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利用负载于沸石上的腐殖酸对五氯苯酚污染土壤进行生物修复。

Bioremediation of soil contaminated with pentachlorophenol (PCP) using humic acids bound on zeolite.

作者信息

Dercová Katarína, Sejáková Zuzana, Skokanová Marianna, Barancíková Gabriela, Makovníková Jaroslava

机构信息

Department of Biochemical Technology, Institute of Biotechnology and Food Science, Faculty of Chemical and Food Technology, Slovak University of Technology, Radlinského 9, 812 37 Bratislava, Slovak Republic.

出版信息

Chemosphere. 2007 Jan;66(5):783-90. doi: 10.1016/j.chemosphere.2006.06.061. Epub 2006 Jul 28.

Abstract

We determined the toxicity of various chlorophenols, especially pentachlorophenol (PCP), on five bacterial strains and studied PCP biodegradation in soils amended with an organomineral complex (OMC) prepared from humic acids (organic part) bound on zeolite (inorganic part). Both components of OMC have excellent sorption properties and are of natural origin and therefore suitable to be used in the environment. Toxicity of chlorophenols depends not only on the number of chlorine atoms but also on their position on aromatic ring, and is thus regiospecific. Biodegradation of PCP was studied in three real completely characterized soil samples, Chernozem, Fluvisol, and Regosol, with and without the addition of OMC. The soils were sterilized and bioaugmented with the bacterial isolate Comamonas testosteroni CCM 7530. The immobilization effect of OMC in relation to PCP depends on the concentration of humic acids (HAs), the PCP concentration, and the content of organic carbon in soil. The microbial activity and the simulated action of acid rains led to the gradual release and biodegradation of the reversibly bound PCP without no initial toxic effect on indigenous or bioaugmented microorganisms. OMC appeared to be a good trap for PCP with potential applications in remediation technology because it reduces the potential toxicity of PCP to microbial community by lowering its bioavailability and thus facilitates its biodegradation.

摘要

我们测定了各种氯酚,尤其是五氯酚(PCP)对五种细菌菌株的毒性,并研究了在添加了由腐殖酸(有机部分)与沸石(无机部分)结合制备的有机矿物复合物(OMC)的土壤中PCP的生物降解情况。OMC的两种成分都具有出色的吸附特性,且均源于天然,因此适合在环境中使用。氯酚的毒性不仅取决于氯原子的数量,还取决于它们在芳环上的位置,因此具有区域特异性。在三种完全表征的真实土壤样品,即黑钙土、潮土和粗骨土中,研究了添加和不添加OMC时PCP的生物降解情况。土壤经过灭菌处理,并接种了细菌分离株睾酮丛毛单胞菌CCM 7530进行生物强化。OMC对PCP的固定作用取决于腐殖酸(HA)的浓度、PCP的浓度以及土壤中的有机碳含量。微生物活性和模拟酸雨作用导致可逆结合的PCP逐渐释放并被生物降解,且对本地或生物强化微生物没有初始毒性作用。OMC似乎是PCP的良好捕获剂,在修复技术中具有潜在应用价值,因为它通过降低PCP的生物可利用性来降低其对微生物群落的潜在毒性,从而促进其生物降解。

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