用于水净化的可持续膜技术--制造、回收和环境影响

Ayesha Kausar
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引用次数: 0

摘要

水污染已成为我们生态系统的严重威胁。人类、商业和工业活动造成的水污染已对全世界产生了负面影响。由于全球在水污染处理和实现可持续发展方面面临着严峻的挑战,膜技术的研究日益受到重视。虽然膜材料种类繁多,但可持续净水膜最能满足环境需求。在这方面,可持续、绿色和可回收的聚合物和纳米复合膜已被开发出来。满足可持续环保要求的材料通常包括各种聚酯、聚酰胺、聚砜、可回收/生物降解石油聚合物以及无毒溶剂。因此,用于纳滤、微滤、反渗透、超滤和相关过滤过程的水净化膜已被设计出来。用于水净化的可持续聚合物膜已利用简便技术制造完成。已对所制成的膜进行了海水淡化、染料去除、离子分离和废水抗菌过程的测试。环境可持续性研究也为这些水净化膜提供了理想的生命周期评估结果。水处理膜的回收利用主要有机械回收利用、化学回收利用或热回收利用三种方法。此外,可持续膜的使用对废水的安全处理产生了积极的环境影响。重要的是,对可持续水净化膜在环境友好型水净化应用方面的价值进行了分析。利用无数可持续聚合物、材料和纳米材料开发和研究水净化膜具有广阔的空间。因此,对可持续膜的价值进行了分析,以满足全球需求和挑战,实现未来的清洁水和生态系统。
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Sustainable membrane technology for water purification—Manufacturing, recycling and environmental impacts
Water pollution has become a serious threat to our ecosystem. Water contamination due to human, commercial, and industrial activities has negatively affected the whole world. Owing to the global demanding challenges of water pollution treatments and achieving sustainability, membrane technology has gained increasing research attention. Although numerous membrane materials have focused, the sustainable water purification membranes are most effective for environmental needs. In this regard sustainable, green, and recyclable polymeric and nanocomposite membranes have been developed. Materials fulfilling sustainable environmental demands usually include wide-ranging polyesters, polyamides, polysulfones, and recyclable/biodegradable petroleum polymers plus non-toxic solvents. Consequently, water purification membranes for nanofiltration, microfiltration, reverse osmosis, ultrafiltration, and related filtration processes have been designed. Sustainable polymer membranes for water purification have been manufactured using facile techniques. The resulting membranes have been tested for desalination, dye removal, ion separation, and antibacterial processes for wastewater. Environmental sustainability studies have also pointed towards desired life cycle assessment results for these water purification membranes. Recycling of water treatment membranes have been performed by three major processes mechanical recycling, chemical recycling, or thermal recycling. Moreover, use of sustainable membranes has caused positive environmental impacts for safe waste water treatment. Importantly, worth of sustainable water purification membranes has been analyzed for the environmentally friendly water purification applications. There is vast scope of developing and investigating water purification membranes using countless sustainable polymers, materials, and nanomaterials. Hence, value of sustainable membranes has been analyzed to meet the global demands and challenges to attain future clean water and ecosystem.
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