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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Techno-economic assessment of multi-effect distillation process for the treatment and recycling of ion exchange resin spent brines
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Techno-economic assessment of multi-effect distillation process for the treatment and recycling of ion exchange resin spent brines

机译:多效蒸馏工艺的技术经济评估及离子交换树脂废水的回收

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摘要

A treatment chain including nanofiltration, crystallization and multi-effect distillation (MED) is for the first time proposed for the treatment of an effluent produced during the regeneration of Ion Exchange resins employed for water softening. The goal is to recover the minerals and to restore the regenerant solution to be reused in the next regeneration cycle. MED is the most crucial unit of the treatment chain from an economic point of view. A techno-economic analysis on the MED unit was performed and a novel performance indicator, named Levelized Brine Cost, was introduced as a measure of the economic feasibility of the process. Different scenarios were analysed, assuming different thermal energy sources and configurations (plane-MED or MED-TVC). It was found that the plane-MED fed by waste-heat at 1 bar is very competitive, leading to a reduction of 50% of the fresh regenerant current cost. Moreover, the thermal energy cost of 20USS/MWhth was identified as the threshold value below which producing regenerant solution in the MED is economically more advantageous than buying a fresh one. Overall, MED allows reducing the environmental impact of the industrial process and it results competitive with the state of the art for a wide range of operating conditions.
机译:包括纳滤,结晶和多效蒸馏(MED)的处理链是第一次提出用于处理在用于水软化的离子交换树脂再生过程中产生的流出物。目标是恢复矿物质,并恢复在下一个再生周期中重复使用的再生解决方案。 Med是从经济的观点来看治疗链中最重要的单位。介绍了对MED单元的技术经济分析,并引入了一个名为Lifetized Breine成本的新型性能指标,作为该过程的经济可行性的衡量标准。假设不同的热能源和配置(平面 - MED或MED-TVC),分析了不同的场景。发现通过1巴的废热喂养的平面 - 馈电是非常有竞争力的,导致减少50%的新再生电流成本。此外,20uss / MWHTH的热能成本被鉴定为下面的阈值,其在医学中产生再生溶液的溶液在经济上比购买新鲜的溶液更有利。总体而言,MED允许降低工业过程的环境影响,并且它果在艺术技术方面具有广泛的操作条件。

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