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用 提取物增强的可生物降解超滤膜,具有抗生物污染性能。

Biodegradable ultrafiltration membrane enhanced with anti-biofouling agent from extract.

机构信息

Department of Food Science with Nutrition, Faculty of Applied Sciences, UCSI University, Cheras, Kuala Lumpur, Malaysia.

Department of Biotechnology, Faculty of Applied Sciences, UCSI University, Cheras, Kuala Lumpur, Malaysia.

出版信息

Biofouling. 2024 May-Jul;40(5-6):348-365. doi: 10.1080/08927014.2024.2357309. Epub 2024 Jun 5.

Abstract

Our research focuses on developing environmentally friendly biodegradable ultrafiltration (UF) membranes for small-scale water purification in areas lacking infrastructure or during emergencies. To address biofouling challenges without resorting to harmful chemicals, we incorporate bio-based extracts, such as methyl gallate from leaves, a Malaysian ulam herb, known for its quorum sensing inhibition (QSI) properties. The methyl gallate enriched extract was purified by solvent partitioning and integrated into cellulose-based UF membranes (0 to 7.5% w w) through phase inversion technique. The resulting membranes exhibited enhanced anti-organic fouling and anti-biofouling properties, with flux recovery ratio (FRR) of 87.84 ± 2.00% against bovine serum albumin and FRRs of 76.67 ± 1.89% and 69.57 ± 1.77% against and , respectively. The CA/MG-5 membrane showed a 224% improvement in pure water flux (PWF) compared to the neat CA membrane. Our innovative approach significantly improves PWF, presenting an environmentally friendly method for biofouling prevention in UF membrane applications.

摘要

我们的研究专注于开发环保可生物降解的超滤 (UF) 膜,用于基础设施匮乏或紧急情况下的小规模水净化。为了解决生物污染问题,同时避免使用有害化学物质,我们采用生物基提取物,如来自马来西亚野菜乌蔹莓的没食子酸甲酯,因其具有群体感应抑制 (QSI) 特性而闻名。通过溶剂分配法对富含没食子酸甲酯的提取物进行纯化,并通过相转化技术将其整合到纤维素基 UF 膜(0 至 7.5%w/w)中。所得膜表现出增强的抗有机污染和抗生物污染性能,对牛血清白蛋白的通量恢复率(FRR)为 87.84±2.00%,对 和 的 FRR 分别为 76.67±1.89%和 69.57±1.77%。与纯 CA 膜相比,CA/MG-5 膜的纯水通量 (PWF) 提高了 224%。我们的创新方法显著提高了 PWF,为 UF 膜应用中的生物污染预防提供了一种环保的方法。

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