微波强化Fe0/PDS系统处理垃圾渗滤液废水中的难降解有机物。

IF 2.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Feiyan Fang, Xi Luo, Qibin Li
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引用次数: 0

摘要

生物法处理垃圾渗滤液产生的出水仍含有大量难降解有机物,需要进一步处理。在这项研究中,我们使用微波增强零价铁/过硫酸氢盐(MW/Fe0/PDS)系统对生物处理过的垃圾渗滤液(BTLE)进行了进一步处理。对BTLE中难降解有机物的去除效率和机理进行了研究。结果表明,在MW = 240 W, [PDS]0 = 40 mM, [Fe0]0 = 10 mM, t = 12 min的条件下,MW/Fe0/PDS体系对BTLE中的有机物去除效果最好。对254 nm紫外吸光度、色数和总有机碳的去除率分别达到76.94%、93.50%和63.08%。有机质的芳香性、腐殖化度、分子量和聚合度均显著降低。反应前后Fe0的表面形貌和元素价态分析表明,Fe0表面形成了铁基氧化物(Fe2O3、Fe3O4、FeOOH和Fe (OH)3)。通过均相和非均相类芬顿反应和铁基胶体的吸附沉淀去除难降解有机物。MW的热效应和非热效应促进了PDS的直接分解,加速了Fe0表面Fe2+的形成,促进了Fe3+/Fe2+的氧化还原循环,并产生了更多的硫酸盐自由基(SO4•-)。这些作用共同提高了难降解有机物的去除效率。本研究结果可为利用MW/Fe0/PDS体系处理BTLE中的难降解有机物提供理论依据。执业要点:微波强化Fe0/PDS系统对去除垃圾渗滤液中的有机物是有效的。垃圾渗滤液中的有色和荧光有机物得到了有效的降解。系统中有非均相效应和均相效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microwave-enhanced Fe0/PDS system for treating refractory organic matter in biotreated landfill leachate effluent.

The effluent produced from treating landfill leachate via biological methods still contains a large amount of refractory organic matter and needs to be further treated. In this study, we used a microwave-enhanced zero-valent iron/peroxydisulfate (MW/Fe0/PDS) system for the further treatment of biotreated landfill leachate effluent (BTLE). We investigated the efficiency and mechanism of removing refractory organic matter from BTLE. The results show that under the conditions of MW = 240 W, [PDS]0 = 40 mM, [Fe0]0 = 10 mM, and t = 12 min, the MW/Fe0/PDS system best removed organic matter in the BTLE. The removal rates of UV absorbance at 254 nm, color number, and total organic carbon reached 76.94%, 93.50%, and 63.08%, respectively. The aromaticity, degree of humification, molecular weight, and degree of polymerization of the organic matter decreased significantly. The surface morphology and elemental valence analysis of Fe0 before and after the reaction revealed that iron-based oxides (i.e., Fe2O3, Fe3O4, FeOOH, and Fe (OH)3) formed on the surface of Fe0. The refractory organic matter was removed by homogeneous and heterogeneous Fenton-like reactions and the adsorption-precipitation of iron-based colloids. The thermal and nonthermal effects of MW promoted direct PDS decomposition, accelerated the formation of Fe2+ on the surface of Fe0, promoted the redox cycle of Fe3+/Fe2+, and generated more sulfate radicals (SO4 •-). Together, these effects improved the removal efficiency  of refractory organic matter. The results of this study can serve as a theoretical basis for the use of the MW/Fe0/PDS system to treat refractory organic matter in BTLE. PRACTITIONER POINTS: A microwave-enhanced Fe0/PDS system is effective for removing organic matter from landfill leachate. Colored and fluorescent organic matter in the landfill leachate was efficiently degraded. Heterogeneous and homogeneous effects Fenton reactions are involved in the system.

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来源期刊
Water Environment Research
Water Environment Research 环境科学-工程:环境
CiteScore
6.30
自引率
0.00%
发文量
138
审稿时长
11 months
期刊介绍: Published since 1928, Water Environment Research (WER) is an international multidisciplinary water resource management journal for the dissemination of fundamental and applied research in all scientific and technical areas related to water quality and resource recovery. WER''s goal is to foster communication and interdisciplinary research between water sciences and related fields such as environmental toxicology, agriculture, public and occupational health, microbiology, and ecology. In addition to original research articles, short communications, case studies, reviews, and perspectives are encouraged.
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