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BIOREMEDIATION OF A CRUDE OIL-POLLUTED SOIL: BIODEGRADATION, LEACHING AND TOXICITY ASSESSMENTS

机译:粗油污染土壤的生物修复:生物分解,淋溶和毒性评估

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The combined fate and effects of hydrocarbons (HC) on a soil ecosystem affected by bioremediation were studied during 480 days in a field experiment. The HC removal rates, the HC and metabolites mobility and the potential toxicity were assessed. A clayey soil polluted by 18 000 mg HC kg~(-1) dry soil, was treated with either static-ventilated biopile or series of five windrows periodically tilled in order to determine the relative influence of nutrients, bulking agents, aeration and soil temperature. HC concentrations were determined by infrared spectrometry, gra-vimetry, gas chromatography and thermodesorption. Between 70 to 81% of the initial HC were removed through biological processes in fertilized soils, whereas natural attenuation without added nutrients was 56%. When adding fertilizers, residual HC were cyclic compounds poorly biodegraded and strongly trapped on the organo-mineral matter. Leaching of HC and water-soluble metabolites was demonstrated during the first stages of biodegradation. Low levels of the HC were detected in the leachates at day 480. Maximal toxicity was highest immediately after the introduction of oil then decreased as biodegradation proceeded. No toxic effect was recorded on worms survival and on seeds germination at day 480. However growth of plants was reduced in treated soils and a potential residual toxicity was observed on the basis of photosynthesis inhibition and bacterial bioluminescence (Microtox) tests.
机译:在田间试验中研究了480天期间碳氢化合物(HC)对受生物修复影响的土壤生态系统的综合命运和影响。评估了HC去除率,HC和代谢物的迁移率以及潜在的毒性。用静电通风的生物堆或定期耕种的五堆草堆处理被18000 mg HC kg〜(-1)干燥土壤污染的黏土,以确定养分,填充剂,通气和土壤温度的相对影响。 HC浓度通过红外光谱法,重量法,气相色谱法和热脱附法测定。最初的HC中有70%至81%是通过生物过程在肥沃的土壤中去除的,而没有添加养分的自然衰减为56%。添加肥料时,残留的HC是难生物降解的环状化合物,并且强烈地捕获在有机矿物质上。 HC和水溶性代谢物的浸出在生物降解的最初阶段得到了证实。在第480天在渗滤液中检测到低水平的HC。引入油后,最大毒性最高,然后随着生物降解的进行而降低。在第480天,未对蠕虫的存活和种子发芽产生任何毒性作用。但是,在经过处理的土壤中,植物的生长减少了,并且根据光合作用抑制和细菌生物发光(Microtox)测试观察到了潜在的残留毒性。

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