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Controlling the conductivity and microporosity of biocarbon to produce supercapacitors with battery-level energies at an ultrahigh power
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作者 CHENG Bei XIE Xing-yan +5 位作者 WAN Liu CHEN Jian ZHANG Yan DU Cheng GUO Xue-feng XIE Ming-jiang 《新型炭材料(中英文)》 北大核心 2025年第2期409-420,共12页
In order to meet the demands of new-generation electric vehicles that require high power output(over 15 kW/kg),it is crucial to increase the energy density of car-bon-based supercapacitors to a level comparable to tha... In order to meet the demands of new-generation electric vehicles that require high power output(over 15 kW/kg),it is crucial to increase the energy density of car-bon-based supercapacitors to a level comparable to that of batteries,while maintaining a high power density.We re-port a porous carbon material produced by immersing pop-lar wood(PW)sawdust in a solution of KOH and graphene oxide(GO),followed by carbonization.The resulting mater-ial has exceptional properties as an electrode for high-en-ergy supercapacitors.Compared to the material prepared by the direct carbonization of PW,its electrical conductivity was in-creased from 0.36 to 26.3 S/cm.Because of this and a high microporosity of over 80%,which provides fast electron channels and a large ion storage surface,when used as the electrodes for a symmetric supercapacitor,it gave a high energy density of 27.9 Wh/kg@0.95 kW/kg in an aqueous electrolyte of 1.0 mol/L Na_(2)SO_(4).The device also had battery-level energy storage with maximum energy densities of 73.9 Wh/kg@2.0 kW/kg and 67.6 Wh/kg@40 kW/kg,an ultrahigh power density,in an organic electrolyte of 1.0 mol/L TEABF4/AN.These values are comparable to those of 30−45 Wh/kg for Pb-acid batteries and 30−55 Wh/kg for aqueous lithium batteries.This work indicates a way to prepare carbon materials that can be used in supercapacit-ors with ultrahigh energy and power densities. 展开更多
关键词 Reduced GO modification Loose wood Symmetric supercapacitor Battery-level energy density
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超声波辅助Lewis酸预处理甘薯渣发酵制乙醇的工艺研究 被引量:2
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作者 徐雨濛 李庆文 +1 位作者 盛燕 曾舟华 《湖北农业科学》 北大核心 2014年第23期5820-5822,5827,共4页
对超声波辅助Lewis酸预处理甘薯渣发酵制乙醇的工艺进行了研究。结果表明,在超声波辅助条件下,Lewis酸Cu Cl2对甘薯渣中木质纤维素的水解有一定的催化效果。采用Lewis酸Cu Cl2预处理甘薯渣发酵制乙醇的最佳工艺条件为固液比等于1∶15(m... 对超声波辅助Lewis酸预处理甘薯渣发酵制乙醇的工艺进行了研究。结果表明,在超声波辅助条件下,Lewis酸Cu Cl2对甘薯渣中木质纤维素的水解有一定的催化效果。采用Lewis酸Cu Cl2预处理甘薯渣发酵制乙醇的最佳工艺条件为固液比等于1∶15(m∶m,下同)、超声波预处理功率为250 W、时间30 min,金属氯化物Lewis酸Cu Cl2溶液质量分数为1.0%,纤维素酶用量为35 IU/g底物,热带假丝酵母与酿酒酵母的接种比为1∶1,酵母菌接种量为0.75%。在该条件下乙醇产率达到21.4%,与常规工艺相比,产率提高13.8%。 展开更多
关键词 甘薯渣 超声波 LEWIS酸 发酵 乙醇
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