部分涂料工业废水排放对土壤理化性质及污染土壤生物衰减的影响

Okafor Ugochukwu Chukwuma, Orji Michael Uchenna, Umeh Sophina Ogonna, O. Chinedu
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引用次数: 3

摘要

人口的快速增长导致的工业扩散和城市化导致了环境污染的迅速增加。城市地区的涂料工业大多将废水排入河流和陆地,造成了接收环境的污染。本研究旨在确定涂料工业废水排放对土壤理化性质的影响,以及通过监测自然衰减对污染土壤的清理。从油漆工业中收集了油漆废水和土壤的复合样品。在六个月的时间里监测了它们的生物衰减水平和理化性质的变化。从废水中分离出的真菌包括酿酒酵母菌(20%)、红曲霉(15%)、黑曲霉(25%)、黄曲霉(15%)和青霉(25%),而分离出的细菌包括金黄色葡萄球菌(30%)、芽孢杆菌(20%)、克雷伯氏菌(15%)、大肠杆菌(15%)、沙门氏菌(10%)和葡萄球菌(10%)。出水pH值呈微碱性,土壤pH值呈微酸性。随着修复时间的延长,污水污染土壤重金属含量显著降低,从而降低了土壤环境的毒性。应采用和改进监测的自然衰减方法,作为减少废水对环境的毒性的一种手段,因为与其他方法相比,它们既便宜又有效。
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Effects of Effluents’ Discharge from Some Paint Industries on Soil’s Physicochemical Properties and Bioattenuation of Polluted Soil
Rapid population growth resulting in industrial proliferation and urbanization has led to the rapid increase in pollution of the environment. Paint industries in urban areas mostly channel their wastewater into streams and on land, which results in the pollution of the receiving environment. This study aims to determine the impact of effluent discharges from paint industries on the soils’ physicochemical properties and the clean-up of the polluted soil through monitored natural attenuation. Composite samples of paint-effluents and soils were collected from paint industries. Their bioattenuation levels and changes in their physicochemical properties were monitored over a six-month period. Fungal isolates from the effluents include Saccharomyces cerevisiae (20%), Rhodotorula species (15%), Aspergillus niger (25%), Aspergillus flavus (15%), and Penicillum notatum (25%), while the bacterial isolates include Staphylococcus aureus (30%), Bacillus sp. (20%), Klebsiella sp.(15%), Escherichia coli (15%), Salmonella sp. (10%), and Staphylococcus species (10%). The effluents showed slightly alkaline pH values while the soils showed slightly acidic pH values. There were significant reductions in the heavy metal contents of the effluent polluted soils as remediation time increased, thus reducing the toxicity of such soil environments. Monitored natural-attenuation methods should be employed and improved as a means of reducing the toxicity of effluents on the environment since they are cheap and effective compared to other methods.
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