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首页> 外文期刊>Water Science and Technology >Removal of polycyclic aromatic hydrocarbons (PAHs) from sewage sludge by anaerobic degradation
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Removal of polycyclic aromatic hydrocarbons (PAHs) from sewage sludge by anaerobic degradation

机译:通过厌氧降解去除污水污泥中的多环芳烃(PAHs)

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Due to the hydrophobic nature of the polyaromatic hydrocarbons (PAHs) they are mostly bound to the sludge and escape aerobic treatment in a wastewater treatment plant. They therefore proceed directly to the anaerobic post treatment, terminate in the sludge, and can be released to the environment if land spreading is used. PAH degradation in anaerobic methanogenic systems has only recently been shown to occur. In this study we have assessed several factors of anaerobic PAH degradation by evaluating thermodynamic feasibility of degradation, assessing degradation at different temperatures, and investigating the enriched cultures using fluorescent in-situ hybridization (FISH). Thermodynamic calculations indicated that PAH degradation was possible under methanogenic conditions, in the presence of hydrogen utilizing methanogens. Removal of naphthalene and 1-methyl naphthalene depended both on temperature and the initial inoculum. Inocula sourced from contaminated land sites were the most effective. The enrichments were all a mixture of Bacteria, and Archaea, and the Archaea were generally identified as Methanobacteriales, using an order-specific probe. The bacteria were not specifically identified. The results indicate a syntrophic culture, with the bacteria oxidizing the naphthalene, and the Archaea converting the hydrogen produced by oxidation, to methane.
机译:由于多环芳烃(PAH)的疏水性,它们大多与污泥结合并在废水处理厂中逃脱需氧处理。因此,它们直接进行厌氧后处理,终止于污泥中,如果使用土地传播,则可以释放到环境中。厌氧产甲烷系统中PAH的降解直到最近才出现。在这项研究中,我们通过评估降解的热力学可行性,评估不同温度下的降解以及研究使用荧光原位杂交(FISH)的富集培养物,评估了厌氧PAH降解的几个因素。热力学计算表明,在存在利用甲烷源的氢的情况下,在甲烷源条件下,PAH可能降解。萘和1-甲基萘的去除取决于温度和初始接种物。来自受污染土地的接种物最为有效。富集都是细菌和古细菌的混合物,并且使用有序特异性探针将古细菌通常鉴定为甲烷细菌。细菌没有被具体鉴定。结果表明是一种共营养培养,细菌将萘氧化,古细菌将氧化产生的氢转化为甲烷。

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