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Total petroleum hydrocarbon degradation in contaminated soil as affected by plants growth and biochar

机译:植物生长和生物炭对受污染土壤中总石油烃降解的影响

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摘要

This study was conducted to investigate the effect of barley and oat plants and poultry manure biochar on total petroleum hydrocarbons (TPHs) degradation and microbial respiration at 4, 6 and 8% TPH levels in soil. Results showed that with increasing TPH levels, plants growth and TPHs degradation significantly reduced; however, the presence of plants in contaminated soil and application of biochar significantly increased degradation of TPHs and microbial respiration rate. TPHs reduction percentage in soils cultivated with barley and oat were about 1.02 and 0.75 times higher than unplanted soil. Microbial respiration rate in soil cultivated with barley and oat increased about 67 and 34.5% compared to unplanted treatment. TPHs reduction percentage and average of microbial respiration rate in biochar-treated soil significantly increased by 21.76 and 37.73% for barley and 20.36 and 45.18% for oat plant compared to non-biochar treatments, respectively. Barley and oat appear to be suitable for degradation of TPHs, and biochar is useful amendment for enhancing TPHs degradation in this soil.
机译:进行这项研究以研究大麦和燕麦植物以及家禽粪便生物炭在土壤中4、6和8%TPH水平下对总石油烃(TPHs)降解和微生物呼吸的影响。结果表明,随着TPH水平的提高,植物的生长和TPH的降解显着降低;然而,受污染土壤中植物的存在和生物炭的使用显着增加了TPH的降解和微生物的呼吸速率。大麦和燕麦种植的土壤中TPHs减少的百分比分别约为未种植土壤的1.02和0.75倍。与未种植的处理相比,大麦和燕麦栽培的土壤中的微生物呼吸速率分别提高了约67%和34.5%。与非生物炭处理相比,生物炭处理过的土壤中大麦的TPHs减少百分比和平均微生物呼吸速率显着提高,大麦分别为21.76%和37.73%,燕麦植物为20.36%和45.18%。大麦和燕麦似乎适合于TPHs的降解,而生物炭是在土壤中促进TPHs降解的有用的改良剂。

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