Biostimulatory Influence of Biochar on Degradation of Petroleum Hydrocarbon Impacted Soil

M. E. Nkereuwem, A. O. Amoo, A. Adeleye, Hafsat S. Abubakar, V. Onokebhagbe, Fatimah Kamaldeen
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引用次数: 1

Abstract

Soil pollution caused by petroleum hydrocarbon and its derivatives has become a grave global issue. Physico-chemical techniques are often expensive. However, bioremediation of petroleum hydrocarbon polluted soil is cost-effective. Therefore, the study was carried out to assess the biostimulatory influence of biochar on the degradation of petroleum hydrocarbon impacted soil in NNPC Depot, kano state. Soil samples were randomly collected from the polluted site to obtain a composite sample. About 400 g of the polluted soil was filled into pots and arranged in a 2x2 factorial experiment in a completely randomized design with three replications. Bone and wood char was at 2 levels (0 and 50 g/pot) each. Data were collected on the physicochemical properties (pH, TN, and Av. P) of the soil, Total Petroleum Hydrocarbon (TPH), and bacterial population. Data were analyzed using ANOVA at α0. 05. Results obtained from the study show that biochar application significantly (p<0.05) enhanced TPH degradation and bacterial population in the polluted soil. However, Bone char significantly(p<0.05) enhanced TPH degradation and bacterial population the most compared to wood char. Combined bone and wood char application resulted in significantly (p<0.05) lower residual TPH content in the polluted soil compared to using bone or wood char alone. Thus, bone and wood char should be used in the bioremediation of petroleum hydrocarbon impacted soils.
生物炭对石油烃污染土壤降解的生物刺激作用
石油烃及其衍生物引起的土壤污染已成为一个严重的全球性问题。物理化学技术往往是昂贵的。然而,石油烃污染土壤的生物修复是经济有效的。因此,本研究旨在评估生物炭对卡诺州NNPC仓库石油烃污染土壤降解的生物刺激影响。随机抽取污染场地土壤样品,获得复合样品。取污染土壤约400g装罐,进行2 × 2因子试验,完全随机设计,3个重复。骨炭和木炭含量分别为0和50 g/锅。收集了土壤理化性质(pH、TN、Av. P)、总石油烃(TPH)和细菌数量等数据。数据采用方差分析(ANOVA), α0。05. 研究结果表明,施用生物炭显著(p<0.05)提高了污染土壤中TPH的降解和细菌数量。骨炭对TPH降解和细菌数量的促进作用显著(p<0.05)高于木炭。与单独使用骨炭或木炭相比,骨炭和木炭联合施用显著降低了污染土壤中残余TPH含量(p<0.05)。因此,骨炭和木炭可用于石油烃污染土壤的生物修复。
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