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Biodegradation of Benzo[a]pyrene in Soil by Immobilized Fungus

机译:固定化真菌对土壤中苯并[a] py的生物降解

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摘要

Mucor sp., a filamentous fungus capable of degrading polycyclic aromatic hydrocarbons (PAHs), was immobilized on maize cob (MC) by physical adsorption and used to degrade benzo[a]pyrene (BaP). The characteristics of BaP degradation by both immobilized and free fungus were then investigated and compared. The degradation rate using the immobilized fungus was higher than that of the freely mobile fungus. When the initial BaP concentration was 50 mg · kg?1, the removal rate was 68% within 42 days using immobilized fungus but only 52% for free fungus in that same time. The optimal amount of inoculated immobilized fungus for BaP degradation was shown to be 2%. The immobilized fungus also showed better removal efficiencies of BaP than free fungus, independent of the moisture content. The increasing concentration of BaP was better tolerated and more quickly degraded by immobilized fungus than by free fungus when the initial BaP concentration was in the range of 10 to 200 mg · kg?1. The scanning electronic microscope (SEM) analysis showed that the immobilized microstructure was suitable for Mucor sp. growth. The results demonstrate the potential for employing Mucor sp., immobilized on MC, for in situ bioremediation of PAH-contaminated soil.
机译:Mucor sp。是一种能够降解多环芳烃(PAHs)的丝状真菌,通过物理吸附固定在玉米芯(MC)上,并用于降解苯并[a] re(BaP)。然后研究并比较了固定化真菌和游离真菌对BaP降解的特性。使用固定化真菌的降解速率高于自由移动真菌的降解速率。当BaP的初始浓度为50 mg·kg?1时,固定化真菌在42天内的去除率为68%,而游离真菌在同一时间内仅为52%。已证明,BaP降解的最佳固定接种真菌量为2%。固定的真菌也显示出比游离真菌更好的BaP去除效率,而与水分含量无关。当初始BaP浓度在10到200 mg·kg?1范围内时,固定的真菌比游离的真菌对增加的BaP的耐受性更好,并且降解更快。扫描电子显微镜(SEM)分析表明,固定化的微结构适合于Mucor sp。增长。结果证明了使用固定在MC上的Mucor sp。进行PAH污染土壤的原位生物修复的潜力。

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