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Evaluation of Composting with ‘Spent’ Mushroom Substrate and Sawdust for Remediation of Petroleum Hydrocarbon-Polluted Soil

机译:评估“废”蘑菇底料和木屑堆肥对石油烃污染土壤的修复作用

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Aim: To evaluate the capacities of composting ‘spent’ mushroom substrate and sawdust with crude oil polluted soil to enhance degradation of petroleum hydrocarbon. Study Design: The degradation of petroleum hydrocarbon contents of crude oil polluted treatments composted with ‘spent’ mushroom substrate, sawdust and a mixture of ‘spent’ mushroom substrate and sawdust were compared with that of crude oil polluted-not-composted treatment to determine the influence of the compost amendments. Place and Duration of Study: The Centre for Ecological Studies, Department of Plant Science and Biotechnology, University of Port Harcourt, Nigeria, from March - July 2015. Methodology: Five buckets were each filled with 1500 g of top alluvial soil and labelled T1 – T5. T1 (i.e. control) was not polluted while the other buckets were each polluted with Bonny Light crude oil at 6.7% (v/w). T2 was not composted with any material after pollution. T3 was mixed with 200 g of ‘spent’ mushroom substrate and T4 with 200 g of sawdust while T5 was composted with a mixture of 200 g of ‘spent’ mushroom substrate and 200 g of sawdust. Results: Final pH of 8.4±0.1 and 6.4±0.2 were recorded in T1 and T5 respectively. The pH of T2 decreased from 8.8±0.1 to 7.1±0.1 and from 8.7±0.1 to 7.1±0.4 in T3, but increased from 5.3±0.0 to 8.5±0.0 in T4. Percentage total petroleum hydrocarbon contents decreased by 75.5% in T3 and T5 and 64.9% in T4. Average phosphorus contents increased from 0.33±0.0 to 52.60±0.23 mg/kg in T5, 0.33±0.03 to 1.81±0.35 mg/kg in T4 and from 0.36±0.01 to 1.34±0.62 mg/kg in T3 but decreased from 0.35±0.01 to 0.14±0.60 mg/kg in T2. Total nitrogen contents recorded reduction in T2, T3, T4 and T5 and total organic carbon increased in T2, decreased in T4 and was constant in T5 during the experiment. Conclusion: ‘Spent’ mushroom substrate, sawdust and a mixture of ‘spent’ mushroom substrate and sawdust composted with crude oil polluted soil significantly enhanced removal of soil hydrocarbon content.
机译:目的:评估将“废”蘑菇基质和锯末与原油污染土壤堆肥的能力,以增强石油碳氢化合物的降解。研究设计:将“废”蘑菇底物,锯末以及“废”蘑菇底物和锯末的混合物堆肥的原油污染处理过程中的石油烃含量降解与原油未堆肥处理进行比较,以确定堆肥修正案的影响。研究的地点和时间:2015年3月-7月,尼日利亚哈科特港大学植物科学与生物技术系生态研究中心。方法:五个水桶装满1500 g表层冲积土,并标有T < sub> 1 – T 5 。 T 1 (即对照)未受到污染,而其他桶分别受到了6.7%(v / w)的Bonny Light原油的污染。污染后,T 2 未与任何物质堆肥。将T 3 与200 g的“用过的”蘑菇基质混合,T 4 与200 g的木屑混合,而T 5 与混合物混合200克“用过的”蘑菇底料和200克木屑。结果:T 1 和T 5 的最终pH分别为8.4±0.1和6.4±0.2。 T 3 中T 2 的pH从8.8±0.1降至7.1±0.1,从8.7±0.1降至7.1±0.4,但从5.3±0.0升高至8.5± T 4 中为0.0。 T 3 和T 5 的总石油烃含量降低了75.5%,T 4 的降低了64.9%。 T 5 中的平均磷含量从0.33±0.0增加到52.60±0.23 mg / kg,T 4 中的0.33±0.03增加到1.81±0.35 mg / kg,而0.36± T 3 中的0.01至1.34±0.62 mg / kg,但T 2 中的0.35±0.01降至0.14±0.60 mg / kg。 T 2 ,T 3 ,T 4 和T 5 的总氮含量降低,总有机碳增加在实验期间,T 2 中的T 4 下降,T 5 中的恒定。结论:“废”蘑菇底物,锯末以及“废”蘑菇底物和木屑与原油污染土壤堆肥的混合物显着提高了土壤碳氢化合物的去除率。

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