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Using Basalt Flour and Brown Algae to Improve Biological Properties of Soil Contaminated with Cadmium

机译:利用玄武岩面粉和褐藻改善镉污染土壤的生物学特性

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In order to achieve homeostasis of soil, the potential of alleviating substances (two innovative: basalt flour and brown algae extract against two classic compounds: barley straw and compost) were analyzed in soil contaminated with cadmium. The studies thus determined the activity of urease, number of ammonification bacteria, nitrogen-immobilizing bacteria, Arthrobacter sp., Azotobacter sp., and spring barley yield. The analyzed parameters were presented as the following indices: RS - resistance of soil; EF - fertilization effect of an alleviating substance; and R:S - rhizosphere effect. Cadmium was applied as CdCl2 center dot 2.5H(2)O at the following doses: 0, 4, 40, 80, 120, 160, and 200 mg Cd2+/kg of soil. Straw increased the values of most examined parameters, mainly at lower doses of cadmium. Among the cultivated plants, resistance was most stimulated by compost. Basalt flour and brown algae extract did not play a major role in the recovery of contaminated soil. Ammonification bacteria were the least sensitive to stress associated with the deposition of cadmium in soil, whereas Azotobacter sp. was the most sensitive. Urease was found to be a reliable indicator of soil condition.
机译:为了实现土壤的动态平衡,在镉污染的土壤中分析了缓解物质(两种创新物质:玄武岩面粉和褐藻提取物对两种经典化合物:大麦秸秆和堆肥)的潜力。因此,研究确定了脲酶的活性,氨化细菌的数量,固氮细菌,节杆菌属,固氮菌属和大麦的产量。分析参数表示为以下指标:RS-土壤抵抗力; EF-缓解物质的受精作用; R:S-根际效应。镉以以下剂量施用:CdCl2中心点2.5H(2)O:0、4、40、80、120、160和200 mg Cd2 + / kg土壤。秸秆增加了大多数检查参数的值,主要是在较低剂量的镉下。在栽培植物中,堆肥最能激发抗药性。玄武岩粉和褐藻提取物在受污染土壤的恢复中不发挥主要作用。氨化细菌对与镉在土壤中沉积有关的压力最不敏感,而固氮菌则为。是最敏感的发现脲酶是土壤状况的可靠指标。

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