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Effect of soil fortified by polyurethane foam on septic tank effluent treatment

机译:聚氨酯泡沫强化土壤对化粪池废水处理的影响

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Fortified soil was made up of a mixture at a mass ratio 4/1000-6/1000 of sponge and natural soil according to the results of column experiment. The fortified soil had bigger porosity and higher hydraulic conductivity than the natural soil. The columns packed with 900 mm of the fortified soil endured a flow rate equivalent to 100 L/m2/d of septic tank effluent and the average chemical oxygen demand, nitrogen, and phosphorus removal rates were around 92%, 75% and 96%, respectively. After 100 weeks of operation, the saturated hydraulic conductivity of the fortified soil kept higher than 0.2 m/d. The bigger porosity of sponge improved the effective porosity, and the bigger specific surface area of sponge acted as an ideal support for biomat growth and ensured the sewage treatment performance of the fortified soil. The comparable performance was due to a similar and sufficient degree of soil clogging genesis coupled with bioprocesses that effectively purified the septic tank effluent given the adequate retention times.
机译:根据柱实验的结果,强化土壤由海绵与天然土壤的质量比为4 / 1000-6 / 1000的混合物组成。强化土壤比天然土壤具有更大的孔隙率和更高的水力传导率。装有900毫米强化土壤的柱子承受的流量相当于化粪池出水100 L / m2 / d,平均化学需氧量,氮和磷去除率分别约为92%,75%和96%,分别。运转100周后,强化土壤的饱和导水率保持在0.2 m / d以上。海绵的较大孔隙率提高了有效孔隙率,海绵的较大比表面积为生物膜的生长提供了理想的支撑,并确保了强化土壤的污水处理性能。可比的性能归因于相似和足够程度的土壤堵塞发生以及生物过程,该过程在给定足够的保留时间的情况下可以有效地净化化粪池废水。

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