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A review of technical advances of recent palm bio-waste conversion to activated carbon for energy storage

机译:近期棕榈生物废物转化对能量储存活性炭的技术进步综述

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摘要

Recently, the conversion of palm waste to activated carbon for various applications has attracted significant attention from researchers. Over the years, abundant palm wastes have been generated due to active palm milling in various part of the world. These environmentally challenging wastes have been converted to valuable and economical materials for gas adsorption and water treatment but rarely for energy storage application. The lignocellulose composition of palm wastes has made it a favorable candidate for starting material of activated carbon for supercapacitor application. In this review, the pretreatment condition, factors to consider for choosing starting material, activation techniques, and activation parameters such as activation temperature, activation time, activation agent and impregnation ratio are analyzed. The advantages of the synergistic effect of the lignocellulose composition of different palm wastes for energy storage device is discussed. The major drawbacks in the conventional Barrett-Joiner-Halenda (BJH) porosity characterization technique are addressed and the novel Non-localized Density Functional Theory characterization technique is suggested. Conclusively, future prospects in the activation of palm bio-wastes for supercapacitor application are highlighted. (C) 2019 Elsevier Ltd. All rights reserved.
机译:最近,棕榈废物对各种应用的激活碳转化引起了研究人员的重大关注。多年来,由于世界各地的Active Palm Milling,已经产生丰富的棕榈废物。这些环境挑战性废物已被转换为有价值的气体吸附和水处理材料,但很少用于储能施用。棕榈废物的木质纤维素组成使其成为超级电容器应用的活性炭原料的有利候选物。在该综述中,分析了预处理条件,考虑用于选择起始材料,活化技术和活化参数,例如活化温度,活化时间,活化剂和浸渍率的因素。讨论了不同棕榈油脂肪组合物的协同作用的优点。解决了传统的Barrett-Joiner-Halenda(BJH)孔隙率表征技术的主要缺点,并提出了新的非局部密度泛函理论表征技术。最后,突出了对超级电容器应用程序激活的未来前景,是超级电容器应用程序的。 (c)2019 Elsevier Ltd.保留所有权利。

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