Phytoremediation of Grey Water

Khushbu Shende, Mohini Jumde, Prerna Raipure, Sanskar Bhoga, Sahil Sheikh, Prof. Sandeep Ajmere
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Abstract

Greywater, generated from domestic activities excluding toilet waste, presents a significant challenge for water management due to its diverse contaminants and potential environmental impact. Conventional treatment methods often fall short in addressing the complex composition of greywater while maintaining sustainability. Phytoremediation, a green technology that utilizes plants and their associated microorganisms, offers a promising and ecofriendly alternative for greywater treatment. This paper reviews the principles, mechanisms, and applications of phytoremediation in the context of greywater treatment. Various phytoremediation techniques such as rhizofiltration, phytoextraction, and phytodegradation are discussed, highlighting their efficacy in removing pollutants such as organic matter, nutrients, pathogens, and heavy metals from greywater. The role of specific plant species with remediation potential and their physiological mechanisms in contaminant uptake and transformation are examined. Case studies and experimental findings from greywater phytoremediation projects around the world are presented to demonstrate the practicality and effectiveness of this approach. Factors influencing phytoremediation performance, including plant selection, hydraulic conditions, nutrient availability, and system design, are analysed to optimize greywater treatment efficiency.
灰水的植物修复
灰水(不包括厕所排泄物)产生于家庭活动中,由于其污染物种类繁多且具有潜在的环境影响,因此给水管理带来了巨大挑战。传统的处理方法往往无法在解决灰水复杂成分的同时保持可持续性。植物修复是一种利用植物及其相关微生物的绿色技术,为中水处理提供了一种前景广阔的生态友好型替代方法。本文回顾了灰水处理中植物修复的原理、机制和应用。文中讨论了各种植物修复技术,如根茎过滤、植物萃取和植物降解,强调了这些技术在去除中水污染物(如有机物、养分、病原体和重金属)方面的功效。还研究了具有修复潜力的特定植物物种的作用及其在污染物吸收和转化过程中的生理机制。还介绍了世界各地灰水植物修复项目的案例研究和实验结果,以证明这种方法的实用性和有效性。分析了影响植物修复性能的因素,包括植物选择、水力条件、养分供应和系统设计,以优化灰水处理效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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