利用活性水垢:去除药物污染物的新方法

C Pub Date : 2024-01-08 DOI:10.3390/c10010008
Manish Kumar Gautam, Tamal Mondal, Rupashri Nath, Bidhan Mahajon, M. Chincholikar, A. Bose, D. Das, Rakesh Das, Sandip Mondal
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引用次数: 0

摘要

水污染是一个普遍存在的全球性危机,影响着全球 20 多亿人口,其中药物污染物因其在水生生态系统中的持久性和流动性而备受关注。本综述探讨了通过生物质热解产生的可持续材料--活性水炭纤维在彻底去除水源中的药物污染物方面的潜力。这些材料具有高表面积、多孔结构和卓越的吸附能力,是一种前景广阔的解决方案。药物污染物对水生生态系统和人类健康的影响深远,涉及生物多样性、水质和公众健康。为解决这一复杂问题,制药行业采用了多种技术,包括吸附、生物降解和高级氧化工艺。活性水煤浆具有强大的吸附能力、可持续的原料来源和最小的碳足迹。本综述强调了活性水炭素在去除制药污染物方面的潜力,以及在改善土壤和空气质量、资源回收和可持续废物管理方面的广泛应用。跨学科合作和智能处理系统的开发对于充分释放活性水炭素的潜力至关重要。监管支持和政策框架将促进其负责任的广泛应用,为更清洁、更可持续的未来带来希望。本文旨在向科学家、环境专家、政策制定者和行业利益相关者介绍活化水煤浆在应对制药污染物挑战方面的巨大作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Harnessing Activated Hydrochars: A Novel Approach for Pharmaceutical Contaminant Removal
Water contamination is a pervasive global crisis, affecting over 2 billion people worldwide, with pharmaceutical contaminants emerging as a significant concern due to their persistence and mobility in aquatic ecosystems. This review explores the potential of activated hydrochars, sustainable materials produced through biomass pyrolysis, to revolutionize the removal of pharmaceutical contaminants from water sources. These materials possess high surface area, porous structure, and exceptional adsorption capabilities, making them a promising solution. The impact of pharmaceutical contaminants on aquatic ecosystems and human health is far-reaching, affecting biodiversity, water quality, and public health. To address this complex issue, a diverse range of techniques, including adsorption, biodegradation, and advanced oxidation processes, are employed in the pharmaceutical industry. Activated hydrochars offer substantial adsorption capacity, sustainable feedstock origins, and a minimal carbon footprint. This review highlights their potential in pharmaceutical contaminant removal and their broader applications in improving soil and air quality, resource recovery, and sustainable waste management. Interdisciplinary collaboration and the development of intelligent treatment systems are essential to fully unlock the potential of activated hydrochars. Regulatory support and policy frameworks will facilitate their responsible and widespread application, promising a cleaner and more sustainable future. This paper aims to inform scientists, environmental experts, policymakers, and industry stakeholders about the promising role of activated hydrochars in addressing pharmaceutical contaminant challenges.
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