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颗粒状氧化铁吸附剂控制超滤水处理中的天然有机物和膜污染。

Granular iron oxide adsorbents to control natural organic matter and membrane fouling in ultrafiltration water treatment.

机构信息

Department of Environmental Engineering, Kyungpook National University, 80 Daehak-ro, Buk-gu, Daegu 702-701, Republic of Korea.

出版信息

Water Res. 2013 Sep 1;47(13):4227-37. doi: 10.1016/j.watres.2013.04.060. Epub 2013 May 11.

DOI:10.1016/j.watres.2013.04.060
PMID:23764573
Abstract

Fine iron oxide particles (IOPs) are effective in removing natural organic matter (NOM) that causes membrane fouling in water treatment, but the separation of used IOPs is problematic. This study focused on the fabrication and use of granular iron oxide adsorbents, in combination with ultrafiltration (UF) membranes while investigating the NOM removal efficiency and fouling control. Sulfonated styrene-divinylbenzene copolymer beads were coated with two types of iron oxides (ferrihydrite and magnetite) and their performances were compared to that of fine IOPs. A significant amount of iron oxide coating (52-63 mg of Fe per g bead) was achieved by means of electrostatic binding and hydrolysis of iron ions. Iron oxide coated polymer (IOCP) beads were able to remove some amounts (≈ 20%) of dissolved organic carbon (DOC) comparable to that achieved by IOPs within a short period of time (<15 min). Regenerated IOCPs exhibited the same sorption capacity as the fresh ones. The integrated IOCP/UF system operation with a 15-min empty bed contact time and 10-h cyclic regeneration maintained the 20% DOC removal with no sign of significant membrane fouling. In contrast, a sharp transmembrane pressure buildup occurred in the UF system when no iron oxide pretreatment was applied, regardless of the types of membranes tested. Iron oxide adsorbed the NOM fraction with molecular weights of >1000 kDa which is believed to be responsible for severe UF fouling.

摘要

精细氧化铁颗粒(IOPs)在去除水处理中导致膜污染的天然有机物(NOM)方面非常有效,但使用后的 IOPs 的分离存在问题。本研究专注于颗粒状氧化铁吸附剂的制造和使用,结合超滤(UF)膜,同时研究 NOM 去除效率和污垢控制。磺化苯乙烯-二乙烯基苯共聚物珠粒涂覆有两种类型的氧化铁(水铁矿和磁铁矿),并将其性能与精细 IOPs 进行了比较。通过静电结合和铁离子水解,实现了大量的氧化铁涂层(每克珠粒 52-63mg 的 Fe)。氧化铁涂覆聚合物(IOCP)珠粒能够在短时间内(<15min)去除一定量(≈20%)的溶解有机碳(DOC),与 IOPs 相当。再生的 IOCP 表现出与新鲜 IOCP 相同的吸附能力。具有 15min 空床接触时间和 10h 循环再生的集成 IOCP/UF 系统运行,在没有明显膜污染的情况下,保持 20%的 DOC 去除率。相比之下,当没有进行氧化铁预处理时,无论测试的膜类型如何,UF 系统都会出现跨膜压力急剧升高的情况。氧化铁吸附了分子量>1000kDa 的 NOM 部分,这被认为是导致 UF 严重污染的原因。

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