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Zr-Based Metal-Organic Nanoporous Adsorbents of High Density for Methane Storage

机译:基于Zr的金属 - 有机纳米多孔吸附剂的甲烷储存的高密度

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摘要

A Zr-BDC metal-organic framework was synthesized by the solvothermal method using N,N-dimethylformamide as an organic solvent at the temperature 110 degrees C. The adsorbent thus obtained is characterized by a developed porous structure with specific BET surface S-BET = 1060 m(2)/g, micropore volume W-0 = 0.44 cm(3)/g, and average micropore radius x(0) = 0.54 nm, which is indicative of a potentially effective adsorbent for adsorbed natural gas storage systems. The shaping parameters were determined for the Zr-BDC-based composites with polyvinyl alcohol as a binder and without the use of any binder at various compacting pressures. The influence of the shaping pressure on the packing density and structural and energy characteristics of the obtained samples was investigated. Based on the Dubinin theory of volume filling of micropores, the pressure dependences of the methane deliverable capacity both in the initial powdered and shaped Zr-BDC adsorbents at the temperatures of 243, 273, and 303 K were calculated for the pressures up to 100 bar. The deliverable volumetric methane capacity of the adsorption system based on the shaped Zr-BDC samples was measured in the specified thermodynamic conditions.
机译:采用溶剂热法,以N,N-二甲基甲酰胺为有机溶剂,在110℃下合成了Zr-BDC金属有机骨架。所得吸附剂具有发达的多孔结构,比表面积S-BET=1060 m(2)/g,微孔体积W-0=0.44 cm(3)/g,平均微孔半径x(0)=0.54 nm,这表明它是一种潜在的有效吸附剂,用于吸附天然气储存系统。以聚乙烯醇为粘结剂,在不使用任何粘结剂的情况下,在不同的压实压力下,确定了Zr-BDC基复合材料的成型参数。研究了成型压力对样品堆积密度、结构和能量特性的影响。基于微孔体积填充的Dubinin理论,计算了初始粉状和成型Zr-BDC吸附剂在243、273和303 K温度下,在100巴压力下的甲烷释放能力的压力依赖性。在规定的热力学条件下,测量了基于成型Zr-BDC样品的吸附系统的可输送体积甲烷容量。

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