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首页> 外文期刊>Waste Management >Effective removal of refractory organic contaminants from reverse osmosis concentrated leachate using PFS-nZVI/PMS/O_3 process
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Effective removal of refractory organic contaminants from reverse osmosis concentrated leachate using PFS-nZVI/PMS/O_3 process

机译:使用PFS-NZVI / PMS / O_3过程有效地从反渗透浓缩渗滤液中去除难治性有机污染物

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摘要

Reverse osmosis concentrated leachate (ROCL) from landfill leachate treatment contains high amounts of refractory organics. In this study, a combination of polymerized ferric sulfate (PFS) and nanoscale zero-valent iron/peroxymonosulfate/ozone (nZVI/PMS/O_3) approach was adopted to remove refractory pollutants in ROCL. The effects of coagulant species, dosage and initial pH on the pre-treatment of organics from ROCL during coagulation process were investigated. Moreover, the influences of experimental factors, including initial pH, ozone doses, PMS, and nZVI on the removal of refractory organics in ROCL from coagulation effluent were systematically studied. The characteristics of organics were determined by using microscopic, spectroscopic and electron paramagnetic resonance (EPR) analyses. The batch experimental results indicated that the refractory organic contaminants in ROCL were effectively removed through PFS-nZVl/PMS/O_3 treatment. The maximum removal efficiencies of COD and TOC were 89.1% and 83.2% under the optimum conditions: PFS of 8 g/L, ozone dose of 100 mg/min, PMS dose of 1.5 mM and nZVI dose of 10 mM, and at these conditions, the biodegradability index (BOD_5/COD) was enhanced from 0.02 to 0.32. The excitation-emission matrix fluorescence spectroscopy (EEM) analysis indicated that humic-like and fulvic-like substances in ROCL were effectively removed. According to EPR analysis, hydroxyl and sulfate radicals were the dominant reactive species for the degradation of organics in nZVI/PMS/O_3 system. Overall, the environmental and economic analysis suggested that the PFS-nZVI/PMS/O_3 system was a cost-effective method for cleaning refractory organics from ROCL.
机译:垃圾填埋渗滤液处理的反渗透渗透渗流(Rocl)含有大量的耐火有机物。在该研究中,采用聚合的铁硫酸盐(PFS)和纳米级零价铁/过氧键磺酸盐/臭氧(NZVI / PMS / O_3)方法的组合来除去Rocl中的耐火污染物。研究了凝结剂物种,剂量和初始pH对凝血过程中从Rocl预处理的凝固物物种的影响。此外,系统地研究了实验因素的影响,包括初始pH,臭氧剂量,PMS和NZVI对从凝固废水中取出难治物体的难治物体的影响。通过使用微观,光谱和电子顺磁共振(EPR)分析来确定有机物的特征。批量实验结果表明,通过PFS-NZVL / PMS / O_3处理有效地除去Rocl中的耐火有机污染物。 COD和TOC的最大去除效率在最佳条件下为89.1%和83.2%:PFS为8g / L,臭氧剂量为100mg / min,PMS剂量为1.5mm,NZVI剂量为10 mm,在这些条件下,生物降解性指数(BOD_5 / COD)从0.02增加到0.32。激发发射基质荧光光谱(EEM)分析表明Rocl中的腐殖质状和富含物质的物质被有效地除去。根据EPR分析,羟基和硫酸盐基团是NZVI / PMS / O_3系统中有机物降解的显性反应性。总体而言,环境和经济分析表明,PFS-NZVI / PMS / O_3系统是一种从Rocl清洁耐火材料的成本有效的方法。

著录项

  • 来源
    《Waste Management》 |2021年第1期|55-63|共9页
  • 作者单位

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center Qingdao University of Technology School of Environmental and Municipal Engineering Qingdao China;

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center Qingdao University of Technology School of Environmental and Municipal Engineering Qingdao China;

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center Qingdao University of Technology School of Environmental and Municipal Engineering Qingdao China;

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center Qingdao University of Technology School of Environmental and Municipal Engineering Qingdao China;

    Qingdao Solid Waste Pollution Control and Resource Engineering Research Center Qingdao University of Technology School of Environmental and Municipal Engineering Qingdao China;

    Qingdao Xiaojianxi Leachate Treatment Co. Ltd. Qingdao China Qingdao Jieyuan Environment Co. Ltd. Qingdao China;

    Qingdao MSW Management & Treatment Co. Ltd. Qingdao China;

    Qingdao Xiaojianxi Leachate Treatment Co. Ltd. Qingdao China Qingdao Jieyuan Environment Co. Ltd. Qingdao China;

    Qingdao Xiaojianxi Leachate Treatment Co. Ltd. Qingdao China Qingdao Jieyuan Environment Co. Ltd. Qingdao China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reverse osmosis concentrated leachate; (ROCL); Ozonation; Coagulation; Peroxymonosulfate (PMS); Nanoscale zero valent iron (nZVI); Degradation mechanism;

    机译:反渗透浓缩渗滤液;(罗科);ozonation;凝血;过氧键硫酸盐(PMS);纳米级零价铁(NZVI);降解机制;

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