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A combined leaching and electrochemical activation approach to converting coal to capacitive carbon in molten carbonates

机译:结合浸出和电化学活化的方法将煤转化为熔融碳酸盐中的电容性碳

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摘要

The impurities of coal plague its values not only for fuels but also for preparing functional carbon materials. Herein, we aim to develop a clean and one-step strategy to prepare activated carbon by molten salt leaching and electrolysis approach to converting anthracite/lignite to carbon for electrochemical supercapacitors. First, the major impurities such as silica and alumina were removed by a combined molten salt and water leaching process without using any toxic acid or alkaline solutions. Meanwhile, the carbonization and activation of coals take place together in the water- and oxygen-free molten salt medium. Moreover, the electrolysis can further increase the specific capacitance of the coal-derived carbon by the electrochemical regulation of carbon in molten salt using a low-cost and oxygen-evolution inert anode. The as-obtained carbon delivers a capacitance of 190 F g(-1) at 5 A g(-1) and shows nearly no capacitance loss after 10,000 cycles. This paper provides a clean molten salt approach to utilizing both high-rank and low-rank coals for the preparation of capacitive carbons. (C) 2019 Elsevier Ltd. All rights reserved.
机译:煤中的杂质不仅困扰着其燃料价值,还困扰着其制备功能性碳材料的价值。在本文中,我们旨在开发一种清洁的一步法,通过熔盐浸出和电解方法将无烟煤/褐煤转化为用于电化学超级电容器的碳,从而制备活性炭。首先,通过结合的熔融盐和水浸出工艺去除了主要杂质(例如二氧化硅和氧化铝),而无需使用任何有毒的酸或碱溶液。同时,煤的碳化和活化同时发生在无水和无氧的熔融盐介质中。而且,电解可以通过使用低成本且放氧的惰性阳极对熔融盐中的碳进行电化学调节来进一步提高煤衍生碳的比电容。所获得的碳在5 A g(-1)时提供190 F g(-1)的电容,并且在10,000次循环后几乎没有显示出电容损失。本文提供了一种干净的熔盐方法,可利用高阶煤和低阶煤来制备电容性碳。 (C)2019 Elsevier Ltd.保留所有权利。

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