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吸水率分析在加氢精制催化剂质量控制中的应用
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作者 卫雪莹 《石油石化物资采购》 2021年第22期84-85,共2页
随着加氢精制催化剂的规模化生产,实验室的科学指标分析成为及时调整生产工艺参数的主要依据。通过改进化验分析方法,较传统分析方法获得更精确的产品的吸水率这一性能指标,更好更快地调整工艺参数,对催化剂产品的质量有重要的指导意义。
关键词 加氢精制催化剂 吸水率分析
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Analysis of microscopic pore structures of rocks before and after water absorption 被引量:6
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作者 Li Dejian Wang Guilian +5 位作者 Han Liqiang Liu Peiyu He Manchao Yang Guoxing Tai Qimin Chen Cheng 《Mining Science and Technology》 EI CAS 2011年第2期287-293,共7页
Hydrophilic characteristics of rocks are affected by their microscopic pore structures,which clearly change after water absorption.Water absorption tests and scanning electron microscopic(SEM) experiments on rock sa... Hydrophilic characteristics of rocks are affected by their microscopic pore structures,which clearly change after water absorption.Water absorption tests and scanning electron microscopic(SEM) experiments on rock samples,located at a site in Tibet,China,were carried out Changes of rock pore structures before and after water absorption were studied with the distribution of pore sizes and fractal characteristics of pores.The results show that surface porosities,fractal dimensions of pores and the complexity of pore structures increased because the number of new small pores produced increased or the original macropore flow channels were expanded after rocks absorbed water.There were points of inflection on their water absorption curves.After water absorption of other rocks,surface porosities and fractal dimensions of pores and complexity of pore structures decreased as the original pore flow channels became filled.Water absorption curves did not change.Surface porosity and the pore fractal dimensions of rocks have good linear relationships before and after water absorption. 展开更多
关键词 Hydrophilic characteristics Pore structures Pore size distribution Pore fractal characteristics
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Thermodynamic analysis of simplified dual-pressure ammonia-water absorption power cycle 被引量:5
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作者 华君叶 陈亚平 +1 位作者 刘化瑾 吴嘉峰 《Journal of Central South University》 SCIE EI CAS 2012年第3期797-802,共6页
A simplified dual-pressure ammonia-water absorption power cycle(DPAPC-a) using low grade energy resources is presented and analyzed.This cycle uses turbine exhaust heat to distill the basic solution for desorption.The... A simplified dual-pressure ammonia-water absorption power cycle(DPAPC-a) using low grade energy resources is presented and analyzed.This cycle uses turbine exhaust heat to distill the basic solution for desorption.The structure of the cycle is simple which comprises evaporator,turbine,regenerator(desorber),absorber,pump and throttle valves for both diluted solution and vapor.And it is of high efficiency,because the working medium has large temperature difference in evaporation and small temperature difference in absorptive condensation,which can match the sensible exothermal heat resource and the cooling water simultaneously.Orthogonal calculation was made to investigate the influence of the working concentration,the basic concentration and the circulation multiple on the cycle performance,with 85-110 ℃ heat resource and 20-32 ℃ cooling water.An optimum scheme was given in the condition of 110 ℃ sensitive heat resource and 20 ℃ cooling water,with the working concentration of 0.6,basic concentration of 0.385,and circulation multiple of 5.The thermal efficiency and the power recovery efficiency are 8.06 % and 6.66%,respectively.The power recovery efficiency of the DPAPC-a is 28.8% higher than that of the steam Rankine cycle(SRC) and 12.7% higher than that of ORC(R134a) under the optimized situation. 展开更多
关键词 absorption power cycle AMMONIA-WATER circulation multiple ammonia concentration Kalina cycle
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