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          Optimising Mining Wastewater Remediation

          Closed for Proposals

          Project Type

          Coordinated Research Project

          Project Code

          F22088

          CRP

          2418

          Approved Date

          26/06/2024

          Project Status

          Active - Ongoing

          Start Date

          17/06/2025

          Expected End Date

          31/08/2030

          Participating Countries

          Argentina, Austria, Azerbaijan, Burkina Faso, China, Egypt, Ghana, Greece, Croatia, Indonesia, Republic of Korea, Malaysia, Norway, Tajikistan, United Republic of Tanzania, Ukraine, South Africa, Zimbabwe

          Description

          The mining and ore processing industry contributes significantly to the global economy but also potentially adversely impacts?the environment. Wastewater produced by mining operations contains organic and inorganic contaminants and its direct discharge results in significant environment?degradation and ecosystem damage. These operations result in substantial waste of water that could be otherwise recycled. The expanded application of CW, effectively demonstrated for sewage treatment, has potential for the remediation?of mine?waste waters. During the last 50 years, these have been successfully used for all types of wastewater, including sewage, agricultural runoff, landfill leachate and stormwater runoff. They have been shown to provide a reliable, environmentally friendly, and cost-effective?alternative to conventional treatment technologies.??
          ?
          For the treatment of mine waste waters there are many knowledge gaps, including an understanding of the complex hydrodynamics, aqueous chemistry and the uptake of pollutants within the CW. The aims of this research are to improve this understanding and demonstrate that CW are a suitable treatment option for waste waters derived from different types of metalliferous mines (e.g. copper, gold and uranium).?

          Objectives

          The aims of this research are to improve the understanding and demonstrate that CW are a suitable treatment option for waste waters derived from different types of metalliferous mines (e.g. copper, gold and uranium).

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