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Process Intensification in Water and Wastewater Treatment Systems

机译:水和废水处理系统中的过程强化

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Demand for fresh water is continuously growing worldwide and more than half of the world would be under water stress by 2015 [1]. As the gap between available fresh water and demand widens, the current water and wastewater treatment technologies are challenged to treat tougher waters and meet stringent environmental regulations at affordable cost. Conventional treatment technologies have been successful within limits of feed water quality, contaminant removal efficiencies, recoveries and treatment cost. However, to manage this global crisis, a holistic approach to water treatment needs to be adopted to provide a robust and cost effective solution for lot more demanding requirements. This paper focuses on key trends in water treatment technology, from both the component and system design perspective that significantly impact the total solution and ability to meet the overall requirements. Also specific developments in desalination and wastewater treatment technologies like Reverse Osmosis, Ultrafiltration, energy recovery devices and Membrane bioreactors are discussed that have significantly widened the capability envelope. An integrated multi-scale approach to system design leveraging various technologies can provide the viable alternatives and meet this global challenge in sustainable way.
机译:淡水的需求在全球范围内不断增长,世界上有超过一半的水资源压力到2015年[1]。随着可用淡水和需求之间的差距扩大,目前的水和废水处理技术受到挑战,以治疗更加艰难的水域并以实惠的成本满足严格的环境法规。常规处理技术在饲料水质的限制范围内成功,污染物去除效率,回收率和治疗成本。然而,为了管理这种全球危机,需要采用一种整体对水处理的方法,以提供更强大,更具有成本效益的解决方案,以获得更多要求苛刻的要求。本文侧重于水处理技术的关键趋势,从组件和系统设计的角度来看,显着影响总解决方案和满足总体要求的能力。还讨论了脱水和废水处理技术的特定发展,如反渗透,超滤,能量回收装置和膜生物反应器,这显着扩大了能力包络。利用各种技术的系统设计的集成多尺度方法可以提供可行的替代品,以可持续的方式满足这种全球挑战。

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