优化石油污染土壤生物修复所需的营养浓度

Ashwini G, Dr. Basappa B Kori
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摘要

由于石油碳氢化合物被无意或有意地大量引入环境,从而对各种生命形式造成长期威胁,公众对此日益关注。因此,对这些物质进行补救至关重要。生物修复技术可通过微生物将石油碳氢化合物转化为毒性较低的化合物,从而降解土壤基质中的原油。本研究调查了微生物生长所需的最佳养分(C:N:P)浓度。收集了石油含油污泥、受污染土壤和富含本地微生物的土壤,并用它们制备了模拟受污染土壤,将其填充至反应器容积的 3/4。在整个研究期间,反应器中除 C:N:P 比率外的所有参数都保持不变。在 20 个反应器中,C:N:P 的比例从 100:2.5:0.25 到 100:20:2。对照反应器中未添加氮和磷。在所有反应器中对受 TPH 污染的土壤进行了为期六周的可处理性研究。研究结果表明,在不同的 C:N:P 比率中,C:N:P 比率为 100:10:1 的 TPH 去除率最高,为 59.57%,生物降解率为 0.022 天/1,R2 为 0.968,这表明生物降解与时间之间存在密切关系。结果表明,养分浓度是影响热带土壤中石油烃生物降解的最重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimization of Nutrients Concentration Required for the Bioremediation of Petroleum Contaminated Soil
There is a growing public concern as petroleum hydrocarbons are being introduced inadvertently or deliberately in large volumes into the environment thus causing a long term threat to all forms of life. Thus remediation of these is of utmost importance. The bioremediation technology is being employed for the degradation of crude oil in soil matrix through microorganisms which can transform petroleum hydrocarbons into less toxic compounds. In this study, optimum nutrients (C: N: P) concentration required for the microbial growth was investigated. The petroleum oily sludge, contaminated soil, soil rich in native microorganisms was collected and the same was used to prepare simulated contaminated soil which was filled up to 3/4th of the reactors volume. All the parameters except the C: N: P ratio in the reactors were maintained constant throughout the study period. The C: N: P ratios varies from 100:2.5:0.25 to 100:20:2 in the twenty reactors, N and P were amended to make up the required ratios. N and P were not added into the control reactor. Treatability studies on TPH contaminated soil was conducted in all the reactors for a period of six weeks. The results of the study reveals that among the different C:N:P ratios, C:N:P ratio of 100:10:1 gave the maximum TPH removal of 59.57 % with biodegradation rate of 0.022 day/1, R2 obtained was 0.968 which suggest that there exists a strong relationship between biodegradation and time. The results thereby imply that nutrients concentration is the most important factor that affects the biodegradation of petroleum-hydrocarbons in tropical soils.
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