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首页> 外文期刊>International Biodeterioration & Biodegradation >Autochthonous microbial responses and hydrocarbons degradation in polluted soil during biostimulating treatments under different soil moisture. Assay in pilot plant
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Autochthonous microbial responses and hydrocarbons degradation in polluted soil during biostimulating treatments under different soil moisture. Assay in pilot plant

机译:在不同土壤湿度下进行生物刺激处理期间,污染土壤中的自生微生物响应和碳氢化合物降解。中试测定

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This study investigated autochthonous microbial responses and hydrocarbon degradation in a sandy soil artificially contaminated with Diesel fuel at 20,000 ppm using NPK fertilizer and Ivey surfactant as biostimulating agents. Experiments were carried out at pilot scale at different moisture contents. Dehydrogenase activity and CO2 production, measured as indicator of microbial activity showed cubic linear correlation. NPK-treatment stimulated biodegradation capacity most effectively when moisture was low; an increase in the soil moisture content produced a decrease in the biodegradation capacity of the treated soil. The biodegradation rate for TPH of 0.0454 day(-1) at 15% moisture, decreased to 0.0201 day(-1) at 25% moisture and to 0.0128 day(-1) at 30% moisture. NPK was the most efficient treatment at 15 and 25% moisture for n-alkanes, aromatics and branched hydrocarbons allowing for contaminant removal of between 78 and 100%. Branched and aromatic hydrocarbon degradation was best at 30% of moisture with NPK + Ivey treatment producing removal of 64 and 74% of the contaminant mass, over a period of 28 days. Canonical redundancy analysis showed that the addition of biostimulating agents explained 80.8% of the total variability of the biological and chemical parameters. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究使用NPK肥料和Ivey表面活性剂作为生物刺激剂,研究了在20,000 ppm的柴油燃料人工污染的沙质土壤中的自然微生物响应和碳氢化合物的降解。在不同水分含量下以中试规模进行实验。作为微生物活性指标测量的脱氢酶活性和CO 2产生呈立方线性相关。当水分含量低时,NPK处理最有效地刺激了生物降解能力。土壤水分含量的增加导致处理过的土壤的生物降解能力下降。 TPH在15%水分下的生物降解速率为0.0454天(-1),在25%水分下的生物降解速率降至0.0201 day(-1),在30%水分下的生物降解速率降至0.0128 day(-1)。在水分含量为15%和25%时,NPK是最有效的正链烷烃,芳烃和支链碳氢化合物处理方法,可去除78%至100%的污染物。使用NPK + Ivey处理时,水分含量为30%时,支链和芳烃的降解效果最佳,可在28天的时间内去除64%和74%的污染物。典型的冗余分析表明,添加生物刺激剂可以解释生物学和化学参数总变异的80.8%。 (C)2015 Elsevier Ltd.保留所有权利。

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