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Effects of Soil Amendments on Microbial Activities in a Typical Cd-Contaminated Purple Field Soil, Southwestern China

机译:土壤修正对中国西南部典型CD污染紫地土壤微生物活性的影响

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摘要

In this study, three soil amendments (inorganic, liming, or organic-inorganic materials) were used in a Cd-contaminated purple field soil to investigate their impacts on soil Cd availability, enzyme (urease, catalase, sucrase, and acid phosphatase) activities, microbial biomass (carbon/nitrogen) and type (bacteria, fungi, and actinomycetes) in mustard and corn trials. Results showed that soil amendments generally decreased soil exchangeable Cd, fungi and bacterial populations while increasing the activities of all the four soil enzymes tested, microbial biomass carbon and populations of actinomycetes (p < 0.05). Soil pH and microbial biomass nitrogen did not exhibit any significant response (p > 0.05) whereas stronger effects appeared in soil organic matter and available nutrients (nitrogen, phosphorous and potassium; p < 0.05). However, only soil available phosphorous significantly correlated with soil microbial activity in both mustard and corn trails (p < 0.05). Thus, application of phosphorous-containing amendments should be considered for promoting soil health in the remediation of the Cd-contaminated purple soils.
机译:在这项研究中,三种土壤修正(无机,拟林或有机无机材料)用于CD污染的紫色场土壤,以研究其对土壤CD可用性,酶(脲酶,过氧化氢酶,待磷酸酶)活性的影响芥末和玉米试验中的微生物生物量(碳/氮)和型(细菌,真菌和放线菌)。结果表明,土壤修正案普遍降低土壤可交换的CD,真菌和细菌种群,同时增加了所有四种土壤酶的活动,微生物生物量碳和放线菌的群体(P <0.05)。土壤pH和微生物生物量氮没有表现出任何显着的反应(P> 0.05),而在土壤有机物质和可用营养素(氮气,磷和钾; P <0.05)中出现更强的效果。然而,只有土壤可用磷与芥末和玉米痕迹中的土壤微生物活性显着相关(P <0.05)。因此,应考虑含磷修正案的应用来促进CD污染的紫色土壤的修复中的土壤健康。

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