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Ecological effects of single and combined pollution of cadmium and phenanthrene on soil microorganisms

机译:单一和镉和菲污染的生态效应与土壤微生物

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Soil microbial biomass carbon (Cmic), soil basic respiration and soil enzyme activities are the most important biological indicators of soil quality. The effects of single and combined pollution of cadmium (Cd 20mg/kg) and phenanthrene (Phe 50mg/kg) on these biological indicators were investigated in this study under the laboratory incubation conditions. The results showed that the level of Cmic and soil basic respiration were significantly reduced at different ratios in the whole experimental period (45d) when stress of single or combined pollution of Cd and Phe were imposed on. For the initial period of the stress, such inhibition was strong, and then gradually decreased or disappeared with the incubation time. The activities of urease, phosphatase, and dehydrogenase were also inhibited by the single Cd pollution or combined pollution of Cd and Phe during the whole experimental period. However, under the single Phe stress, the inhibition of soil enzyme activities could be observed at early stages of the incubation, and for the later stage of incubation, the soil enzyme activities were induced. Significant interactions between Cd and Phe in the condition of combined pollution were also found in this study. The toxicity effect of combined pollution of Cd and Phe was stronger than those caused by single Cd or Phe pollution, and mainly contributed by Phe.
机译:土壤微生物碳(CMIC),土壤碱性呼吸和土壤酶活性是土壤质量最重要的生物学指标。在实验室培养条件下,研究了在本研究中研究了镉(Cd 20mg / kg)和镉(Cd 20mg / kg)和菲膦(phe 50mg / kg)对这些生物指标的影响。结果表明,当整个实验期(45d)中的不同比例(45d)施加对CD和PHE的综合污染的压力时,在整个实验期(45d)中的不同比例显着降低了CMIC和土壤碱性呼吸的水平。对于应力的初始时期,这种抑制性强烈,然后随着孵育时间逐渐降低或消失。在整个实验期间,单张Cd污染或CD和PHE的单CD污染或联合污染也抑制了脲酶,磷酸酶和脱氢酶的活性。然而,在单一的phe胁迫下,可以在孵育的早期阶段观察到对土壤酶活性的抑制,并且在后来孵育的阶段,诱导土壤酶活性。在本研究中也发现了CD和PHE之间的显着相互作用。 CD和PHE联合污染的毒性效果比单镉或手表污染引起的毒性效果,主要是PHE贡献。

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