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首页> 外文期刊>Separation and Purification Technology >Waste-water purification through a countercurrent system driven by supercritical carbon dioxide (SC-CO2). Part I: Experimental investigation
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Waste-water purification through a countercurrent system driven by supercritical carbon dioxide (SC-CO2). Part I: Experimental investigation

机译:通过由超临界二氧化碳(SC-CO2)驱动的逆流系统蒸馏水净化。 第一部分:实验调查

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Wastewater purification has been considered to be a major cost not only for industries but also for society as a whole. Current technologies in the market are both costly and time consuming. This study proposed a supercritical CO2 (SCCO2)-driven countercurrent system for separating the emulsified oil from water (Case 1) and reducing the chemical oxygen demand (COD) from electroplating wastewater (Case 2). The effects of the operating parameters, including temperature, pressure and residence time/CO2 flow rate/CO2-to-feed ratio, were discussed. In addition, a design for recycling CO2 was developed for the purpose of saving CO2 costs. Taking commercialization into consideration, the process was scaled-up to 250 tonnes/day, and the recommended processing fee was $1.12/tonne for a payback period of 1.29 year, based on the process simulation and techno-economic analysis (TEA). Compared to the current process, this technology has advantages including that it is low cost, efficient, and most importantly, environmentally friendly.
机译:废水净化被认为是不仅适用于行业的主要成本,也是整个社会。目前市场的技术既昂贵又耗时。该研究提出了一种超临界CO2(SCCO2) - 驱动的逆流系统,用于将乳化油与水(壳体1)分离并降低来自电镀废水的化学需氧量(COD)(壳体2)。讨论了操作参数,包括温度,压力和停留时间/ CO2流量/ CO2 - 进料比的效果。此外,为储蓄二氧化碳成本开发了用于回收二氧化碳的设计。考虑到商业化,该过程的缩放 - 高达250吨/天,建议的加工费为1.29年的回收期为1.29美元,基于流程模拟和技术经济分析(茶)。与目前的过程相比,该技术具有优势,包括成本低,高效,最重要的是环保。

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