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Bioremediation of cutting fluids contaminated soil by Pleurotus tuber-regium Singer

机译:杏鲍菇对土壤中切削液的生物修复

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This study investigated the effect of inoculation of Pleurotus tuber-regium, a Nigerian white rot fungus, period of incubation, different levels of contamination on cutting fluids degradation in contaminated soil over 30, 60, and 90 days. Control for different levels of cutting fluids was also used to compare rates of bioremediation of the contaminant in the soil. At the end of each incubation period, the mycelia-ramified substrate was separated from the soil layer and dried. The soil samples were analyzed for physico-chemical parameters; total petroleum hydrocarbon, lignin content by determining the acid detergent fraction (ADF), heavy metals content of the soil using flame atomic absorption spectrophotometer, and changes in the polyphenol oxidase and peroxidase activities were also determined after 1, 2, and 3 months. P. tuber-regium improved the nutrient status of the soil and increased enzyme activity was recorded. A reduction in the pH and heavy metal contents of the soil at all levels of cutting fluids concentrations was detected. The lignin in the rice straw decreased from 34.50% in the control to 8.06% at 30% cutting fluids concentration after 3 months of incubation. The highest TPH loss of 30.84% was recorded at 20% cutting fluids contamination after 3 months compared to 13.75% at the onset of the experiment. The improvement of the nutrient contents of the soil, bioaccumulation of heavy metals, degradation of TPH, lignin, and increased activity of polyphenol oxidase and peroxidase was due to biodegradation of the cutting fluids.
机译:这项研究调查了在30、60和90天内接种白灵菇,尼日利亚白腐真菌,温育期,不同污染水平对切削液降解的影响。还使用了不同含量切削液的对照来比较土壤中污染物的生物修复率。在每个培养期结束时,将菌丝体分支的底物从土壤层中分离出来并干燥。分析土壤样品的理化参数;在1、2和3个月后,还测定了石油烃的总量,木质素含量(通过测定酸性去垢剂含量(ADF)),使用火焰原子吸收分光光度计测定土壤中的重金属含量以及多酚氧化酶和过氧化物酶活性的变化。 P. tuber-regium改善了土壤的营养状况,并记录了增加的酶活性。在各种切削液浓度下,土壤的pH值和重金属含量均下降。孵育3个月后,稻草中的木质素从对照组的34.50%降至30%切削液浓度下的8.06%。 3个月后,切削液受到20%的污染时,TPH损失最高,为30.84%,而实验开始时为13.75%。土壤养分含量的提高,重金属的生物富集,TPH,木质素的降解以及多酚氧化酶和过氧化物酶活性的提高是由于切削液的生物降解所致。

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