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作 者:杨宇帆 罗春欢 赵佳辉[1] 何沐然 郎林 李泽祥[1] 周春廷 YANG Yufan;LUO Chunhuan;ZHAO Jiahui;HE Muran;LANG in;LI Zexiang;ZHOU Chunting(School of Energy and Environmental Engineering,University of Science and Technology Beijing,Beijing 100083,China;Shunde Graduate School of University of Science and Technology Beijing,Foshan 528399,Guangdong,China;National Energy Multi-Mode Industrial Energy Storage Technology Research and Development Center,Beijing 100083,China;Guangzhou Institute of Energy Research,Chinese Academy of Sciences,Guangzhou 510640,Guangdong,China)
机构地区:[1]北京科技大学能源与环境工程学院,北京100083 [2]北京科技大学顺德创新学院,广东佛山528399 [3]国家能源多模式工业储能技术研发中心,北京100083 [4]中国科学院广州能源研究所,广东广州510640
出 处:《化工学报》2024年第12期4432-4441,共10页CIESC Journal
基 金:广东省科技计划项目(2023A0505050157)。
摘 要:随着氢燃料电池产业加速发展,其低温余热(约70℃)利用成为了亟需解决的问题,而传统的LiBr/H_(2)O工质对的发生温度过高,无法利用较低品位的热能以及低温下易结晶,因此提出了新型低温工质对R1336mzz(Z)/TEGDME,并进行了饱和蒸气压、密度、黏度、比热容的测量,通过NRTL模型计算了其混合焓和比焓。使用最小二乘法对以上数据均进行了回归,实验值与拟合值的相关系数的平方均大于0.999,吻合较好,可使用拟合公式进行新型低温工质对的余热制冷热力循环的设计计算。相较LiBr/H_(2)O工质对,低温工质对R1336mzz(Z)/TEGDME的发生温度降低了约12℃,黏度降低了约30%,可以利用低温燃料电池余热制冷,具有很强的实际应用意义。With the acceleration of research in hydrogen fuel cell industry,the utilization of waste heat(about 70℃)has become an urgent problem to be solved.However,the generation temperature of traditional LiBr/H_(2)O working pair is too high to utilize low-grade heat energy and has the problems of crystallization.Therefore,a new organic working pair R1336mzz(Z)/TEGDME is proposed.The saturated vapor pressure,density,viscosity and specific heat capacity were measured.The mixing enthalpy and specific enthalpy were calculated by NRTL model.The above data are regressed using the least squares method,and the square of the correlation coefficient between the experimental value and the fitting value is greater than 0.999,which is in good agreement.The fitting formula can be used to design and calculate the waste heat refrigeration thermal cycle of the new low temperature working pair.Compared with the LiBr/H_(2)O working pair,the generation temperature of R1336mzz(Z)/TEGDME working pair is reduced by 12℃and the viscosity by about 30%,which has strong practical application significance.
分 类 号:TK019[动力工程及工程热物理]
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