稳定泡沫层传质实验研究

Viktor Moiseev, E. Manoilo, Oleg Khukhryanskiy, K. Repko
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引用次数: 0

摘要

研究的对象:在一个组合接触元件上的传质过程。研究问题:确定泡沫层中气液体系加工过程中工艺参数的规律,并对得到的实验数据进行解释。处理工业气流的问题是通过进行密集的过程来解决的。主要科学成果:研究结果揭示了氨吸收随实验主要参数的变化规律:柱内气速、氨浓度、组合接触元件自由截面、液载。气相传质过程受流体动力学参数——装置内气体流速和液体比载荷的显著影响,间接影响板上液体层的高度和层内气体含量。研究成果的实际应用领域:吸收工艺用于处理气体和液体的工艺过程,吸收有害物质用于处理气体排放。创新科技产品:新型块筒式喷嘴接触装置,工作在稳定的流体动力模式下;新型三相泡沫层球形加重喷嘴。本创新技术产品的适用范围:工艺过程中气体排放或工艺气体的处理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental research of mass transfer in a stabilized foam layer
The object of research: mass transfer processes on a combined contact element in a column apparatus. Investigated problem: determination of the regularities of process parameters in the processing of gas-liquid systems in a foam layer, as well as to interpret the obtained experimental data. The problem of processing industrial gas flows is solved by conducting the process in an intensive mode. The main scientific results: as a result of the study, the regularities of ammonia absorption were revealed depending on the main parameters of the experiment: gas velocity in the column cross-section, ammonia concentration, free cross-section of the combined contact element, and liquid loads. The process of mass transfer in the gas phase is significantly influenced by hydrodynamic parameters – the gas velocity in the apparatus and the specific load on the liquid, which indirectly affect the height of the liquid layer on the plate and the gas content of the layer. The area of practical use of the research results: sorption processes for processing gases and liquids in technological processes, absorption of harmful substances in the treatment of gas emissions. Innovative technological product: new block poppet-nozzle contact device that operates in a stabilized hydrodynamic mode; new ball-shaped weighted nozzle for three-phase foam layer. Scope of application the innovative technological product: technological processes in the treatment of gas emissions or technological gases.
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