首页> 外文期刊>Water, Air, and Soil Pollution >EFFECTS OF Pb, Cu, Sb, In AND Ag CONTAMINATION ON THE PROLIFERATION OF SOIL BACTERIAL COLONIES, SOIL DEHYDROGENASE ACTIVITY, AND PHOSPHOLIPID FATTY ACID PROFILES OF SOIL MICROBIAL COMMUNITIES
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EFFECTS OF Pb, Cu, Sb, In AND Ag CONTAMINATION ON THE PROLIFERATION OF SOIL BACTERIAL COLONIES, SOIL DEHYDROGENASE ACTIVITY, AND PHOSPHOLIPID FATTY ACID PROFILES OF SOIL MICROBIAL COMMUNITIES

机译:Pb,Cu,Sb,In和Ag污染对土壤微生物群落增殖,土壤脱氢酶活性和磷脂脂肪酸谱的影响

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摘要

Because of concerns about the toxicity of lead (Pb), the use of antimony (Sb), indium (In), silver (Ag), and other heavy metals are on the increase as its replacement in many kinds of industrial products, particularly in solders. In the present study, effects of Pb, Cu, Sb, In, and Ag contamination on bacterial growth inhibition in PTYG (peptone, tryptone, yeast extract, glucose) liquid media, soil dehydrogenase activity, concentrations and compositions of phospholipids fatty acids (PLFA) were assessed. Survival rates of bacterial colony-forming units were lower in the presence of various concentrations of Pb, Cu, Sb, In, Ag, Zn and Ni than in their absence. Soil dehydrogenase activity in Arenic Eutric Regosol was much decreased when the concentrations of Pb and Cu were 50 times their natural abundance and when Ag was at 100 times its natural abundance. Soil dehydrogenase activity was also much decreased in Eutric Cambisol when Cu was 50 times, and Ag was 100 times, their natural abundances. In contrast, Sb and In did not affect soil dehydrogenase activity at any concentration or in any type of soil. Concentrations and composition of PLFA did not show any conspicuous change. Cu, Sb, In and, especially, Ag, which are increasingly being used to replace Pb, should be considered to be potentially toxic. However, when evaluating the impact of waste metals on the environment, heavy metal solubility, speciation and interaction with organic matter in soil must be considered.
机译:由于对铅(Pb)毒性的担忧,锑(Sb),铟(In),银(Ag)和其他重金属的使用正在增加,因为它已被许多工业产品替代,尤其是在工业中。焊料。在本研究中,Pb,Cu,Sb,In和Ag污染对PTYG(蛋白p,胰蛋白,、酵母提取物,葡萄糖)液体培养基中细菌生长抑制,土壤脱氢酶活性,磷脂脂肪酸(PLFA)的浓度和组成的影响)进行了评估。在各种浓度的Pb,Cu,Sb,In,Ag,Zn和Ni的存在下,细菌菌落形成单位的存活率要比在没有它们的情况下低。当铅和铜的浓度是它们的自然丰度的50倍,而银的含量是其自然丰度的100倍时,槟榔碱的土壤脱氢酶活性大大降低。 Cu的50倍,Ag的100倍时,Eutric Cambisol的土壤脱氢酶活性也大大降低。相反,Sb和In在任何浓度或任何类型的土壤中均不影响土壤脱氢酶活性。 PLFA的浓度和组成没有显示任何明显的变化。越来越多地被用来代替Pb的Cu,Sb,In和特别是Ag被认为具有潜在毒性。但是,在评估废金属对环境的影响时,必须考虑重金属的溶解度,形态以及与土壤中有机物的相互作用。

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