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电凝聚法回收农业废水中的磷酸盐:钙离子投加量、电压和时间的影响。

Electrocoagulation process for phosphate recovery of agricultural wastewater: effect of calcium adding, voltage, and time.

机构信息

Department of Environmental Engineering, Faculty of Engineering, Diponegoro University, Semarang, 50275, Indonesia.

Department of Environmental Sciences, Universitas Islam Negeri Raden Mas Said Surakarta, Kartasura, 57168, Indonesia.

出版信息

Environ Monit Assess. 2024 Aug 26;196(9):842. doi: 10.1007/s10661-024-13034-x.

DOI:10.1007/s10661-024-13034-x
PMID:39186147
Abstract

Recovery of valuable resources, such as phosphate recovery from wastewater, can help close the nutrient cycle and is interesting to investigate. This study aims to evaluate phosphate recovery and set aside TOC, OC, and IC in agricultural wastewater using electrocoagulation with a helix electrode configuration. This study employed the Response Surface Methodology (RSM) for statistical analysis and modeling, utilizing a central composite design (CCD). Variation of calcium concentration (2-7 mg/L), voltage (15-45 V), and electrocoagulation time (5-15 min) was applied in an electrocoagulation reactor with a helix-shaped stainless steel cathode and a solid cylindrical Mg anode. Based on RSM analysis, electrocoagulation with a helical electrode configuration significantly affects phosphate recovery and the removal of TOC, OC, and IC when treating agricultural wastewater. Under operating conditions of 15 V, 15 min time, and 2 mg/L calcium concentration, we achieved the lowest phosphate concentration of 0.003 mg/L (99.74% reduction). The highest TOC allowance is > 100% of the initial concentration, the TC allowance is 55.79%, and the IC allowance is 30.91%. The formation of metal hydroxides affects the efficiency of TOC removal in the electrocoagulation process, and higher electrolysis times lead to higher TOC removal efficiency. Higher voltages also improve the coagulation and flotation processes in the reactor. Calcium concentration plays a role in enhancing the flocculation process and binding phosphonates from wastewater.

摘要

从废水中回收磷酸盐等有价值的资源有助于封闭营养循环,因此值得研究。本研究旨在利用螺旋电极配置的电絮凝来评估从农业废水中回收磷酸盐并去除 TOC、OC 和 IC。本研究采用响应面法(RSM)进行统计分析和建模,采用中心复合设计(CCD)。在带有螺旋形不锈钢阴极和实心圆柱形 Mg 阳极的电絮凝反应器中,变化钙浓度(2-7mg/L)、电压(15-45V)和电絮凝时间(5-15min)。根据 RSM 分析,在处理农业废水时,螺旋电极配置的电絮凝对磷酸盐回收以及 TOC、OC 和 IC 的去除有显著影响。在 15V、15 分钟时间和 2mg/L 钙浓度的操作条件下,我们实现了最低的磷酸盐浓度 0.003mg/L(减少 99.74%)。TOC 的最高允许值>初始浓度的 100%,TC 的允许值为 55.79%,IC 的允许值为 30.91%。金属氢氧化物的形成会影响电絮凝过程中 TOC 去除的效率,更长的电解时间会导致更高的 TOC 去除效率。更高的电压也会提高反应器中的凝聚和浮选过程。钙浓度在增强絮凝过程和从废水中结合膦酸盐方面发挥作用。

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