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Selection of Industrial Trade Waste Resource Recovery Technologies-A Systematic Review

期刊

RESOURCES-BASEL
卷 10, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/resources10040029

关键词

resource recovery; trade waste; industrial wastewater; biogas; struvite; membrane

资金

  1. City West Water
  2. Australian Government Research Training Program Scholarship

向作者/读者索取更多资源

This article discusses the pollution caused by industrial wastewater and trade wastes, and explores the potential environmental benefits, profits, and new sources of finite commodities brought about by resource recovery approaches. It evaluates the advantages and disadvantages of various resource recovery methods in trade waste settings and lays the groundwork for the classification of waste and resource recovery technologies.
Industrial wastewater and other trade wastes are often sources of pollution which can cause environmental damage. However, resource recovery approaches have the potential to lead to positive environmental outcomes, profits, and new sources of finite commodities. Information on these waste sources, and the valuable components which may be contained in such waste is increasingly being made available by public, academic and commercial stakeholders (including companies active in meat processing, dairy, brewing, textile and other sectors). Utilising academic and industry literature, this review evaluates several methods of resource recovery (e.g., bioreactors, membrane technologies, and traditional chemical processes) and their advantages and disadvantages in a trade waste setting. This review lays the groundwork for classification of waste and resource recovery technologies, in order to inform process choices, which may lead to wider commercial application of these technologies. Although each waste source and recovery process is unique, membrane bioreactors show promise for a wide range of resource recovery applications. Despite interest, uptake of resource recovery technologies remains low, or not widely championed. For this to change, knowledge needs to increase in several key areas including: availabilities and classification of trade wastes, technology choice processes, and industrial viability.

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