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Investigation on the improved electrochemical and bio-electrochemical treatment processes of soilless cultivation drainage (SCD)

机译:无土栽培排水改善电化学和生物电化学处理过程的研究(SCD)

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The soilless crop cultivation under cover generates wastewater called soilless cultivation drainage (SCD), being a nutrient-rich overflow. The average concentration of phosphorus- and nitrogen-based pollutants from soilless tomato cultivation usually ranges from 35.4 to 104.0 mg P/Land from 270.0 to 614.9 mg N/L, respectively. In bio-electrochemical reactors, nitrogen and phosphorus are removed via biological denitrification, electrochemical nitrate reduction, bio-electrochemical reduction, and electrocoagulation. The novelty of this study is due to the use of alternating current (AC), which can both mitigate the corrosion on the anode and solve the issue of insoluble oxide build-up on the cathode. Additionally, and crucially, it promotes bacterial growth and activity. The aim of the present study was to determine (1) the effectiveness of soilless cultivation drainage treatment methods that employ biological and electrochemical processes, with consideration given to (2) the quantity and quality of the produced sludge as a potential nutrient-rich product The bio-electrochemical reactor proved more effective than the electrochemical one and ensured a high TP and TN removal efficiency exceeding 97% and 66%, respectively. The resulting sludge was rich in such elements as calcium, potassium, carbon, phosphorus, and nitrogen, and as such may serve as a viable alternative to conventional mineral fertilizers.
机译:覆盖下的无土作物栽培产生叫做无土栽培排水(SCD)的废水,是富含营养的溢流。无土番茄栽培的磷和氮污染物的平均浓度通常为35.4至104.0mg p /土地,分别为270.0至614.9 mg n / l。在生物电化学反应器中,通过生物脱氮,电化学硝酸盐还原,生物电化学还原和电凝来除去氮和磷。本研究的新颖性是由于使用交流(AC),这可以减轻阳极上的腐蚀并解决阴极上的不溶性氧化物积聚问题。此外,至关重要的是,它促进了细菌生长和活性。本研究的目的是确定(1)培养使用生物和电化学工艺的无土栽培排水处理方法的有效性,考虑到(2)所生产的污泥的数量和质量作为潜在的营养丰富的产品生物电化学反应器经证明比电化学效率更有效,并确保分别超过97%和66%的高TP和TN去除效率。所得污泥富含钙,钾,碳,磷和氮,因此可以作为常规矿物肥料作为可行的替代品。

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