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Production of a Highly Concentrated Methane by the Membranous Biogas Treating, Formed at the Biomass Densification Based on Agricultural Wastes

机译:通过膜式沼气处理生产高浓度甲烷,这种膜化处理是在基于农业废物的生物质致密化过程中形成的

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The membranous biogas treating research allowed determine optimal parameters of the process, affecting the membrane separation efficiency, permeability and selectivity. The working pressure falls within the limits of 0.6 MPa. The membranous gas treating regularities in a membrane apparatus were determined. The concentration-permeability relation and pressure effect on the permeability were determined. A mass transport mechanism through the membrane pores was established. The membrane structure and material basic requirements and membranous process principle at the gas treating were established. Relation of the membrane mass-transfer coefficient to a permeate flow on the phase rate, the mass-transfer coefficient in the membrane pores on an inside diffusion coefficient showed that increase in the rate results in increase of the mass-transfer coefficient, and also that while the external mass-transfer resistance determines the overall process rate, the process can be intensified.
机译:膜式沼气处理研究可以确定工艺的最佳参数,从而影响膜分离效率,渗透性和选择性。工作压力在0.6 MPa的范围内。确定膜装置中的膜气体处理规则。确定了浓度-渗透率关系和压力对渗透率的影响。建立了通过膜孔的质量传输机制。建立了气体处理的膜结构,材料基本要求和膜工艺原理。膜传质系数与渗透流之间的关系与相速率,膜孔中的传质系数与内部扩散系数之间的关系表明,速率的增加导致传质系数的增加,并且虽然外部传质阻力决定了总的处理速率,但可以增强处理过程。

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