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Insight into the co-pyrolysis of different blended feedstocks to biochar for the adsorption of organic and inorganic pollutants: A review

机译:洞察不同混合原料的共热分解为生物炭,用于吸附有机和无机污染物:综述

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Co-pyrolysis of blended feedstocks has received increasing attention due to its significant role in avoiding the weakness of products made from normal pyrolysis of individual feedstocks. Many studies have shown that co-pyrolysis can enhance the yield and properties of biochar, e.g. improve pore structure, reduce ash content, increase heating value, and also enhance adsorption performance toward a variety of pollutants. In addition, co-pyrolysis has the added benefits of decreasing the quantity of waste and avoiding pollution issues. In this article, the co-pyrolysis of different feedstock blends to biochar has been reviewed. The influence of co-pyrolysis variables on the yield and properties of biochar has been discussed. The application of co-pyrolysis derived biochars as adsorbents for organic and inorganic pollutants has also been included. Important suggestions are proposed for the future development of the co-pyrolysis into biochar and its application. This article includes an overview on the most adopted and efficient feedstocks, significant affecting variables, extensively tested pollutants, well utilized adsorption models, and synergetic behavior in co-pyrolysis to biochar adsorbent. (C) 2020 Elsevier Ltd. All rights reserved.
机译:共混原料的共热分解由于其在避免了各种原料的正常热解制的产品的弱点方面具有显着作用,因此受到了显着的关注。许多研究表明,共热分解可以增强生物炭的产率和性质,例如,改善孔隙结构,减少灰分含量,增加加热值,也提高吸附性能朝各种污染物。此外,共热分解具有降低浪费量的增加的益处,避免污染问题。在本文中,已经综述了对BioChar的不同原料混合物的共热解。讨论了共热分解变量对生物炭产量和性质的影响。还包括共热分解衍生的生物脉,作为有机和无机污染物的吸附剂。提出了对生物炭的未来发展及其应用的重要建议。本文概述了最具采用和高效的原料,显着影响变量,广泛测试的污染物,利用良好的吸附模型,以及对生物炭吸附剂的共热分解的协同行为。 (c)2020 elestvier有限公司保留所有权利。

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