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首页> 外文期刊>Fresenius Environmental Bulletin >BIOLOGICAL ACTIVITY IN Cu-CONTAMINATED SOILS: A LABORATORY EXPERIMENT
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BIOLOGICAL ACTIVITY IN Cu-CONTAMINATED SOILS: A LABORATORY EXPERIMENT

机译:铜污染土壤的生物活性:实验室实验

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In a laboratory study, soil respiration, catalase and de-hydrogenase activities were used as bioindicators of the toxic effects of Cu, added to 6 agricultural soils as copper sulfate (CuSO_4) at moderate (100 mg kg~(-1)) and high (1000 mg kg~(-1)) rates. The samples were kept at 25℃ and 50% field capacity during an incubation period of 70 days. The addition of Cu lowered soil pHs, with a general reduction of about 0.5 pH units below control values. The extractable amounts of Cu ranged from 57 to 87 % (moderate rate) and 64 to 100 % (high rate). The smallest recovery of extractable Cu was observed in soil with the highest pH and in that with the greatest level of organic C. Generally, Cu-contaminated soils showed a significantly reduced respiration rate, dehydrogenase and catalase activities, but the 1000 mg kg~(-1) concentration increased CO_2 evolution in 4 of the 6 soil samples, and was strongly effective in inhibiting soil respiration, dehydrogenase and catalase activities. Microbial activity changes during incubation could not be totally examined. In the soil with the highest level of organic matter, the microbial parameters were insensitive to Cu addition. On the contrary, in the sandy soil, poor in organic matter, the examined microbial activities were strongly inhibited by Cu application. The results chiefly indicate that alterations of microbial parameters allowed useful quantification of soil disturbance by Cu, and can be recommended for monitoring Cu pollution of soils.
机译:在实验室研究中,土壤呼吸,过氧化氢酶和脱氢酶活性被用作表明铜的毒性的生物指标,并以中等浓度(100 mg kg〜(-1))和高浓度硫酸铜(CuSO_4)的形式添加到6种农业土壤中。 (1000 mg kg〜(-1))比率。在70天的孵育期内,将样品保持在25℃和50%的田间持水量。铜的添加降低了土壤的pH值,通常降低了约0.5个pH单位,低于控制值。 Cu的可提取量为57至87%(中等比率)和64至100%(高比率)。在最高pH值和最大有机C含量的土壤中,可提取的Cu回收率最低。通常,受Cu污染的土壤的呼吸速率,脱氢酶和过氧化氢酶活性显着降低,但1000 mg kg〜( -1)浓度增加了6个土壤样品中4个的CO_2释放,并且在抑制土壤呼吸,脱氢酶和过氧化氢酶活性方面非常有效。孵育过程中的微生物活性变化无法完全检查。在有机质含量最高的土壤中,微生物参数对添加铜不敏感。相反,在有机质较差的沙质土壤中,施用铜会强烈抑制所检查的微生物活性。研究结果主要表明,改变微生物参数可以对铜对土壤的扰动进行有效定量,并建议用于监测土壤中铜的污染。

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