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一种用于处理生物处理后垃圾渗滤液中难降解有机物的微波辐射强化铁碳/过硫酸盐体系。

A microwave radiation-enhanced Fe-C/persulfate system for the treatment of refractory organic matter from biologically treated landfill leachate.

作者信息

Hu Yuansi

机构信息

Faculty of Geosciences and Environmental Engineering, Southwest Jiaotong University Chengdu 611756 China

出版信息

RSC Adv. 2021 Sep 2;11(47):29620-29631. doi: 10.1039/d1ra04995j. eCollection 2021 Sep 1.

Abstract

In this study, a microwave (MW) radiation enhanced Fe-C/PS system was used to treat refractory organic matter in biologically-treated landfill leachate. The effects of important influencing factors on the refractory organic matter in biologically treated landfill leachate were explored, and the main reactive oxygen species produced in the system were verified. The mechanism by which humus was degraded was investigated by analyzing effectiveness of organics removal in different systems, and comparative analysis was conducted on the Fe-C materials before and after the reaction. The results showed that degradation capacity and reaction rate of the system could be improved with an increase in the Fe-C/PS dosage and MW power, while initial acidic conditions were also conducive to the degradation of organic matter. Under the conditions of an Fe-C of 1 g L, PS dosage of 30 mM, MW power of 240 W, and reaction time of 10 min, the UV, TOC, and CN removal efficiencies were 51.48%, 94.56%, and 51.59%, respectively. In the MW/Fe-C/PS system, a large amount of and a small amount of ˙OH were generated by the thermal activation of PS to remove organic matter. The removal efficiency of organic matter could be further improved the homogeneous catalytic oxidation and heterogeneous adsorption catalytic oxidation of Fe-C materials. In addition, the MW/Fe-C/PS system was effective for removing refractory organic matter from the leachates from four typical treatment systems: DTRO, SAARB, MBR, and NF. The MW/Fe-C/PS system has the potential to be widely applied for the treatment of landfill leachate.

摘要

在本研究中,采用微波(MW)辐射强化的Fe-C/PS体系处理生物处理后的垃圾渗滤液中的难降解有机物。探讨了重要影响因素对生物处理后垃圾渗滤液中难降解有机物的影响,并验证了体系中产生的主要活性氧物种。通过分析不同体系中有机物的去除效果,研究了腐殖质的降解机制,并对反应前后的Fe-C材料进行了对比分析。结果表明,随着Fe-C/PS投加量和微波功率的增加,体系的降解能力和反应速率得以提高,同时初始酸性条件也有利于有机物的降解。在Fe-C投加量为1 g/L、PS投加量为30 mM、微波功率为240 W、反应时间为10 min的条件下,UV、TOC和CN的去除效率分别为51.48%、94.56%和51.59%。在MW/Fe-C/PS体系中,PS的热活化产生大量的 和少量的˙OH以去除有机物。通过Fe-C材料的均相催化氧化和非均相吸附催化氧化,有机物的去除效率可进一步提高。此外,MW/Fe-C/PS体系对来自DTRO、SAARB、MBR和NF这四种典型处理系统的渗滤液中的难降解有机物具有良好的去除效果。MW/Fe-C/PS体系具有广泛应用于垃圾渗滤液处理的潜力。

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