混合吸附-微滤工艺预处理含硫化物海水:一种有前途的膜污染防治策略。

IF 3.3 4区 工程技术 Q2 CHEMISTRY, PHYSICAL
Ludi Song, Chengyi Dai, Zifei Chai, Mengzhe Cai, Huazhang Li, Sifan Wu, Lin Zhang, Yaqin Wu, Haitao Zhu
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引用次数: 0

摘要

在反渗透(RO)过程中,进料海水中溶解的硫化物的存在导致了严重的单质硫污染。然而,目前的预处理方法存在占地面积大、能耗高、出水水质受限等问题。在本研究中,将吸附和微滤合并为一个过程,用于含硫化物海水的预处理。与颗粒活性炭相比,粉末活性炭(PAC)具有更强的吸附能力(14.6倍)和更快的硫化物去除动力学(3.9倍)。PAC的高表面积和多孔结构有利于表面和颗粒内的扩散,并且PAC与硫化物之间可能发生阴离子-π共轭。聚丙烯微孔膜可耐受高剂量聚丙烯腈(PAC)。长期中试试验表明,出水(浊度< 1 NTU, SDI15≈2.50)满足RO机组给水水质要求,在101 h内硫化物去除率达到100%,在整个运行过程中无PAC泄漏风险。形成一个松散的,多孔的PAC饼层减轻了膜污染,增强了金属(类)s和硫化物的保留和吸附。此外,聚合物膜的低渗透通量显著减轻了滤饼的形成。混合系统可以适应给水水质的变化,使其非常适合空间和预算有限的海水淡化厂。这些发现为推进海水淡化预处理提供了有价值的见解和实践指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Adsorption-Microfiltration Process for the Pretreatment of Sulfide-Containing Seawater: A Promising Strategy to Mitigate Membrane Fouling.

The presence of dissolved sulfides in feed seawater causes severe elemental sulfur fouling in the reverse osmosis (RO) process. However, current pretreatment methods suffer from large footprint, high energy consumption, and limitations in effluent quality. In this study, adsorption and microfiltration are merged into a single process for the pretreatment of sulfide-containing seawater. Powdered activated carbon (PAC) was selected for its superior adsorption capacity (14.6-fold) and faster kinetics (3.9-fold) for sulfide removal compared to granular activated carbon. The high surface area and multiple pore structures of PAC facilitate surface and intraparticle diffusion, as well as anion-π conjugation likely occur between PAC and sulfide. Polypropylene microporous membranes, capable of tolerating high PAC dosages, were used in the hybrid process. Long-term pilot tests demonstrated that the effluent (turbidity < 1 NTU and SDI15 ≈ 2.50) met the quality requirements for RO unit feedwater, achieving 100% sulfide removal efficiency over 101 h, with no risk of PAC leakage throughout the entire operation process. The formation of a loose, porous PAC cake layer alleviates membrane fouling and enhances the retention and adsorption of metal(loid)s and sulfide. Moreover, the low permeate flux of the polymeric membranes significantly mitigates filter cake formation. The hybrid system adapts to variations in feedwater quality, making it highly suitable for desalination plants with limited space and budget. These findings offer valuable insights and practical guidance for advancing seawater desalination pretreatment.

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来源期刊
Membranes
Membranes Chemical Engineering-Filtration and Separation
CiteScore
6.10
自引率
16.70%
发文量
1071
审稿时长
11 weeks
期刊介绍: Membranes (ISSN 2077-0375) is an international, peer-reviewed open access journal of separation science and technology. It publishes reviews, research articles, communications and technical notes. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. Full experimental and/or methodical details must be provided.
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