利用浸渍玉米棒和黑木耳的组合修复原油污染的土壤

A. M. Okpa, C. C. Monago-Ighorodje, K. Baabel, O. E. Ezim
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摘要

本研究评估了牛肝菌(Pleurotus ostreatus)和浸渍玉米棒在修复原油污染土壤方面的生物吸收潜力。研究人员从位于河流州 Gokana L.G.A 的 B-Dere 社区收集了原油污染土壤,并对其进行了理化、总石油烃(TPH)、多环芳烃(PAHs)和重金属分析。原油污染土壤样本被分成五份,每份 2,000 克,分别加入以下数量的浸渍玉米棒、P. ostreatus 和 triton x- 00,并贴上如下标签:a) 未经处理的污染土壤 - A 细胞(对照样本);b) 20 毫升 triton x-100 - B 细胞;c) 150 克浸渍玉米棒 - C 细胞;d) 150 克 P. ostreatus - D 细胞;e) 20 毫升 triton x-100 - B 细胞。用浸渍过的玉米棒和奥氏囊藻处理六(6)周后收集土壤样本,放入无菌塑料袋中培养,然后转移到实验室进行理化、总石油碳氢化合物、多环芳烃和重金属分析。修复前(即第 0 周)和修复后的平均理化参数发生了明显变化。经过 6 周的修复,所有细胞中的 TPH 和 PAHs 浓度均明显降低(p< 0.05)。修复过程明显降低了 TPH、PAHs 和重金属的浓度,这表明修复过程能有效去除这些有毒物质。因此,这种组合方法更为有效,不仅能加强生物修复过程,还能解决废物管理和利用问题。
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Remediation of crude oil polluted soil using a combination of macerated cobs of Zea mays and Pleurotus ostreatus
This study evaluated the bio-absorptive potentials of Pleurotus ostreatus and macerated cobs of Zea mays in the remediation of crude oil polluted soil. Crude oil contaminated soil was collected from B-Dere community located in Gokana L.G.A, Rivers State and analyzed for physicochemical, Total petroleum hydrocarbon (TPH) Polycyclic aromatic hydrocarbons (PAHs) and heavy metal. The crude oil polluted soil sample was divided into five parts of 2,000 g each with the following quantity of macerated cobs of Zea mays, P. ostreatus and triton x- 00 added and labeled thus: a) Polluted soil without treatment – cell A (control sample), b) 20ml of triton x-100 - cell B, c) 150 g of macerated cob of Zea mays – cell C, d) 150 g of P. ostreatus – cell D and e) 100 g of macerated cobs of Zea mays and P. ostreatus(i.e. 50 g each) – cell E.Soil samples were collected six (6) weeks after treatment with macerated cobs of Zea mays and P. ostreatus and incubated in sterile plastic bags and transferred to the laboratory for physicochemical, TPH, PAHs and heavy metal analyses. There were significant changes in the mean physico-chemical parameters before remediation (i.e., week 0) and remediation. After 6 weeks of remediation, TPH and PAHs concentration across all the cells were significantly (p< 0.05) reduced. The remediation process led to a notable reduction in TPH, PAHs and heavy metal concentrations suggesting its effectiveness in removal of these toxicants. Thus, the combination method is more effective and can enhance bioremediation process as well as solve the problem of waste management and utilization. 
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