New insights into removal efficacy of perfluoroalkyl substances by layered double hydroxide and its composite materials

IF 5.5 Q1 ENGINEERING, CHEMICAL Chemical Engineering Journal Advances Pub Date : 2024-08-15 DOI:10.1016/j.ceja.2024.100636
Hanlu Yan , Qiuwen Chen , Yuqing Lin , Yunxia Zu , Jianyun Zhang , Tao Feng , Shufeng He , Xueke Liao
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Abstract

Though the use of per-and polyfluoroalkyl substances (PFAS) is strictly restricted worldwide, PFAS have been increasingly detected in aqueous environment with high human exposure risk. Effective PFAS remediation requires the simultaneous concentration and decomposition of these compounds from dilute solutions, presenting a significant challenge. The present work evaluated the suitability of layered double hydroxide (LDH) materials, promising adsorbents for anionic pollutants, for the removal of long-chain and short-chain PFAS in micro-polluted water. Additionally, it explored their potential for PFAS degradation after modification. The results suggested that LDH adsorbents have limited ability to extract short-chain PFAS such as perfluorobutane sulfonate (PFBS) from water matrices, especially in dilute solutions. Although organic modification of LDHs could enhance their uptake efficacy on PFAS, it cannot improve the decomposition of PFAS. Innovatively, a composite featuring zero-valent iron (ZVI) particles coupled with LDH was developed, in which the nanoscale ZVI core is coated with LDH to adsorb and decompose perfluorooctanoic acid (PFOA) synergistically. Characterization of the composite showed that LDH coating not only hinders the aggregation of ZVI particles, but also reduces the passivation of ZVI. The PFOA removal efficacy of the composite can be further facilitated in acid environment. By-product analysis revealed that the composite decomposed PFOA mainly through decarboxylation and formation of unstable alcohol.

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层状双氢氧化物及其复合材料去除全氟烷基物质功效的新见解
尽管全世界都严格限制使用全氟烷基和多氟烷基物质(PFAS),但在水环境中检测到的 PFAS 越来越多,人类接触这些物质的风险很高。要有效修复 PFAS,就必须同时从稀释溶液中浓缩和分解这些化合物,这是一项巨大的挑战。本研究评估了层状双氢氧化物(LDH)材料(有望成为阴离子污染物的吸附剂)去除微污染水中长链和短链全氟辛烷磺酸的适用性。此外,研究还探讨了这些材料经改性后降解全氟辛烷磺酸的潜力。结果表明,LDH 吸附剂从水基质中萃取全氟辛烷磺酸(PFBS)等短链全氟辛烷磺酸的能力有限,尤其是在稀溶液中。虽然对 LDHs 进行有机改性可以提高其对 PFAS 的吸收效率,但却无法改善 PFAS 的分解。研究人员创新性地开发了一种零价铁(ZVI)颗粒与 LDH 的复合材料,在纳米级 ZVI 内核上涂覆 LDH,以协同吸附和分解全氟辛酸(PFOA)。复合材料的表征表明,LDH 涂层不仅阻碍了 ZVI 颗粒的聚集,还降低了 ZVI 的钝化。在酸性环境中,该复合材料的全氟辛烷磺酸去除效果会进一步提高。副产物分析表明,该复合材料主要通过脱羧和形成不稳定的醇来分解 PFOA。
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来源期刊
Chemical Engineering Journal Advances
Chemical Engineering Journal Advances Engineering-Industrial and Manufacturing Engineering
CiteScore
8.30
自引率
0.00%
发文量
213
审稿时长
26 days
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