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Resistance of aerobic microorganisms and soil enzyme response to soil contamination with Ekodiesel Ultra fuel

机译:Ekodiesel Ultra燃料对好氧微生物和土壤酶对土壤污染的抵抗力

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摘要

This study determined the susceptibility of cultured soil microorganisms to the effects of Ekodiesel Ultra fuel (DO), to the enzymatic activity of soil and to soil contamination with PAHs. Studies into the effects of any type of oil products on reactions taking place in soil are necessary as particular fuels not only differ in the chemical composition of oil products but also in the composition of various fuel improvers and antimicrobial fuel additives. The subjects of the study included loamy sand and sandy loam which, in their natural state, have been classified into the soil subtype 3.1.1 Endocalcaric Cambisols. The soil was contaminated with the DO in amounts of 0, 5 and 10 cm3 kg−1. Differences were noted in the resistance of particular groups or genera of microorganisms to DO contamination in loamy sand (LS) and sandy loam (SL). In loamy sand and sandy loam, the most resistant microorganisms were oligotrophic spore-forming bacteria. The resistance of microorganisms to DO contamination was greater in LS than in SL. It decreased with the duration of exposure of microorganisms to the effects of DO. The factor of impact (IFDO) on the activity of particular enzymes varied. For dehydrogenases, urease, arylsulphatase and β-glucosidase, it had negative values, while for catalase, it had positive values and was close to 0 for acid phosphatase and alkaline phosphatase. However, in both soils, the noted index of biochemical activity of soil (BA) decreased with the increase in DO contamination. In addition, a positive correlation occurred between the degree of soil contamination and its PAH content.
机译:这项研究确定了培养的土壤微生物对Ekodiesel Ultra燃料(DO),土壤的酶活性和PAHs污染的敏感性。必须研究任何类型的油产品对在土壤中发生的反应的影响,因为特定的燃料不仅在油产品的化学组成上有所不同,而且在各种燃料改良剂和抗微生物燃料添加剂的组成上也有所不同。研究的对象包括壤土和砂壤土,它们在自然状态下已被分类为土壤亚型3.1.1内生冈比亚溶胶。土壤被DO污染的量分别为0、5和10 cm 3 kg -1 。在壤土沙土(LS)和壤土沙土(SL)中,特定群体或属的微生物对DO污染的抵抗力存在差异。在壤质沙土和砂质壤土中,抵抗力最强的微生物是寡养芽孢形成细菌。 LS中微生物对DO污染的抵抗力比SL中更大。随着微生物暴露于DO的持续时间而降低。影响特定酶活性的因素(IFDO)各不相同。对于脱氢酶,脲酶,芳基硫酸酯酶和β-葡萄糖苷酶,其值为负值;对于过氧化氢酶,其值为正值;对于酸性磷酸酶和碱性磷酸酶,其值接近于0。但是,在两种土壤中,土壤的生化活性(BA)的显着指数均随DO污染的增加而降低。另外,土壤污染程度与其PAH含量之间存在正相关关系。

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