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Removal of phosphate from wastewater by using open gradient superconducting magnetic separation as pretreatment for high gradient superconducting magnetic separation

机译:开放梯度超导磁分离预处理高梯度超导磁分离去除废水中的磷酸盐

摘要

The removal of phosphate from wastewater using a combination of open gradient superconducting magnetic separation (OGMS) and high gradient superconducting magnetic separation (HGMS) was investigated. The magnetic seeding material used was Fe3O4, and a novel composite inorganic coagulant was added to combine the phosphate with the magnetic seed. The important parameters that influenced the removal efficiency of phosphate in OGMS or HGMS, slow mixing time, magnetic seeding dosage, coagulant dosage, hydraulic retention time, magnetic field strength and flow rate, were systematically investigated. The performance of the OGMS-HGMS process was evaluated by treating synthetic phosphate wastewater. The results showed that all of the investigated parameters except for slow mixing time had a significant effect on phosphate removal. The phosphate concentration was reduced from 0.50 to 0.01 mg/L under the following optimal reaction conditions: coagulant dosage, 50 mg/L; Fe3O4, 100 mg/L; magnet working current, 160 A; hydraulic retention time in OGMS, 0.5 min; and flow rate in HGMS, 2 L/min. Overall, the use of OGMS as a pretreatment for HGMS was shown to be a good method of increasing phosphate removal efficiency while simultaneously increasing the flow rate of HGMS. (C) 2011 Elsevier B.V. All rights reserved.
机译:结合开放梯度超导磁分离(OGMS)和高梯度超导磁分离(HGMS)对废水中的磷酸盐进行了研究。所使用的磁性种子​​材料为Fe3O4,并添加了新型的复合无机凝结剂以使磷酸盐与磁性种子结合。系统地研究了影响OGMS或HGMS中磷酸盐去除效率的重要参数,缓慢的混合时间,磁种剂量,凝结剂剂量,水力停留时间,磁场强度和流速。通过处理合成磷酸盐废水来评估OGMS-HGMS工艺的性能。结果表明,除缓慢混合时间外,所有研究的参数均对磷酸盐的去除有显着影响。在以下最佳反应条件下,磷酸盐浓度从0.50降至0.01 mg / L:凝结剂用量为50 mg / L; Fe3O4,100毫克/升;磁铁工作电流,160 A;在OGMS中的水力停留时间为0.5分钟; HGMS中的流量为2 L / min。总体而言,使用OGMS作为HGMS的预处理已被证明是提高磷酸盐去除效率,同时提高HGMS流速的好方法。 (C)2011 Elsevier B.V.保留所有权利。

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