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用于处理含铅污水的混合无机有机聚砜/羟基磷灰石双层中空纤维膜

Hybrid Inorganic Organic PSF/Hap Dual-Layer Hollow Fibre Membrane for the Treatment of Lead Contaminated Water.

作者信息

Mansur Sumarni, Othman Mohd Hafiz Dzarfan, Ismail Nurul Jannah, Sheikh Abdul Kadir Siti Hamimah, Puteh Mohd Hafiz, Abdullah Huda, Jaafar Juhana, Rahman Mukhlis A, Kusworo Tutuk Djoko, Ismail Ahmad Fauzi, Ahmad Abdul Latif

机构信息

Advanced Membrane Technology Research Centre (AMTEC), Faculty of Chemical and Energy Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Johor, Malaysia.

Laboratory and Forensics (I-PPerForM), Institute of Pathology, Faculty of Medicine, Universiti Teknologi Mara (UiTM), Cawangan Selangor, Sungai Buloh 47000, Selangor, Malaysia.

出版信息

Membranes (Basel). 2023 Jan 30;13(2):170. doi: 10.3390/membranes13020170.

Abstract

Lead (Pb) exposure can be harmful to public health, especially through drinking water. One of the promising treatment methods for lead contaminated water is the adsorption-filtration method. To ensure the cost-effectiveness of the process, naturally derived adsorbent shall be utilised. In this study, hydroxyapatite particles, Ca(PO)(OH) (HAP) derived from waste cockle shell, were incorporated into the outer layer of polysulfone/HAP (PSf/HAP) dual-layer hollow fibre (DLHF) membrane to enhance the removal of lead from the water source due to its hydrophilic nature and excellent adsorption capacity. The PSf/HAP DLHF membranes at different HAP loadings in the outer layer (0, 10, 20, 30 and 40 wt%) were fabricated via the co-extrusion phase inversion technique. The performance of the DLHF membranes was evaluated in terms of pure water flux, permeability and adsorption capacity towards lead. The results indicated that the HAP was successfully incorporated into the outer layer of the membrane, as visibly confirmed by microscopic analysis. The trend was towards an increase in pure water flux, permeability and lead adsorption capacity as the HAP loading increased to the optimum loading of 30 wt%. The optimized DLHF membrane displayed a reduced water contact angle by 95%, indicating its improved surface hydrophilicity, which positively affects the pure water flux and permeability of the membrane. Furthermore, the DLHF membrane possessed the highest lead adsorption capacity, 141.2 mg/g. The development of a hybrid inorganic-organic DLHF membrane via the incorporation of the naturally derived HAP in the outer layer is a cost-effective approach to treat lead contaminated water.

摘要

铅(Pb)暴露会对公众健康有害,尤其是通过饮用水途径。对于受铅污染的水,一种有前景的处理方法是吸附过滤法。为确保该过程的成本效益,应使用天然衍生的吸附剂。在本研究中,将源自废弃蚶壳的羟基磷灰石颗粒Ca₅(PO₄)₃(OH)(HAP)掺入聚砜/HAP(PSf/HAP)双层中空纤维(DLHF)膜的外层,因其亲水性和出色的吸附能力来增强从水源中去除铅的效果。通过共挤出相转化技术制备了外层具有不同HAP负载量(0、10、20、30和40 wt%)的PSf/HAP DLHF膜。从纯水通量、渗透率和对铅的吸附能力方面评估了DLHF膜的性能。结果表明,通过微观分析明显证实HAP成功掺入膜的外层。随着HAP负载量增加至最佳的30 wt%,纯水通量、渗透率和铅吸附能力呈上升趋势。优化后的DLHF膜水接触角降低了95%,表明其表面亲水性得到改善,这对膜的纯水通量和渗透率有积极影响。此外,DLHF膜具有最高的铅吸附容量,为141.2 mg/g。通过在外层掺入天然衍生的HAP来开发无机-有机混合DLHF膜是一种处理铅污染水的经济有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78c3/9965034/0746ac6125b1/membranes-13-00170-g001.jpg

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