首页> 外文期刊>Journal of environmental sciences >Reductive transformation and detoxification mechanism of 2,4-dinitrochlorobenzene in combined zero valent iron and anaerobic-aerobic process
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Reductive transformation and detoxification mechanism of 2,4-dinitrochlorobenzene in combined zero valent iron and anaerobic-aerobic process

机译:零价铁与厌氧-好氧结合过程中2,4-二硝基氯苯的还原转化和解毒机理

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摘要

A combined zero valent iron (ZVI) and anaerobic-aerobic process was adopted for the treatment of 2,4-dinitrochlorobenzene (DNCB)-containing wastewater. The transformation pathway, reduction of acute toxicity and enhancement of biodegradability were investigated. After pretreatment by ZVI, DNCB in wastewater could be completely converted into 2,4-diaminochlorobenzene (DACB). The ratio of BOD_5/COD increased from 0.005 ± 0.001 to 0.168 ± 0.007, while EC_(50, 48 hr) (V/V) increased from 0.65% to 5.20%, indicating the enhancement of biodegradability and reduction of acute toxicity with the pretreatment by ZVI. DACB was further dechlorinated to m-phenylenediamine during the anaerobic process using methanol as electron donor, with EC_(50, 48 hr) increasing from 5.20% to 48.2%. After the subsequent anaerobic-aerobic process, m-phenylenediamine was degraded completely, with effluent COD of 67.5 ± 10.8 mg/L. This effluent of the subsequent anaerobic-aerobic process was not toxic to zebrafish, The combined ZVI and anaerobic-aerobic process offers bright prospects for the treatment of chlorinated nitroaromatic compound-containing wastewater.
机译:采用零价铁(ZVI)和厌氧-好氧工艺相结合的方法处理含2,4-二硝基氯苯(DNCB)的废水。研究了转化途径,减少急性毒性和增强生物降解性。经过ZVI预处理后,废水中的DNCB可以完全转化为2,4-二氨基氯苯(DACB)。 BOD_5 / COD的比例从0.005±0.001增加到0.168±0.007,而EC_(50,48 hr)(V / V)从0.65%增加到5.20%,表明预处理可提高生物降解性并减少急性毒性由ZVI。在厌氧过程中,使用甲醇作为电子给体将DACB进一步脱氯为间苯二胺,EC_(50,48 hr)从5.20%增加到48.2%。经过随后的厌氧-好氧工艺后,间苯二胺被完全降解,出水COD为67.5±10.8 mg / L。后续厌氧-好氧过程的这种废水对斑马鱼无毒。ZVI和厌氧-好氧过程的结合为处理含氯硝基芳香化合物的废水提供了广阔的前景。

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