垃圾渗滤液污染羽在地下环境中的分带现象研究 |
摘要点击 2543 全文点击 1559 投稿时间:2005-07-22 修订日期:2005-10-24 |
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中文关键词 氧化还原带 生物地球化学 最终电子受体 氧化容量 还原容量 |
英文关键词 redox zones biogeochemistry terminal electron acceptor oxidation capacity reduction capacity |
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中文摘要 |
通过土柱实验研究垃圾渗滤液污染物在地下环境中降解的生物地球化学作用和分带现象,并对污染前后土壤中的Fe3+、Fe2+、氧化容量(OXC)和还原容量(RDC)等的变化进行分析.结果表明,垃圾渗滤液污染羽中出现了4个顺序氧化还原带,微生物在每个带所利用的最终电子受体是不同的,分别为CO2、Fe3+、NO3-和O2,相应地依次称为产甲烷带、铁还原带、NO |
英文摘要 |
A soil column filled with sandy soil was constructed to investigate biogeochemical process of leachate pollutants degradation and redox zones in subsurface environment,and variation of Fe3+,Fe2+,oxidation capacity (OXC) and reduction capacity(RDC) of fresh and contaminated soil were analyzed. Experimental results indicated that four sequent redox zones are appear in pollution plume,and different terminal electron acceptors(they are CO2,Fe3+,NO3- and O2) were used by microbes in different zones;Zones can be named methanogenic zone,iron reduction zone,nitrate reduction zone and oxygen reduction zone correspondingly;the indicator of the different zone is HCO3-,Fe2+,NO2- and DO,and its highest concentration is 10 353 mg/L,13.61 mg/L,0.097 mg/L and 5.8 mg/L respectively.OXC of the soil is increased sequentially,its lowest value is 14.18 μmol/g in methanogenic zone and highest value is 24.45 μmol/g in oxygen reduction zone; RDC of the soil is reduced sequentially,its highest value is 14.18 μmol/g in methanogenic zone and lowest value is 24.45 μmol/g in oxygen reduction zone.With the more serious contamination,Fe3+ minerals of the soil are reduced by biogeochemical process,and dissolved Fe2+ is produced.Some of the Fe2+ is released to water and the other is precipitated as sediments.Therefore,it is significant for the in situ remediation and risk assessment of the landfill contaminated site to investigate of the redox zones. |
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