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采用微电解-循环系统提高工业废水可生化性的有效预处理。

Efficient pretreatment of industrial estate wastewater for biodegradability enhancement using a micro-electrolysis-circulatory system.

机构信息

State Key Laboratory of Separation Membranes and Membrane Processes, School of Environmental Science and Engineering, Tianjin Polytechnic University, Tianjin, 300387, China.

Institute of Innovational Education Research, Shenzhen Institute of Information Technology, Shenzhen, 518172, China.

出版信息

J Environ Manage. 2019 Nov 15;250:109492. doi: 10.1016/j.jenvman.2019.109492. Epub 2019 Aug 31.

Abstract

A self-made micro-electrolysis-circulatory system with the mixture regime of an upflow bed and reactor was tested for the pretreatment of industrial estate wastewater with a low ratio of biological to chemical oxygen demand (BOD/COD) at room temperature, 1:1 vol ratio of sponge iron (SFe)/granular activated carbon (GAC), and an intermittent process in aeration and discharge. The system efficiency was evaluated in view of the effects of various processes (hydraulic retention time (HRT), fillers/wastewater ratio (S/L) and aeration). COD reduction of about 51% was obtained for industrial estate wastewater at an S/L ratio of 25%, refluence rate of 16 L/h, HRT of 24 h, and aeration of 60 L/h as the optimal conditions. The considerable change in the calculated BOD/COD ratio, from 0.07 to 0.49, showed favorable application of the micro-electrolysis-circulatory system for the reductive and oxidative degradation of organic pollutants to enhance wastewater biodegradability. The reusability of the SFe was also investigated after three successive runs. On the basis of the results of Fe leaching, HRT, S/L ratio, scanning electron microscopy observation, and X-ray photoelectron spectroscopic analysis, the corrosion products facilitated by the inherent porosity of SFe played a significant role due to different oxygen conditions in the surface and internal layers. One result from the removal of organic pollutants dominated by the galvanic cell reactions between SFe and GAC was observed, and the integration coagulation in the bulk solution was mainly attributed to the leaching of Fe. The innovative approach described in this study provides a promising and economical technology for pretreatment of industrial wastewater prior to a biological process.

摘要

自行设计的微电解-循环系统采用上向流床和反应器的混合方式,在室温下、1:1 体积比的海绵铁(SFe)/颗粒活性炭(GAC)和间歇曝气-排水条件下对低生物需氧量/化学需氧量(BOD/COD)比的工业地产废水进行预处理。从各种工艺(水力停留时间(HRT)、填料/废水比(S/L)和曝气)的影响来看,评估了系统的效率。在 S/L 比为 25%、回流率为 16 L/h、HRT 为 24 h 和曝气率为 60 L/h 的最佳条件下,工业地产废水的 COD 去除率约为 51%。计算的 BOD/COD 比从 0.07 显著增加到 0.49,表明微电解-循环系统有利于有机污染物的还原和氧化降解,从而提高废水的生物降解性,具有很好的应用前景。还研究了 SFe 在连续三次运行后的重复使用情况。根据铁浸出、HRT、S/L 比、扫描电子显微镜观察和 X 射线光电子能谱分析的结果,由于表面和内层的氧气条件不同,SFe 的固有孔隙度促进了腐蚀产物的形成,起到了重要作用。观察到以 SFe 和 GAC 之间的原电池反应为主去除有机污染物的结果,而在主体溶液中的整合凝聚主要归因于铁的浸出。本研究中描述的创新方法为生物处理前的工业废水预处理提供了一种有前途且经济的技术。

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