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纳米零价铁催化过氧化氢强化修复4-氯硝基苯污染地下水的研究
摘要点击 2440  全文点击 1306  投稿时间:2013-10-26  修订日期:2013-12-06
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中文关键词  纳米零价铁  过氧化氢  修复  4-氯硝基苯  地下水污染
英文关键词  nanoscale zero-valent iron  hydrogen peroxide  remediation  4-chloronitrobenzene  groundwater contamination
作者单位E-mail
付融冰 上海市环境科学研究院,上海 200233 rongermmfu@163.com 
中文摘要
      化学氧化还原技术是快速修复受污染地下水的重要手段,为探明某污染场地地下水化学修复的可行性和有效性,通过FeSO4与NaBH4液相还原反应制备了纳米零价铁(nZVI)颗粒,对其进行了扫描电子显微镜(SEM)和X射线衍射(XRD)形貌观测与分析表征.采用制备的nZVI,在常温常压下催化H2O2修复4-氯硝基苯(4-ClNB)污染地下水.考察了不同工艺反应条件对修复效果的影响,分析探讨了工艺对特征污染物的降解机制.结果表明,在温度30℃、初始pH值3.0、nZVI质量浓度268.8 mg·L-1、H2O2浓度4.90 mmol·L-1时,nZVI催化H2O2工艺能在30 min内完全转化降解污染地下水中4-ClNB.通过GC/MS、LC/MS和IC鉴定得到4-ClNB降解的主要中间产物,包括4-氯亚硝基苯、4-氯羟基苯胺、4-氯氧化偶氮苯、4-氯偶氮苯、4-氯苯胺、对苯醌、甲酸、乙酸、草酸和氯离子等,并在此基础上给出了4-ClNB可能的降解途径.
英文摘要
      Chemical oxidation-reduction technology is an important way to quickly remedy contaminated groundwater. Nanoscale zero-valent iron (nZVI) was produced by liquid-phase reduction using FeSO4 and NaBH4, and characterized by SEM and XRD. The remediation of 4-chloronitrobezene (4-ClNB) contaminated groundwater at ambient temperature and pressure was conducted with the nZVI catalytic H2O2 process, and the affecting factors and degradation mechanisms were investigated. The results indicated that under initial pH 3.0 at the temperature of 30℃, after 30 mins of reaction, 4-ClNB in groundwater was completely degraded when the concentrations of nZVI and H2O2 were 268.8 mg·L-1 and 4.90 mmol·L-1, respectively. 4-chloronitrosobenzene, 4-chlorophenylhydroxylamine, 4-chloroazoxybenzene, 4-chloroaniline, 4-chloroazobenzene, 4-benzoquinone, acetic acid, formic acid, oxalic acid and chlorine ion were identified as the major intermediates of 4-ClNB degradation after the process. A tentative pathway for the degradation of 4-ClNB was proposed.

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