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Heat transfer and operating conditions for freeze concentration in a liquid-solid fluidized bed heat exchanger

机译:液固流化床换热器中冻结浓缩的传热和运行条件

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Freeze concentration involves concentrating liquids partially by freezing water out of the solution thus leaving behind a concentrate rich in its solutes.It is an expensive process that could benefit from alternative approaches that are more cost-effective.In this paper,freeze concentration is studied inside a fluidized bed heat exchanger(FBHE),which is a cheaper alternative to the conventionally used scraped surface heat exchanger(SSHE)in a freeze concentration process.A pilot scale vertical fluidized bed heat exchanger was designed and constructed in the University of Auckland to test the feasibility of this process using stainless steel(SS)particles for ice removal.Experiments were conducted with NaCl solutions to determine the effect of NaCl concentration and bed porosity on the stability of operation.Operating stability improved with increasing NaCl concentration and decreasing bed porosity proving the feasibility of this equipment to freeze concentrate liquid solutions at certain conditions in the range of parameters tested.A long-term freeze concentration experiment was carried out in which freeze concentration in the solution was confirmed via freezing point depression(FPD).FBHE can be used to freeze concentrate NaCl liquids more cost-effectively than SSHE at stable conditions within the range of tested parameters.
机译:冷冻浓缩涉及通过将水从溶液中冷冻出来而部分浓缩液体,从而留下富含其溶质的浓缩液。这是一个昂贵的过程,可以受益于更具成本效益的替代方法。流化床换热器(FBHE),它是冷冻浓缩过程中传统的刮板式换热器(SSHE)的便宜替代品。奥克兰大学设计并建造了中试规模的垂直流化床换热器,以进行测试用不锈钢(SS)颗粒除冰的可行性实验。用NaCl溶液进行实验以确定NaCl浓度和床孔隙率对操作稳定性的影响。操作稳定性随NaCl浓度的增加和床孔隙率的降低而改善该设备在一定程度上冻结浓缩液体溶液的可行性进行了长期冷冻浓缩实验,通过冰点降低法(FPD)确认了溶液中的冷冻浓度.FBHE可以比SSHE更具成本效益地冷冻浓缩NaCl液体在测试参数范围内的稳定条件下。

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