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Basic examinations on chemical pre-oxidation by ozone for enhancing bioremediation of phenanthrene contaminated soils

机译:臭氧化学预氧化对菲污染土壤的生物修复的基础检查

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摘要

Biological treatment of polycyclic aromatic hydrocarbons (PAH) has been demonstrated to be a feasible and common remediation technology which has been successfully applied to the clean-up of contaminated soils. Because bioavailability of the contaminants is of great importance for a successful bioremediation, a chemical pre-oxidation step by ozone was tested to enhance the subsequent biodegradation steps. Oxidation of PAH by ozone should result in reaction products that have a better solubility in water and thus a better bioavailability. A major part of this work was done by examinations of the model substance phenanthrene as a typical compound of PAH. After initial ozonation of phenanthrene, analysis by GC-MS showed at least seven identified conversion-products of phenanthrene. In comparison with phenanthrene these conversion products were more efficiently biodegraded by Sphingomonas yanoikuyae or mixed cultures when the ozonation process resulted in monoaromatic compounds. Primary ozonation products with biphenylic structures were found not to be biodegradable. Investigations into the toxicity of contaminated and ozonated soils were carried out by well-established toxicity assays using Bacillus subtilis and garden cress. The ozonated soils surprisingly showed higher toxic or inhibitory effects towards different organisms than the phenanthrene or PAH itself. The microbial degradation of phenanthrene in slurry reactors by S. yanoikuyae was not enhanced significantly by pre-ozonation of the contaminated soil.
机译:已经证明,对多环芳烃(PAH)进行生物处理是一种可行且常见的修复技术,该技术已成功应用于清理污染的土壤。由于污染物的生物利用度对于成功的生物修复至关重要,因此对臭氧进行的化学预氧化步骤进行了测试,以增强后续的生物降解步骤。臭氧将PAH氧化后,反应产物在水中的溶解度会更高,从而具有更高的生物利用度。这项工作的主要部分是通过检查模型物质菲作为PAH的典型化合物来完成的。菲初步进行臭氧化后,通过GC-MS分析表明,至少有七个已鉴定的菲转化产物。与菲相比,当臭氧化过程产生单芳族化合物时,这些转化产物可被鞘氨醇单胞菌或混合培养物更有效地生物降解。发现具有联苯结构的初级臭氧化产物不可生物降解。通过使用枯草芽孢杆菌和水芹的成熟毒性试验,对污染和臭氧化土壤的毒性进行了研究。相比于菲或多环芳烃本身,臭氧化的土壤对不同生物具有更高的毒性或抑制作用。 yanoikuyae对泥浆反应器中菲的微生物降解没有通过污染土壤的预臭氧化得到明显增强。

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  • 来源
    《Applied Microbiology and Biotechnology 》 |2001年第6期| 803-809| 共7页
  • 作者单位

    Institut für Technische Chemie Universität Hannover Callinstrasse 3 30167 Hannover Germany;

    Institut für Technische Chemie Universität Hannover Callinstrasse 3 30167 Hannover Germany;

    Institut für Technische Chemie Universität Hannover Callinstrasse 3 30167 Hannover Germany;

    Institut für Technische Chemie Universität Hannover Callinstrasse 3 30167 Hannover Germany;

    Institut für Technische Chemie Universität Hannover Callinstrasse 3 30167 Hannover Germany;

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