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Municipal wastewater treatment with pond technology: Historical review and future outlook

机译:城市污水处理池塘技术:历史评论和未来的前景

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Facing an unprecedented population growth, it is difficult to overstress the assets for wastewater treatment of waste stabilization ponds (WSPs), i.e. high removal efficiency, simplicity, and low cost, which have been recognized by numerous scientists and operators. However, stricter discharge standards, changes in wastewater compounds, high emissions of greenhouse gases, and elevated land prices have led to their replacements in many places. This review aims at delivering a comprehensive overview of the historical development and current state of WSPs, and providing further insights to deal with their limitations in the future. The 21st century is witnessing changes in the way of approaching conventional problems in pond technology, in which WSPs should no longer be considered as a low treatment technology. Advanced models and technologies have been integrated for better design, control, and management. The roles of algae, which have been crucial as solar-powered aeration, will continue being a key solution. Yet, the separation of suspended algae to avoid deterioration of the effluent remains a major challenge in WSPs while in the case of high algal rate pond, further research is needed to maximize algal growth yield, select proper strains, and optimize harvesting methods to put algal biomass production in practice. Significant gaps need to be filled in understanding mechanisms of greenhouse gas emission, climate change mitigation, pond ecosystem services, and the fate and toxicity of emerging contaminants. From these insights, adaptation strategies are developed to deal with new opportunities and future challenges.
机译:面对前所未有的人口增长,很难过度地支持废物稳定池(WSP)的废水处理资产,即高拆卸效率,简单性和低成本,这已被许多科学家和运营商认可。然而,更严格的放电标准,废水化合物的变化,高排放的温室气体,升高的土地价格导致了许多地方的替代品。该审查旨在提供全面概述WSP的历史发展和现状,并提供进一步的见解,以处理未来的局限性。 21世纪正在目睹池塘技术中常规问题的方法,其中不再被视为低治疗技术。已集成了先进的模型和技术,可用于更好的设计,控制和管理。藻类的作用是至关重要的作为太阳能通风,将继续是一个关键解决方案。然而,悬浮藻类的分离以避免流出物的恶化仍然是WSP中的主要挑战,而在高藻类速率池塘的情况下,需要进一步的研究来最大限度地提高藻类生长产量,选择适当的菌株,并优化收获方法以使收获方法放置藻类生物质生产在实践中。需要在理解机制,气候变化缓解,池塘生态系统服务以及新兴污染物的命运和毒性方面填补了重大差距。从这些洞察力来看,制定适应策略来应对新的机遇和未来的挑战。

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