8\u4E86\u4E00\u500B\u6578\u91CF\u7EA7\u3002EDLC\u7684\u4EF7\u683C\u4EA6\u6B63\u5728\u4E0B\u964D\uFF1A\u57282000\u5E74\u6210\u672C\u70BA5000\u7F8E\u5143\u76843 kF\u7535\u5BB9\u57282011\u5E74\u53EA\u970050\u7F8E\u5143\u3002 \u53CC\u7535\u5C42\u7535\u5BB9\u5668\u4E3B\u8981\u7528\u4E8E\u80FD\u6E90\u50A8\u5B58\uFF0C\u800C\u975E\u901A\u7528\u7535\u8DEF\u5143\u4EF6\uFF0C\u7279\u522B\u9002\u7528\u4E8E\u7CBE\u5BC6\u80FD\u6E90\u63A7\u5236\u548C\u77AC\u95F4\u8D1F\u8F7D\u8BBE\u5907\u3002EDLC\u4E5F\u6709\u4F5C\u4E3A\u80FD\u91CF\u50A8\u5B58\u548C\u52D5\u80FD\u56DE\u6536\u7CFB\u7D71\u8BBE\u5907\u5728\u8F66\u8F86\u4F7F\u7528\uFF0C\u53E6\u5916\u4EA6\u6709\u7528\u65BC\u5176\u4ED6\u5C0F\u578B\u7CFB\u7D71\uFF0C\u4F8B\u5982\u9700\u8981\u5FEB\u901F\u5145\uFF0F\u653E\u96FB\u7684\u5BB6\u7528\u592A\u9633\u80FD\u7CFB\u7EDF\u3002" , "lang" : "zh" } , { "type" : "literal", "value" : "Un supercondensatore (in inglese: supercapacitor) \u00E8 un particolare condensatore che ha la caratteristica di accumulare una quantit\u00E0 di carica elettrica eccezionalmente grande rispetto ai condensatori tradizionali. Infatti mentre questi ultimi hanno valori di capacit\u00E0 dell'ordine dei mF, i supercondensatori possono arrivare oltre i 5000 F (farad). Sono dispositivi di conversione ed accumulo dell'energia caratterizzati da elevate potenze specifiche ed energie di gran lunga superiori rispetto ai condensatori convenzionali." , "lang" : "it" } , { "type" : "literal", "value" : "\u0418\u043E\u043D\u0438\u0301\u0441\u0442\u043E\u0440 (\u0441\u0443\u043F\u0435\u0440\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0443\u043B\u044C\u0442\u0440\u0430\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0434\u0432\u0443\u0445\u0441\u043B\u043E\u0439\u043D\u044B\u0439 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u0438\u0439 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440) \u2014 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u043E\u0435 \u0443\u0441\u0442\u0440\u043E\u0439\u0441\u0442\u0432\u043E, \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440 \u0441 \u043E\u0440\u0433\u0430\u043D\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u0438\u043B\u0438 \u043D\u0435\u043E\u0440\u0433\u0430\u043D\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0438\u0442\u043E\u043C, \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u0432 \u043A\u043E\u0442\u043E\u0440\u043E\u043C \u0441\u043B\u0443\u0436\u0438\u0442 \u0434\u0432\u043E\u0439\u043D\u043E\u0439 \u044D\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u0435\u0441\u043A\u0438\u0439 \u0441\u043B\u043E\u0439 \u043D\u0430 \u0433\u0440\u0430\u043D\u0438\u0446\u0435 \u0440\u0430\u0437\u0434\u0435\u043B\u0430 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 \u0438 \u044D\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0438\u0442\u0430. \u041F\u043E \u0445\u0430\u0440\u0430\u043A\u0442\u0435\u0440\u0438\u0441\u0442\u0438\u043A\u0430\u043C \u0437\u0430\u043D\u0438\u043C\u0430\u0435\u0442 \u043F\u0440\u043E\u043C\u0435\u0436\u0443\u0442\u043E\u0447\u043D\u043E\u0435 \u043F\u043E\u043B\u043E\u0436\u0435\u043D\u0438\u0435 \u043C\u0435\u0436\u0434\u0443 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u043E\u043C \u0438 \u0445\u0438\u043C\u0438\u0447\u0435\u0441\u043A\u0438\u043C \u0438\u0441\u0442\u043E\u0447\u043D\u0438\u043A\u043E\u043C \u0442\u043E\u043A\u0430." , "lang" : "ru" } , { "type" : "literal", "value" : "\u0406\u043E\u043D\u0456\u0441\u0442\u043E\u0440 (\u0441\u0443\u043F\u0435\u0440-\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440, \u0443\u043B\u044C\u0442\u0440\u0430-\u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440) \u2014 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440 \u0437 \u043E\u0431\u043C\u0435\u0436\u0435\u043D\u0438\u043C \u0430\u0431\u043E \u043D\u0435\u043E\u0431\u043C\u0435\u0436\u0435\u043D\u0438\u043C \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0456\u0442\u043E\u043C, \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u0432 \u044F\u043A\u043E\u043C\u0443 \u0441\u043B\u0443\u0436\u0438\u0442\u044C \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u0438\u0439 \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u0438\u0439 \u0448\u0430\u0440 \u043D\u0430 \u043C\u0435\u0436\u0456 \u0440\u043E\u0437\u0434\u0456\u043B\u0443 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 \u0456 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u043B\u0456\u0442\u0443. \u0423 \u0437\u0432'\u044F\u0437\u043A\u0443 \u0437 \u0442\u0438\u043C, \u0449\u043E \u0442\u043E\u0432\u0449\u0438\u043D\u0430 \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u043E\u0433\u043E \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u043E\u0433\u043E \u0448\u0430\u0440\u0443 (\u0442\u043E\u0431\u0442\u043E \u0432\u0456\u0434\u0441\u0442\u0430\u043D\u044C \u043C\u0456\u0436 \u00AB\u043E\u0431\u043A\u043B\u0430\u0434\u043A\u0430\u043C\u0438\u00BB \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u0430) \u0434\u0443\u0436\u0435 \u043C\u0430\u043B\u0430, \u043D\u0430\u043A\u043E\u043F\u0438\u0447\u0435\u043D\u0430 \u0456\u043E\u043D\u0456\u0441\u0442\u043E\u0440\u043E\u043C \u0435\u043D\u0435\u0440\u0433\u0456\u044F \u0432\u0438\u0449\u0430 \u0432 \u043F\u043E\u0440\u0456\u0432\u043D\u044F\u043D\u043D\u0456 \u0437\u0456 \u0437\u0432\u0438\u0447\u0430\u0439\u043D\u0438\u043C\u0438 \u043A\u043E\u043D\u0434\u0435\u043D\u0441\u0430\u0442\u043E\u0440\u0430\u043C\u0438 \u0442\u043E\u0433\u043E \u0436 \u0440\u043E\u0437\u043C\u0456\u0440\u0443. \u0414\u043E \u0442\u043E\u0433\u043E \u0436, \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u0430\u043D\u043D\u044F \u043F\u043E\u0434\u0432\u0456\u0439\u043D\u043E\u0433\u043E \u0435\u043B\u0435\u043A\u0442\u0440\u0438\u0447\u043D\u043E\u0433\u043E \u0448\u0430\u0440\u0443 \u0437\u0430\u043C\u0456\u0441\u0442\u044C \u0437\u0432\u0438\u0447\u0430\u0439\u043D\u043E\u0433\u043E \u0434\u0456\u0435\u043B\u0435\u043A\u0442\u0440\u0438\u043A\u0430 \u0434\u043E\u0437\u0432\u043E\u043B\u044F\u0454 \u043D\u0430\u0431\u0430\u0433\u0430\u0442\u043E \u0437\u0431\u0456\u043B\u044C\u0448\u0438\u0442\u0438 \u043F\u043B\u043E\u0449\u0443 \u043F\u043E\u0432\u0435\u0440\u0445\u043D\u0456 \u0435\u043B\u0435\u043A\u0442\u0440\u043E\u0434\u0430 (\u043D\u0430\u043F\u0440\u0438\u043A\u043B\u0430\u0434, \u0448\u043B\u044F\u0445\u043E\u043C \u0432\u0438\u043A\u043E\u0440\u0438\u0441\u0442\u0430\u043D\u043D\u044F \u043F\u043E\u0440\u0438\u0441\u0442\u0438\u0445 \u043C\u0430\u0442\u0435\u0440\u0456\u0430\u043B\u0456\u0432, \u0442\u0430\u043A\u0438\u0445, \u044F\u043A \u0430\u043A\u0442\u0438\u0432\u043E\u0432\u0430\u043D\u0435 \u0432\u0443\u0433\u0456\u043B\u043B\u044F \u0430\u0431\u043E \u0441\u043F\u0456\u043D\u0435\u043D\u0456 \u043C\u0435\u0442\u0430\u043B\u0438). \u041F\u0438\u0442\u043E\u043C\u0430 \u0454\u043C\u043D\u0456\u0441\u0442\u044C \u0456\u043E\u043D\u0456\u0441\u0442\u043E\u0440\u0430 \u0441\u044F\u0433\u0430\u0454 \u0434\u0435\u0441\u044F\u0442\u043A\u0430 , \u043F\u0440\u0438 \u043D\u043E\u043C\u0456\u043D\u0430\u043B\u044C\u043D\u0456\u0439 \u043D\u0430\u043F\u0440\u0443\u0437\u0456 2-4 \u0432\u043E\u043B\u044C\u0442\u0430." , "lang" : "uk" } , { "type" : "literal", "value" : "\u96FB\u6C17\u4E8C\u91CD\u5C64\u30B3\u30F3\u30C7\u30F3\u30B5\uFF08\u3067\u3093\u304D\u306B\u3058\u3085\u3046\u305D\u3046\u30B3\u30F3\u30C7\u30F3\u30B5\u3001\u82F1: electric double-layer capacitor\u3001EDLC\uFF09\u306F\u3001\u96FB\u6C17\u4E8C\u91CD\u5C64\u3068\u3044\u3046\u7269\u7406\u73FE\u8C61\u3092\u5229\u7528\u3059\u308B\u3053\u3068\u3067\u84C4\u96FB\u91CF\u304C\u8457\u3057\u304F\u9AD8\u3081\u3089\u308C\u305F\u30B3\u30F3\u30C7\u30F3\u30B5\uFF08\u30AD\u30E3\u30D1\u30B7\u30BF\uFF09\u3067\u3042\u308B\u300220\u4E16\u7D00\u672B\u304B\u3089\u96FB\u6C17\u4E8C\u91CD\u5C64\u30AD\u30E3\u30D1\u30B7\u30BF\u306E\u958B\u767A\u304C\u59CB\u307E\u308A\u3001\u3044\u304F\u3064\u304B\u306E\u5206\u91CE\u3067\u4F7F\u7528\u304C\u59CB\u307E\u3063\u3066\u3044\u308B\u3002\u4ECA\u5F8C\u6027\u80FD\u304C\u3055\u3089\u306B\u5411\u4E0A\u3059\u308C\u3070\u30EA\u30C1\u30A6\u30E0\u30A4\u30AA\u30F3\u96FB\u6C60\u306A\u3069\u306E\u4E8C\u6B21\u96FB\u6C60\u3092\u4EE3\u66FF\u3059\u308B\u53EF\u80FD\u6027\u304C\u3042\u308B\u3002 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  NODES
chat 1
innovation 3
INTERN 4
Note 4