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Treatment of domestic wastewater using the combination of porous concrete and phytoremediation for irrigation

机译:用多孔混凝土和植物修复组合治疗国内废水

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Phytoremediation method, in combination with porous concrete and some additives, has been examined in order to reduce the contamination of unconventional water resources. This treatment system is economically cost-effective and easy to apply, compared to other treatment methods. The current study was focused on evaluating the effects of arrangement of vetiver grass and porous concrete specimens (four types of grass-specimens arrangements), vetiver grass layout on polystyrene sheets (5 x 5 and 10 x 10 cm spacing), porous concrete mixture (basic design as control, basic design + 5% zeolite, basic design + 10% zeolite, basic design + 5% pumice), temperature of the test room (10 +/- 2, 20 +/- 2 and 30 +/- 2 degrees C), type of the unconventional water (domestic wastewater effluent and urban runoff) and Portland cement type (2 and 5) on the reduction of biochemical oxygen demand (BOD), chemical oxygen demand (COD), total suspended solids (TSS), and fecal coliforms. Taguchi method (robust design) and Qualitek-4 software were used to optimize the combination of aforementioned factors. Results indicated that temperature was the most effective parameter on reducing the BOD, COD, and fecal coliforms. The vetiver grass layout on the polystyrene sheets and porous concrete mixture design were more effective than vetiver grass-porous concrete arrangement. Effect of vetiver grass roots was significant in reducing the TSS content. The cement type had minimum impact on reducing the qualitative parameters of the wastewater samples. Based on the results, combination of 10 x 10 cm spacing of vetiver grass on polystyrene sheets, third type of vetiver grass-porous concrete arrangement, porous concrete mixture with 10% zeolite, Portland cement Type 2, and room temperature of 30 +/- 2 degrees C was the best for improving the quality of wastewater effluent as compared to urban runoff. The treated effluents can be used with caution for urban green spaces or irrigation purposes, and the difficulties of the proposed combined system should be taken into consideration.
机译:研究了植物化方法,与多孔混凝土和一些添加剂组合,以减少非传统水资源的污染。与其他治疗方法相比,这种治疗系统经济上具有经济成本效益且易于施用。目前的研究重点是评估喂养草和多孔混凝土样本的安排(四种类型的草图布置),在聚苯乙烯片上(5×5和10×10cm间距),多孔混凝土混合物(基本设计作为控制,基本设计+ 5%沸石,基本设计+ 10%沸石,基本设计+ 5%浮石,试验室的温度(10 +/- 2,20 +/- 2和30 +/- 2摄影率C),无传统水(国内废水污水和城市径流)和波特兰水泥型(2和5)的减少生化需氧量(BOD),化学需氧量(COD),总悬浮固体(TSS)和粪便大肠杆菌。 Taguchi方法(鲁棒设计)和Qualitek-4软件用于优化上述因素的组合。结果表明,温度是减少BOD,COD和FECAL COLIS的最有效参数。聚苯乙烯片和多孔混凝土混合物设计上的丙酮草布局比禽类多孔混凝土布置更有效。 Vetiver Grass Roots的影响在降低TSS含量方面显着。水泥型对降低废水样品的定性参数具有最小影响。基于结果,组合10×10cm间距的聚苯乙烯片,第三种类型的丙酮草多孔混凝土布置,多孔混凝土混合物,10%沸石,波特兰水泥2型,和室温30 +/-与城市径流相比,2摄氏度是提高废水流出物的质量。处理过的污水可以小心用于城市绿地或灌溉目的,应考虑拟议的组合系统的困难。

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