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首页> 外文期刊>Bioremediation journal >Biodegradation Kinetics of Naphthalene in Soil Medium Using Pleurotus Ostreatus in Batch Mode with Addition of Fibrous Biomass as a Nutrient
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Biodegradation Kinetics of Naphthalene in Soil Medium Using Pleurotus Ostreatus in Batch Mode with Addition of Fibrous Biomass as a Nutrient

机译:添加纤维生物质为营养元素的平菇发酵模式在土壤介质中萘的降解动力学。

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The efficiency and kinetics of naphthalene biodegradation in a soil medium using Pleurotus ostreatus (a type of white rot fungus) in batch mode with and without the addition of oil palm fiber (OPF) as a nutrient are evaluated in this study. Three batches are considered in the biodegradation study: (i) control-spiked soil; (ii) spiked soil with fungus; and (iii) spiked soil with both fungus and OPF. Biodegradation is conducted over a period of 22 days for which soil naphthalene concentrations are determined with respect to microwave extraction and high-performance liquid chromatography (HPLC) analysis. The results indicate that inoculation with Pleurotus ostreatus significantly enhances soil naphthalene biodegradation to 84%, which is further enhanced upon the addition of OPF to 98% with respect to the degradation rate. The high carbon content in OPF (>40%) affords it the capacity to be a viable nutrient supplement for Pleurotus ostreatus, thereby enhancing the potential of Pleurotus ostreatus in the biodegradation of polycylic aromatic hydrocarbons (PAHs), and indicating the potential of OPF as a nutrient for PAH biodegradation. A relationship between OPF mass and the biodegradation rate constant has been determined to be linear according to the following equation: k = 0.0429 x OPF + 0.1291.
机译:在这项研究中,评估了在添加或不添加油棕纤维(OPF)作为营养素的情况下,使用平菇(一种白腐真菌)在土壤培养基中萘生物降解的效率和动力学。在生物降解研究中考虑了三批:(i)掺加对照的土壤; (ii)掺有真菌的土壤; (iii)掺有真菌和OPF的土壤。在22天的时间内进行生物降解,针对微波萃取和高效液相色谱(HPLC)分析确定土壤萘的浓度。结果表明,接种平菇可显着提高土壤萘的生物降解率至84%,而添加OPF可使降解率进一步提高至98%。 OPF中的高碳含量(> 40%)使它有能力成为平菇的可行营养补充剂,从而增强了平菇在多环芳烃(PAHs)生物降解中的潜力,并表明OPF作为PAH生物降解的营养物质。根据以下等式,已确定OPF质量与生物降解速率常数之间的关系是线性的:k = 0.0429 x OPF + 0.1291。

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