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Quantitative assessment on soil enzyme activities of heavy metal contaminated soils with various soil properties

机译:不同土壤性质的重金属污染土壤的土壤酶活性定量评估

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Soil enzyme activities are greatly influenced by soil properties and could be significant indicators of heavy metal toxicity in soil for bioavailability assessment. Two groups of experiments were conducted to determine the joint effects of heavy metals and soil properties on soil enzyme activities. Results showed that arylsulfatase was the most sensitive soil enzyme and could be used as an indicator to study the enzymatic toxicity of heavy metals under various soil properties. Soil organic matter (SOM) was the dominant factor affecting the activity of arylsulfatase in soil. A quantitative model was derived to predict the changes of arylsulfatase activity with SOM content. When the soil organic matter content was less than the critical point A (1.05% in our study), the arylsulfatase activity dropped rapidly. When the soil organic matter content was greater than the critical point A, the arylsulfatase activity gradually rose to higher levels showing that instead of harm the soil microbial activities were enhanced. The SOM content needs to be over the critical point B (2.42% in our study) to protect its microbial community from harm due to the severe Pb pollution (500 mg kg(-1) in our study). The quantitative model revealed the pattern variation of enzymatic toxicity due to heavy metals under various SOM contents. The applicability of the model under wider soil properties need to be tested. The model however may provide a methodological basis for ecological risk assessment of heavy metals in soil. (C) 2014 Elsevier Ltd. All rights reserved.
机译:土壤酶活性受土壤性质的影响很大,可能是土壤中重金属毒性的重要指标,可用于生物利用度评估。进行了两组实验,以确定重金属和土壤特性对土壤酶活性的联合影响。结果表明,芳基硫酸酯酶是最敏感的土壤酶,可作为研究各种土壤特性下重金属酶毒性的指标。土壤有机质(SOM)是影响土壤中芳基硫酸酯酶活性的主要因素。推导了定量模型以预测芳基硫酸酯酶活性随SOM含量的变化。当土壤有机质含量低于临界点A(在我们的研究中为1.05%)时,芳基硫酸酯酶的活性迅速下降。当土壤有机质含量大于临界点A时,芳基硫酸酯酶活性逐渐升高至较高水平,说明土壤微生物活性增强而不是损害。 SOM含量必须超过临界点B(在我们的研究中为2.42%),以保护其微生物群落免受严重Pb污染(在我们的研究中为500 mg kg(-1))的伤害。定量模型揭示了在各种SOM含量下由于重金属引起的酶毒性的模式变化。该模型在更广泛的土壤性质下的适用性需要进行测试。然而,该模型可以为土壤中重金属的生态风险评估提供方法学基础。 (C)2014 Elsevier Ltd.保留所有权利。

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