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种子粉对塞内加尔某污水处理厂金属微量元素浓度的影响。

Effect of Seeds Powder on Metallic Trace Elements Concentrations in a Wastewater Treatment Plant in Senegal.

机构信息

Géoressources & Environnement, EA 4592, Université Bordeaux Montaigne, 1 Allée F. Daguin, 33607 Pessac, France.

Laboratoire Eau, Energie, Environnement et Procédés Industriels, Ecole Supérieure Polytechnique, Université Cheikh Anta Diop, Dakar-Fann, Dakar 5085, Senegal.

出版信息

Int J Environ Res Public Health. 2024 Aug 5;21(8):1031. doi: 10.3390/ijerph21081031.

Abstract

A wastewater treatment plant (WWTP) prototype coupled with seeds (MOSs) was developed to evaluate its effectiveness to reduce metallic trace elements (MTEs) in domestic wastewater. The WWTP is composed of a septic tank (F0) where wastewater is treated by biological processes under anaerobic conditions, followed by a bacterial filter (F1) where wastewater is filtered under aerobic conditions, followed by an infiltration well (F2), which provides additional filtration of wastewater before discharge into the soil. MTEs present in waters can bind with humic substances contained in colloid particles and then be eliminated by coagulation-flocculation with a cationic polyelectrolyte. MOSs contain positively charged cationic polymers that can neutralize the colloids contained in waters, which are negatively charged. Based on this observation, 300 mg·L of MOS was added into F0, 50 mg·L into F1, and 50 mg·L into F2 mg·L. MOS activation in samples was performed by stirring rapidly for 1.5 min, followed by 5 min of gentle stirring and 3 h of settling. The data analysis shows that wastewater samples had significant concentrations of MTEs, particularly for Cu, Ni, Sr, and Ti, and sediment samples had high amounts of Cr, Cu, Ni, Sr, Ti, and V. The addition of MOS to F0, F1, and F2 samples resulted in reductions in MTE concentration of up to 36%, 71%, 71%, 29%, 93%, 81%, 13%, 52%, and 67% for Co, Cr, Cu, Ni, Pb, Se, Sr, Ti, and V, respectively. The quantified MTEs (As, Co, Cr, Cu, Ni, Pb, Se and V) in treated samples were reported to be lower than UN-EP standards for a safe reuse for irrigation and MOS proved to be as effective as chemical coagulants such as lime and ferric iron for the removal of MTEs contained in wastewater. These results highlight the potential of MOSs as natural coagulants for reducing MTE content in domestic wastewater. This study could be the first to evaluate the effectiveness of MOS in reducing 10 MTEs, including As, Co, Se, Sr, Ti, and V, which are currently understudied. It could also provide a better understanding of the origin of MTEs found in domestic wastewaters and how an effective treatment process can result in high-quality treated wastewaters that can be reused for irrigation without posing health or environmental risks. However, more research on MOSs is needed to determine the type and composition of the coagulant substance found in the seeds, as well as the many mechanisms involved in the decrease in MTEs by MOSs, which is currently understudied. A better understanding of MOS structure is required to determine the optimum alternative for ensuring the optimal effect of MOS paired with WWTP in removing MTEs from domestic wastewaters.

摘要

一种废水处理厂(WWTP)原型与种子(MOS)相结合,用于评估其降低生活废水中金属痕量元素(MTEs)的有效性。该 WWTP 由一个化粪池(F0)组成,废水在厌氧条件下通过生物过程进行处理,然后是细菌过滤器(F1),废水在有氧条件下过滤,然后是渗透井(F2),它为废水排放到土壤之前提供了额外的过滤。水中存在的 MTEs 可以与胶体颗粒中含有的腐殖质结合,然后通过与阳离子聚电解质的混凝-絮凝作用去除。MOS 含有带正电荷的阳离子聚合物,可以中和水中带负电荷的胶体。基于这一观察结果,将 300mg·L 的 MOS 添加到 F0 中,50mg·L 添加到 F1 中,50mg·L 添加到 F2 中。通过快速搅拌 1.5 分钟来激活 MOS 样品,然后轻轻搅拌 5 分钟,沉淀 3 小时。数据分析表明,废水样品中 MTEs 的浓度显著,特别是 Cu、Ni、Sr 和 Ti,而沉积物样品中 Cr、Cu、Ni、Sr、Ti 和 V 的含量很高。将 MOS 添加到 F0、F1 和 F2 样品中,可使 Co、Cr、Cu、Ni、Pb、Se、Sr、Ti 和 V 的 MTE 浓度分别降低 36%、71%、71%、29%、93%、81%、13%、52%和 67%。处理样品中定量的 MTEs(As、Co、Cr、Cu、Ni、Pb、Se 和 V)低于联合国环境规划署(UN-EP)用于灌溉安全再利用的标准,MOS 被证明与石灰和三价铁等化学混凝剂一样有效,可去除废水中的 MTEs。这些结果突出了 MOS 作为天然混凝剂降低生活废水中 MTE 含量的潜力。这项研究可能是首次评估 MOS 在减少 10 种 MTEs(包括 As、Co、Se、Sr、Ti 和 V)方面的有效性,这些 MTEs 目前研究较少。它还可以更好地了解生活废水中 MTEs 的来源以及有效的处理过程如何产生高质量的处理废水,这些废水可以安全地再利用进行灌溉,而不会对健康或环境造成风险。然而,需要对 MOS 进行更多的研究,以确定种子中发现的混凝物质的类型和组成,以及 MOS 降低 MTEs 的许多机制,这些机制目前研究较少。需要更好地了解 MOS 的结构,以确定最佳替代方案,以确保 MOS 与 WWTP 配对从生活废水中去除 MTEs 的最佳效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9033/11353780/686128ce7466/ijerph-21-01031-g001.jpg

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