首页> 外文会议>International conference on diffusion in solids and liquids, mass transfer-heat transfer-microstructure properties-nanodiffusion and nanostructured materials;DSL-2009 >Experimental and Analytical Investigation of Ammonia Absorption into Ammonia-water Solution: Estimated Interface Concentration
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Experimental and Analytical Investigation of Ammonia Absorption into Ammonia-water Solution: Estimated Interface Concentration

机译:氨吸收到氨水溶液中的实验和分析研究:估计的界面浓度

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Ammonia absorption process of ammonia vapor into ammonia water solution has been investigated experimentally, by inserting superheated ammonia vapor into a test cell containing a stagnant pool of ammonia water solution of several ammonia mass fractions, C_i. Before commencing the experiment, the pressure in the test cell corresponds to the equilibrium vapor of the ammonia-water system at room temperature. When the valve is opened, mechanical equilibrium is established quickly and the ammonia vapor diffuses into ammonia solution [1]. The difference between the initial pressure in the vapor cylinder and the initial pressure in the test cell ΔP_i is found to have a major influence not only on the absorption rate but also on the estimated interface concentration. The interface concentration C_(int) of the cases ΔP_i = 50 and 100 kPa exhibits a similar tendency, C_(int) decreases rapidly compared to other initial pressures ΔP_i = 150 and 200 kPa. On the other hand, the interface concentration C_(int) of the cases ΔP_i = 250 and 300 kPa are increasing within about 50 sec, then are hardly changing with time. They behave almost in a similar way as of C_(int) = 0.27 kg/kg. A correlation which gives the total absorbed mass of ammonia as a function of the initial concentration, the initial pressure difference and time is derived. In addition, the absorbed mass at no pressure difference could be estimated from the absorbed mass at initial pressure difference.
机译:通过将过热的氨气插入到包含几个氨质量分数C_i的氨水溶液的停滞池的测试池中,已对氨气在氨水溶液中的氨吸收过程进行了实验研究。在开始实验之前,测试室中的压力对应于室温下氨水系统的平衡蒸汽。阀门打开后,机械平衡迅速建立,氨蒸汽扩散到氨溶液中[1]。发现汽缸中的初始压力和测试单元中的初始压力之间的差值ΔP_i不仅对吸收率有很大影响,而且对估计的界面浓度也有很大的影响。 ΔP_i= 50和100 kPa情况下的界​​面浓度C_(int)表现出相似的趋势,与其他初始压力ΔP_i= 150和200 kPa相比,C_(int)迅速降低。另一方面,ΔP_i= 250和300kPa的情况下的界​​面浓度C_(int)在大约50秒内增加,然后几乎不随时间变化。它们的行为几乎与C_(int)= 0.27 kg / kg时类似。得出了一个相关关系,该关系给出了氨的总吸收质量与初始浓度,初始压力差和时间的函数关系。另外,可以从初始压力差下的吸收质量来估计无压力差下的吸收质量。

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