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Impact of brass and electroplating industry effluent on some physico- chemical and biological properties of soil

机译:黄铜和电镀工业废水对土壤某些理化和生物学特性的影响

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摘要

A field study was conducted at three sites (S1-S3) of 500m longitudinal transect along the drain, where soil was irrigated by toxic metal rich brass and electroplating industrial effluent in suburban area of Moradabad, India. Spatial and seasonal variations of total heavy metal content in soil and their effect on physico-chemical and biological properties were studied in soil samples taken from 0-25, 25-50 and 50-75 cm soil depth. Except pH, all parameters were maximum in summer in surface soil at each site. Total metal content decreased with increasing distance from the effluent course. Physico-chemical values (pH, EC, C_(org), available N etc.) were found minimum at S1 and maximum at S3. Significant inhibition of microbial biomass C and N, respiration, dehydrogenase activity and microbial coefficient occurred in soils highly contaminated by heavy metals. There was a significant decrease in C_(mic)/N_(mic) ratio and an increase in metabolic quotient (qCO_2) with increasing metal concentration.
机译:在沿排水沟500m纵向断面的三个位置(S1-S3)进行了田野研究,在该位置的土壤由印度莫拉达巴德郊区的富含有毒金属的黄铜和电镀工业废水灌溉。在0-25、25-50和50-75cm土壤深度的土壤样品中研究了土壤中总重金属含量的时空变化及其对理化和生物学特性的影响。除pH值外,所有参数在夏季每个站点的表层土壤中都最大。总金属含量随着与污水层距离的增加而降低。在S1处发现最小的理化值(pH,EC,C_(org),有效氮等),在S3时发现最大。在重金属高度污染的土壤中,微生物生物量碳和氮,呼吸,脱氢酶活性和微生物系数受到显着抑制。随着金属浓度的增加,C_(mic)/ N_(mic)比率显着降低,代谢商(qCO_2)升高。

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