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Electrochemically mediated calcium phosphate precipitation from phosphonates: Implications on phosphorus recovery from non-orthophosphate

机译:从膦酸酯中电化学介导的磷酸钙沉淀:对从非正磷酸盐中回收磷的影响

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摘要

Phosphonates are an important type of phosphorus-containing compounds and have possible eutrophication potential. Therefore, the removal of phosphonates from waste streams is as important as orthophosphate. Herein, we achieved simultaneously removal and recovery of phosphorus from nitrilotris (methylene phosphonic acid) (NTMP) using an electrochemical cell. It was found that the C-N and C-P bonds of NTMP were cleaved at the anode, leading to the formation of orthophosphate and formic acid. Meanwhile, the converted orthophosphate reacted with coexisting calcium ions and precipitated on the cathode as recoverable calcium phosphate solids, due to an electrochemically induced high pH region near the cathode. Electrochemical removal of NTMP (30 mg/L) was more efficient when dosed to effluent of a wastewater treatment plant (89% in 24 h) than dosed to synthetic solutions of 1.0 mM Ca and 50 mM Na2SO4 (43% in 168 h) while applying a current density of 28 A/m(2) and using a Pt anode and Ti cathode. The higher removal efficiency of NTMP in real waste water is due to the presence of chloride ions, which resulted in anodic formation of chlorine. This study establishes a one-step approach for simultaneously phosphorus removal and recovery of calcium phosphate from non-orthophosphates. (C) 2019 The Authors. Published by Elsevier Ltd.
机译:膦酸盐是一种重要的含磷化合物,具有潜在的富营养化潜力。因此,从废物流中除去膦酸酯与正磷酸盐一样重要。在本文中,我们使用电化学电池同时实现了从次氮基三亚甲基膦酸(NTMP)中去除和回收磷。发现NTMP的C-N和C-P键在阳极被裂解,导致正磷酸盐和甲酸的形成。同时,由于在阴极附近的电化学诱导的高pH区域,转化的正磷酸盐与共存的钙离子反应并作为可回收的磷酸钙固体沉淀在阴极上。配给废水处理厂的废水(24小时内占89%)时,NTMP(30 mg / L)的电化学去除比配给1.0 mM Ca和50 mM Na2SO4的合成溶液(168小时内占43%)更有效。施加28 A / m(2)的电流密度,并使用Pt阳极和Ti阴极。实际废水中NTMP的较高去除效率是由于存在氯离子,导致氯的阳极形成。这项研究建立了一种从非正磷酸盐同时去除磷和回收磷酸钙的一步法。 (C)2019作者。由Elsevier Ltd.发布

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