Recent Advancement in Nanotechnology for the Treatment of Pharmaceutical Wastewater: Sources, Toxicity, and Remediation Technology

IF 6.4 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Current Pollution Reports Pub Date : 2023-03-11 DOI:10.1007/s40726-023-00251-0
Sandeep Kumar, Sangita Yadav, Navish Kataria, Amit Kumar Chauhan, Seema Joshi, Renuka Gupta, Parmod Kumar, Jun Wei Roy Chong, Kuan Shiong Khoo, Pau Loke Show
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引用次数: 6

Abstract

The textile, paper and pulp, distillery, and pharmaceutical industries are only a few of the many sectors that contribute significantly to the contamination of water bodies and their unsuitability for human use. Pharmaceuticals, which are credited with saving millions of lives in recent decades, have emerged as a new category of environmental hazard. Their prolonged presence in the environment has a number of negative effects, including gene toxicity, hormone interference, antibiotic resistance, the imposition of sex organs, and many others. To ensure that everyone in the world can access to uncontaminated and safe drinking water, it is important to treat pharmaceutical laden wastewater before discharge in fresh water body. Nanotechnology is getting significant attention due to enormous properties such as the high surface area to volume ratio, new optical properties, and desired shape. Nanomaterials might be a strong option for purifying water of a variety of environmental pollutants. This review also touches on several environmental aspects of pharmaceuticals, including (i) the current status of pharmaceuticals production and their use pattern, (ii) sources, occurrence, and transport behaviour of pharmaceuticals, (iii) analysis techniques and potential toxicity of pharmaceuticals and (iv) various conventional and advanced nanotechnology for water remediation. The present review is predominately designed to highlight the progress and major update in advantaged nanotechnology for remediation of pharmaceutical contaminated wastewater. The literature study (2015–2022) critically illustrated the recent pharmaceutical contaminations concerns and remediation efforts emphasizing nanotechnology like nanoadsorption, AOPs, nano-catalyst, electrochemical degradation and nanomembrane/nanofiltration technology.

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纳米技术处理制药废水的最新进展:来源、毒性和修复技术
纺织、造纸和纸浆、酿酒厂和制药业只是造成水体污染和不适合人类使用的众多部门中的少数几个。近几十年来拯救了数百万人生命的药品,已经成为一种新的环境危害。它们在环境中的长期存在有许多负面影响,包括基因毒性、激素干扰、抗生素耐药性、性器官的强加,以及许多其他影响。为了确保世界上每个人都能获得不受污染和安全的饮用水,必须在向淡水水体排放含药废水之前对其进行处理。纳米技术由于其巨大的特性,如高表面积体积比、新的光学特性和理想的形状,正受到极大的关注。纳米材料可能是净化各种环境污染物的一个强有力的选择。这篇综述还涉及药物的几个环境方面,包括(i)药物生产的现状及其使用模式,(ii)药物的来源、发生和运输行为,(iii)药物的分析技术和潜在毒性,以及(iv)用于水修复的各种传统和先进纳米技术。本文主要介绍了利用纳米技术修复制药污染废水的研究进展和最新进展。文献研究(2015-2022)批判性地阐述了最近的药物污染问题和修复工作,强调纳米技术,如纳米吸附、AOPs、纳米催化剂、电化学降解和纳米膜/纳滤技术。
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来源期刊
Current Pollution Reports
Current Pollution Reports Environmental Science-Water Science and Technology
CiteScore
12.10
自引率
1.40%
发文量
31
期刊介绍: Current Pollution Reports provides in-depth review articles contributed by international experts on the most significant developments in the field of environmental pollution.By presenting clear, insightful, balanced reviews that emphasize recently published papers of major importance, the journal elucidates current and emerging approaches to identification, characterization, treatment, management of pollutants and much more.
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