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Wastewater treatment by adsorption with electrochemical regeneration using graphite-based adsorbents

机译:石墨基吸附剂通过电化学再生吸附处理废水

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An innovative technology for wastewater treatment using adsorption and electrochemical regeneration has been developed at the University of Manchester. The process uses a low capacity graphitic adsorbent material (a graphite intercalation compound, Nyex? 1000) which can be regenerated electrochemically. In this study, we investigate the characteristics of a new, partially porous adsorbent material, Nyex? 2000 which offers increased surface area in comparison with Nyex? 1000. Nyex? 2000 was found to have an adsorption capacity of almost three times that of Nyex? 1000. The electrical conductivity of a Nyex? 2000 was found to be double that of Nyex? 1000, enabling improvements in the electrochemical regeneration characteristics. The removal of an anionic azo dye, acid violet 17, from aqueous solution using Nyex? 1000 and 2000 was investigated under various operating conditions. The adsorption of acid violet 17 on Nyex? 2000 was found to be comparatively fast with 75 % of the equilibrium capacity being achieved within 5 min. The parameters affecting the regeneration efficiency including the charge passed, current density, treatment time, adsorbent bed thickness, and pH were investigated. An electrochemical regeneration efficiency of around 100 % was achieved for a fully loaded Nyex? 2000 in a sequential batch electrochemical cell with a regeneration time of 60 min and a charge passed of 100 C g ~(-1) at a current density of 14 mA cm ~(-2). The charge required for electrochemical regeneration was found to be approximately equal to theoretical charge required for complete oxidation of the adsorbed acid violet 17, making process design relatively simple. Nyex? 2000 was found to be an economic adsorbent with relatively small electrical energy consumption required (31 J mg ~(-1) of acid violet 17 treated, compared to 52 J mg ~(-1) of acid violet 17 for Nyex? 1000). Multiple adsorption/regeneration cycles presented no loss in adsorptive capacity and material loses over five adsorption/regeneration cycles.
机译:曼彻斯特大学已开发出一种利用吸附和电化学再生的废水处理创新技术。该方法使用低容量的石墨吸附材料(一种石墨插层化合物,Nyex®1000),可以通过电化学方式对其进行再生。在这项研究中,我们研究了一种新型的,部分多孔的吸附材料Nyex?的特性。与Nyex相比,2000表面积增加了吗? 1000. Nyex?发现2000年的吸附能力几乎是Nyex?的三倍。 1000. Nyex的电导率?发现2000年是Nyex的两倍? 1000,可以改善电化学再生特性。使用Nyex?去除水溶液中的阴离子偶氮染料酸性紫色17。在各种操作条件下研究了1000和2000。酸性紫17在Nyex上的吸附?发现2000年相对较快,在5分钟内达到了75%的平衡容量。研究了影响再生效率的参数,包括通过的电荷,电流密度,处理时间,吸附剂床厚度和pH。对于满载的Nyex ?,其电化学再生效率约为100%。在连续分批电化学电池中的2000电池,其再生时间为60分钟,电荷以100 C g〜(-1)的电流密度通过14 mA cm〜(-2)。发现电化学再生所需的电荷近似等于完全氧化吸附的酸性紫17所需的理论电荷,从而使工艺设计相对简单。 Nyex?已发现2000是一种经济的吸附剂,所需的电能消耗相对较小(处理的酸性紫17为31 J mg〜(-1),而Nyex?1000则为52 J mg〜(-1)酸性紫17)。多个吸附/再生循环没有表现出吸附能力的损失,并且在五个吸附/再生循环中材料损失。

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