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首页> 外文期刊>Environmental Progress & Sustainable Energy >Performance of activated carbons synthesized from fruit dehydration biowastes for supercapacitor applications
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Performance of activated carbons synthesized from fruit dehydration biowastes for supercapacitor applications

机译:性能的激活碳合成水果脱水生物废弃物的超级电容器应用程序

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摘要

This research documents variability in electrode performance of activated carbons (ACs) produced from two different commercial fruit dehydration wastes through hydrothermal carbonization and chemical activation pathway. Commercial spent osmotic solutions (SOSs) from blueberry dehydration (BSOS) and glycerated cherry dehydration (CSOS) waste materials were subjected to hydrothermal carbonization at 250 degrees C under nitrogen conditions for 30 min to extract hydrochars. BSOS- and CSOS-derived hydrochar powders were further activated using phosphoric acid at 900 degrees C to produce ACs. Results showed that the two commercial fruit dehydration wastes resulted in ACs with different pore characteristics, where the AC-CSOS showed a higher level diversity in mesoporosity in addition higher surface area once compared to AC-BSOS. The produced ACs were utilized in a symmetrical electrical double layer supercapacitor (EDLCs) to measure their performance as an electrode. The EDLCs fabricated from AC-CSOS delivered a higher level of performance, where these materials showed up to 48 F/g specific capacity. Overall, the AC electrodes derived from the SOSs were comparable to many bio-derived electrodes used for EDLCs, but subsequent enhancement to surface chemistry and surface area is required to outperform some of the best ACs and engineered carbon materials in this application. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38:e13030, 2019
机译:本研究文档变化电极激活产生的碳(ACs)的性能从两个不同的商业水果脱水通过水热碳化和废物化学活化途径。从蓝莓渗透解决方案(索斯)脱水(bso)和甘油酸酯樱桃脱水(公民社会组织)受到浪费材料在250摄氏度水热碳化在氮条件下提取30分钟hydrochars。使用磷酸粉末进一步激活酸生产ACs在900摄氏度。显示两个商业水果脱水浪费导致了ACs具有不同孔隙特点,AC-CSOS显示的地方更高层次的多样性中孔隙除了更高的表面积相比AC-BSOS。对称的双电层超级电容器极板)来衡量他们作为一个电极性能。从AC-CSOS更高层次的交付性能,这些材料了48 F / g特定的能力。电极来自索斯是可比的许多bio-derived电极用于EDLCs,但随后的增强表面化学和表面积需要超越一些最好的ACs和研制的碳材料在这个应用程序中。化学工程师环境掠夺,38:e13030,2019

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