持续性
水质
水安全
新兴技术
环境规划
供水
业务
水资源
环境科学
可持续发展
环境资源管理
环境工程
计算机科学
政治学
人工智能
法学
生物
生态学
作者
Emmanuel Kwame Nti,Samuel Jerry Cobbina,Eunice Efua Attafuah,Lydia Dziedzorm Senanu,Gloria Amenyeku,Michael Amoah Gyan,Dorcas Forson,Abdul-Rafiw Safo
出处
期刊:Heliyon
[Elsevier BV]
日期:2023-07-01
卷期号:9 (7): e18170-e18170
被引量:62
标识
DOI:10.1016/j.heliyon.2023.e18170
摘要
In Ghana, illegal mining (galamsey) activities have polluted most of the river bodies. For example, water bodies in Ghana that are polluted amounts to 60% with most of them in deteriorating condition. However, to live a sustainable life, there is the need to follow rules of environmental management, where pollution control and advanced treatment technologies are imperative. The adoption of control strategies and advanced technologies in galamsey-affected-water basins in Ghana will help provide real-time revitalization for supply of quality water. The control strategies for water pollution management and advanced technologies would particularly help utility companies in ensuring that all Ghanaians continue to get potable, reliable, and sustainable water supplies for the current and future generations. The paper covers three key control strategies for water pollution management, vis-à-vis six major aspects of advanced technologies and the use of artificial intelligence (AI). AI based decision-making tools help optimize the use of various treatment technologies, such as adsorption, ion exchanges, electrokinetic processes, chemical precipitation, phytobial remediation, and membrane technology to effectively remove pollutants from affected water bodies. The paper also focuses on advantages and disadvantages of several advanced technologies, challenges on leveraging the technologies while identifying gaps, and possible technology roadmap. The review contributes to water quality issues in Ghana's Pra river basin by embracing AI and other cutting-edge technologies to address the current water pollution crisis and also ensure sustainable and secure water supply for future generations. This contribution is in line with the United Nations' Agenda 2030 Sustainable Development Goals' (SDGs) goal 6 (clean water and sanitation) and goal 3 (good health and well-being).
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