利用有机废物改良剂在土壤中降解废旧机油。

Biotechnology Research International Pub Date : 2012-01-01 Epub Date: 2012-06-20 DOI:10.1155/2012/587041
O P Abioye, P Agamuthu, A R Abdul Aziz
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引用次数: 143

摘要

在大多数发展中国家,用过的润滑油污染土壤和地表水是一种常见现象。这已被证明对环境和整个人类都有有害的影响。生物修复技术可以作为一种替代的绿色技术来修复这类烃污染的土壤。在实验室条件下,研究了以5%和15% (w/w)的废润滑油污染土壤,并以10%的啤酒废谷物(BSG)、香蕉皮(BS)和废蘑菇堆肥(SMC)进行改性的84 d生物修复试验。84 d结束时,用5%的旧润滑油和BSG改性的土壤中油脂的生物降解率最高(92%),而用15%的旧润滑油和BSG改性的土壤中油脂的生物降解率仅为55%。利用一级动力学模型确定废旧润滑油的生物降解速率,结果表明,在5%的油污污染情况下,BSG改性土壤的生物降解速率最高(0.4361 d(-1)),而在15%的油污污染情况下,BS改性土壤的生物降解速率最高(0.0556 d(-1))。本研究结果表明,BSG作为一种良好的底物,在低污染浓度下对烃类污染土壤进行强化修复具有一定的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Biodegradation of used motor oil in soil using organic waste amendments.

Biodegradation of used motor oil in soil using organic waste amendments.

Biodegradation of used motor oil in soil using organic waste amendments.

Biodegradation of used motor oil in soil using organic waste amendments.

Soil and surface water contamination by used lubricating oil is a common occurrence in most developing countries. This has been shown to have harmful effects on the environment and human beings at large. Bioremediation can be an alternative green technology for remediation of such hydrocarbon-contaminated soil. Bioremediation of soil contaminated with 5% and 15% (w/w) used lubricating oil and amended with 10% brewery spent grain (BSG), banana skin (BS), and spent mushroom compost (SMC) was studied for a period of 84 days, under laboratory condition. At the end of 84 days, the highest percentage of oil biodegradation (92%) was recorded in soil contaminated with 5% used lubricating oil and amended with BSG, while only 55% of oil biodegradation was recorded in soil contaminated with 15% used lubricating oil and amended with BSG. Results of first-order kinetic model to determine the rate of biodegradation of used lubricating oil revealed that soil amended with BSG recorded the highest rate of oil biodegradation (0.4361 day(-1)) in 5% oil pollution, while BS amended soil recorded the highest rate of oil biodegradation (0.0556 day(-1)) in 15% oil pollution. The results of this study demonstrated the potential of BSG as a good substrate for enhanced remediation of hydrocarbon contaminated soil at low pollution concentration.

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