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首页> 外文期刊>Pedosphere: A Quarterly Journal of Soil Science >Biodegradation of Crude Oil in Contaminated Soils by Free and Immobilized Microorganisms
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Biodegradation of Crude Oil in Contaminated Soils by Free and Immobilized Microorganisms

机译:自由和固定化微生物对污染土壤中原油的生物降解

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The efficiencies of free and immobilized bacterial cultures of petroleum hydrocarbon degraders were evaluated and compared in this study. Hydrocarbon-degrading microbial communities with high tolerance to and high degrading ability of crude oil were obtained from the soil contaminated with crude oil in the Yellow River Delta. Then, the microbial cells were immobilized in sodium alginate (SA) beads and sodium alginate-diatomite (SAD) beads. The biodegradation of crude oil in soil by immobilized cells was compared with that by free cells at three inoculation concentrations, 1 × 104 colony forming units (cfu) kg1 (low concentration, L), 5 × 104 cfu kg1 (medium concentration, M), and 1 × 105 cfu kg1 (high concentration, H). At 20 d after inoculation, the maximum degradation rate in the immobilized systems reached 29.8% (SAD-M), significantly higher (P < 0.05) than that of the free cells (21.1%), and the SAD beads showed greater degradation than the SA beads. Moreover, both microbial populations and total microbial activity reached significantly higher level (P < 0.05) in the immobilized systems than free cell systems at a same initial inoculation amount. The scanning electronic microscope (SEM) images also confirmed the advantages of the immobilized microstructure of SAD beads. The enhanced degradation and bacterial growth in the SAD beads indicated the high potential of SAD beads as an effective option for bioremediation of crude oil-contaminated soils in the Yellow River Delta.
机译:在这项研究中评估并比较了游离和固定化石油烃降解剂的细菌培养物的效率。从黄河三角洲原油污染的土壤中获得了对原油具有高耐受性和高降解能力的烃降解微生物群落。然后,将微生物细胞固定在藻酸钠(SA)珠和藻酸钠-硅藻土(SAD)珠中。在三种接种浓度,1×104集落形成单位(cfu)kg1(低浓度,L),5×104 cfu kg1(中等浓度,M)的三种接种浓度下,固定细胞对游离油在土壤中的生物降解进行了比较。和1×105 cfu kg1(高浓度,H)。接种后20 d,固定化系统的最大降解率达到29.8%(SAD-M),比游离细胞(21.1%)显着更高(P <0.05),并且SAD珠粒的降解率高于游离细胞。 SA珠。而且,在相同的初始接种量下,固定化系统中的微生物种群和总微生物活性均显着高于游离细胞系统(P <0.05)。扫描电子显微镜(SEM)图像也证实了SAD微珠固定化微结构的优势。 SAD珠的降解增强和细菌生长增强表明,SAD珠作为黄河三角洲原油污染土壤生物修复的有效选择具有很高的潜力。

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