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Changes in phosphorus content, phosphatase activity and some physicochemical and microbiological parameters of soil within the range of impact of illegal dumping sites in Bydgoszcz (Poland)

机译:在比得哥什(波兰)的非法倾倒场地影响范围内,土壤中的磷含量,磷酸酶活性以及一些理化和微生物参数的变化

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The present research aimed to assess the influence of illegal dumping on changes in the content of phosphorus and its relationship with selected chemical properties. Soil was sampled from two horizons: 0-20 and 20-40 cm. Samples from points W1, W2 and W3 (waste 1, 2 and 3) were collected directly from under illegally deposited landfill sites that differed in the morphological composition. At a distance of 30 m from landfill W3 there were agricultural lands where maize was cultivated (arable soil, AS). The control point (C) was located far from the waste landfill sites determined and beyond the range of their effect. In soil the following were determined: total organic carbon, phosphorus (total, organic, mineral, available, active), the microbiological activity, the content of heavy metals and the activity of alkaline and acid phosphatase. The study concluded that the composition of treatments W1 and W2 had a more negative impact on the soils than landfill site W3. The results show that the changes depended on the type of the waste deposited. In AS and landfills W3 there was observed a high P availability and count of bacteria. The results have shown that an addition of organic residues to soil has a variety of effects on microbial and phosphatase activities. The lowest resistance (RS) for alkaline and acid phosphatases was found in soil from the area of dumping sites W1 and W2; the highest RS was determined in AS. Statistical analyses of simple correlations showed clearly that microbiological populations were also particularly implicated in the activity of phosphomonoesterases.
机译:本研究旨在评估非法倾倒对磷含量变化及其与所选化学性质的关系的影响。从两个视野取样土壤:0-20和20-40 cm。从W1,W2和W3点(废料1、2和3)取样是直接从形态特征不同的非法堆填区下面采集的。在距垃圾填埋场W3 30 m处,有一些农田被种植了玉米(可耕土壤,AS)。控制点(C)距离已确定的垃圾填埋场较远,且超出其影响范围。在土壤中测定了以下内容:总有机碳,磷(总量,有机,矿物,可利用的,活性的),微生物活性,重金属含量以及碱性和酸性磷酸酶的活性。研究得出的结论是,处理W1和W2的组成对土壤的负面影响要大于垃圾填埋场W3。结果表明,变化取决于所沉积废物的类型。在AS和垃圾填埋场W3中,观察到了高P利用率和细菌数量。结果表明,向土壤中添加有机残留物对微生物和磷酸酶活性具有多种影响。从倾倒场所W1和W2的区域土壤中发现了碱性磷酸酶和酸性磷酸酶的最低电阻(RS)。最高的RS是在AS中确定的。简单相关性的统计分析清楚地表明,微生物种群也与磷酸单酯酶的活性特别相关。

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