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国家自然科学基金(51208258)

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Reductive transformation and detoxification mechanism of 2,4-dinitrochlorobenzene in combined zero valent iron and anaerobic-aerobic process被引量:4
2012年
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 BODs/COD increased from 0.005±0.001 to 0.168±0.007, while EC50,48hr (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 EC50' 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.
Jinyou ShenZongyuan ZhouChangjin OUXiuyun SunJiansheng LiWeiqing HanLin ZhouLianjun Wang
关键词:BIODEGRADABILITY
无隔膜生物电化学体系中硝基酚废水的强化还原
<正>硝基苯酚化合物主要来自农药、工业废水的降解产物,被广泛应用于农业、医药和化学工业,存在着巨大的潜在毒性,例如致畸、致突变和致癌作用,被美国环境保护署(USEPA)列为主要控制的污染物[1]。目前存在各类处理硝基酚类...
娄帅江心白华琮歆沈锦优王连军
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