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STUDY ON DESIGN AND PERFORMANCE OF LOW TEMPERATURE HEAT PUMP EVAPORATION SYSTEM FOR CORROSIVE AND THERMAL-SENSITIVE RAW MATERIAL

机译:腐蚀性和热敏性原材料的低温热泵蒸发系统的设计和性能研究

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摘要

To relieve problems of high-energy consumption and poor corrosion-resistant during the conventional corrosive and thermal-sensitive material evaporation-concentration process, a closed low temperature heat pump evaporation-concentration scheme has been recommended. Through compared with the usual mechanical vapor recompression (MVR) heat pump evaporation-concentration process, a vitamin E solution evaporation-concentration scheme was analyzed as an example, key equipments size, cost, integrated thermodynamic performance and economic performance of the proposed system scheme have been explored. The results showed, compared with the MVR scheme, the closed low temperature heat pump evaporation-concentration scheme hold advantages in comprehensive performance. And raw material evaporation temperature selection affected integrated performance of the proposed scheme less. The comprehensive performance index is decreased with evaporation temperature for both of the two schemes. At the same evaporation temperature increase, the comprehensive performance is decreased less than that of the MVR scheme. Advantage of the proposed scheme became obvious when the evaporation temperature lower than 44 °C. Furthermore, thermodynamic performance of the proposed suggested worse than that of the MVR heat pump, while the key equipment- compressor of the proposed scheme was compact, cost less, and regardless considering the processed corrosive material causticity impaction.
机译:为了缓解常规腐蚀和热敏材料蒸发浓缩过程中高能耗和耐腐蚀性差的问题,建议采用封闭式低温热泵蒸发浓缩方案。通过与常规机械蒸汽压缩(MVR)热泵蒸发浓缩工艺进行比较,以维生素E溶液蒸发浓缩方案为例进行了分析,所提出的系统方案的关键设备尺寸,成本,综合热力学性能和经济性能均具有一定的实用价值。被探索了。结果表明,与MVR方案相比,封闭式低温热泵蒸发浓缩方案在综合性能上具有优势。原料蒸发温度的选择对所提方案综合性能的影响较小。两种方案的综合性能指标均随着蒸发温度的降低而降低。在相同蒸发温度下,综合性能下降的幅度小于MVR方案。当蒸发温度低于44°C时,该方案的优势变得明显。此外,提出的建议的热力学性能比MVR热泵差,而提出的方案的关键设备-压缩机紧凑,成本较低,并且不考虑处理后的腐蚀性材料的腐蚀性。

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