Sustainable Concept of Zero-Liquid Discharge and Its Impact on Climate Change: Detail Case Studies

IF 0.7 Q4 METEOROLOGY & ATMOSPHERIC SCIENCES Journal of Climate Change Pub Date : 2022-12-05 DOI:10.3233/jcc220031
N. Vignesh kumar, Ruhul Amin Mozumder, N. Laskar
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Abstract

In the developed world’s metropolitan areas, proper wastewater treatment and recycling are of the utmost importance. Releasing wastewater into aquatic systems is the biggest environmental risk and the biggest barrier to wastewater regeneration and reuse. The origin of the wastewater also has an impact on its potential for reuse. There are three separate processes at work in the universe: the physical, the chemical, and the biological. The study examines the challenges associated with wastewater consumption, as well as wastewater treatment, reuse, and repurposing. One of the most compelling arguments for exploring the possibility of zero liquid discharge is the possibility of energy recovery from wastewater. Manufacturing operations that aim for Zero Liquid Discharge (ZLD) may recycle or reuse the solid waste they produce. ZLD system design is becoming more popular. To be sure, current ZLD systems have their drawbacks, the most notable of which are the high plant costs and high energy intensity of their crystallizers. Because of the growing public and media awareness of the consequences of wastewater pollution, stricter environmental restrictions are expected to push more polluting businesses onto ZLD. Moreover, climate plays such a significant role in the wastewater treatment plant; climate change may have far-reaching implications on the drainage system.
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零液体排放的可持续概念及其对气候变化的影响:详细案例研究
在发达国家的大都市地区,适当的废水处理和回收是至关重要的。将废水排放到水生系统是最大的环境风险,也是废水再生和再利用的最大障碍。废水的来源也对其再利用潜力产生影响。宇宙中有三个独立的过程:物理的、化学的和生物的。该研究考察了与废水消耗以及废水处理、再利用和再利用相关的挑战。探索零液体排放可能性的最令人信服的论据之一是从废水中回收能量的可能性。以零液体排放(ZLD)为目标的制造业务可以回收或再利用他们产生的固体废物。ZLD系统设计正变得越来越流行。可以肯定的是,目前的ZLD系统有其缺点,其中最显著的是高工厂成本和高能量强度的结晶器。由于公众和媒体对废水污染后果的意识日益增强,更严格的环境限制预计将推动更多的污染企业到ZLD。此外,气候在污水处理厂中起着如此重要的作用;气候变化可能对排水系统产生深远的影响。
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来源期刊
Journal of Climate Change
Journal of Climate Change METEOROLOGY & ATMOSPHERIC SCIENCES-
自引率
16.70%
发文量
18
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