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The relative performance of microwave regenerated activated carbons on the removal of phenolic pollutants

机译:微波再生活性炭对去除酚类污染物的相对性能

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The adsorption of reagent on the surface of porous material and the regeneration of porous material are significant processes that are widely used in chemical industries. The performance of a granular commercial activated carbon and two activated carbons synthesised from the factory waste tea and demineralised waste tea, were tested during a series of adsorption and regeneration cycles. Phenol and pnitrophenol (PNP, 4-nitrophenol) were used as the reagents to represent water pollutants. The activated carbon samples were regenerated by the application of a short period of microwave energy (30 s). The influence of the microwave regeneration process on the surface area and pore volumes were investigated with laboratory characterisation techniques. Several cycles of adsorption and regeneration processes were conducted to determine the variation in the adsorption capacity and the characteristics of each porous material. The adsorption and regeneration processes were interpreted in terms of the amount of adsorbed reagent and surface characteristic of the porous material. The materials were found to be good adsorbents for phenol and PNP and the regeneration process worked effectively; broadly maintaining the adsorption capacity over multiple adsorption - regeneration cycles. Crown Copyright (C) 2017 Published by Elsevier Ltd. All rights reserved.
机译:试剂在多孔材料表面上的吸附和多孔材料的再生是在化学工业中广泛使用的重要过程。在一系列吸附和再生循环中,测试了颗粒状商业活性炭和两种由工厂废茶和脱矿物质废茶合成的活性炭的性能。苯酚和对硝基苯酚(PNP,4-硝基苯酚)用作代表水污染物的试剂。活性炭样品通过短时间的微波能量(30 s)再生。利用实验室表征技术研究了微波再生过程对表面积和孔体积的影响。进行几次吸附和再生过程循环,以确定每种多孔材料的吸附容量和特性的变化。吸附和再生过程是根据吸附试剂的量和多孔材料的表面特性来解释的。发现该材料是苯酚和PNP的良好吸附剂,再生过程有效。在多个吸附-再生循环中广泛地保持吸附能力。 Crown版权所有(C)2017,由Elsevier Ltd.出版。保留所有权利。

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