首页> 外文会议>ASME international mechanical engineering congress and exposition >FABRICATION OF POLYACRYLONITRILE NANOFIBER MEMBRANES FUNCTIONALIZED WITH METAL ORGANIC FRAMEWORK FOR CO_2 CAPTURING
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FABRICATION OF POLYACRYLONITRILE NANOFIBER MEMBRANES FUNCTIONALIZED WITH METAL ORGANIC FRAMEWORK FOR CO_2 CAPTURING

机译:金属有机骨架功能化CO_2捕获的聚丙烯腈纳米纤维膜的制备

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Crystalline particles known as Metal Organic Frameworks (MOF's) are known for their large surface area and high adsorption and storage capacity for CO_2 gas. Electrospun nanofibers are considered as ideal substrates for synthesizing the MOF particles on the fiber surface. In this project, Polyacrylonitrile (PAN) and a Cu-based MOF known as HKUST-1 were selected as substrate fibers and adsorbent particles respectively. A precursor solution of PAN polymer hybridized with HKUST-1 particles dissolved in Dimehtylformamide (DMF) is used as the primary component solution for electrospinning. SEM images of the electrospun fibers showed small MOF particles formation into the fiber structure. A secondary solvothermal process of MOF particles growing on the fibers was then executed to increase the amount of MOF particles for effectual gas adsorption. The secondary process consists of multiple growth cycles and SEM images showed uniform distribution of porous MOF particles of 2-3 μm in size on the fiber surface. EDS report of the fiber confirmed the presence of MOF particles through identification of characteristic Copper elemental peaks of HKUST-l.Thermogravitmetric analysis (TGA) of HKUST-1 doped PAN fiber displayed 32% of total weight loss between 180°C and 350°C thus proving the as-synthesized MOF particles are thermally stable within the mentioned temperature range. A comparative IR spectroscopic result between the gas-treated and gas-untreated fiber samples showed the presence of characteristic peak in the vicinity of 2300 and 2400cm~(-1) which corroborates the assertion of adsorption of CO_2 on the system. Further step involved is to investigate the gas adsorption capacity of the filter system in an experimental test bench. Non-dispersive Infrared (NDIR) CO_2 sensors will be used at the gas inlet and outlet parts to measure the concentration of CO_2 and determine the amount of gas uptake by the filter system.
机译:被称为金属有机骨架(MOF's)的结晶颗粒以其大的表面积以及对CO_2气体的高吸附和储存能力而闻名。电纺纳米纤维被认为是在纤维表面合成MOF颗粒的理想基材。在该项目中,分别选择聚丙烯腈(PAN)和称为HKUST-1的铜基MOF作为基质纤维和吸附剂颗粒。 PAN聚合物的前体溶液与溶解在二甲基甲基甲酰胺(DMF)中的HKUST-1颗粒杂交,用作电纺丝的主要组分溶液。电纺纤维的SEM图像显示出小的MOF颗粒形成到纤维结构中。然后执行在纤维上生长的MOF颗粒的二次溶剂热过程,以增加MOF颗粒的数量,以实现有效的气体吸附。次级过程由多个生长周期组成,并且SEM图像显示了大小为2-3μm的多孔MOF颗粒在纤维表面上的均匀分布。纤维的EDS报告通过鉴定HKUST-1的特征性铜元素峰证实了MOF颗粒的存在.HKUST-1掺杂PAN纤维的热重分析(TGA)显示在180°C至350°C之间总失重的32%因此证明了所合成的MOF颗粒在所述温度范围内是热稳定的。经气体处理和未经气体处理的纤维样品之间的比较红外光谱结果表明,在2300和2400cm〜(-1)附近存在特征峰,这证实了CO_2在系统上的吸附。涉及的进一步步骤是研究在实验测试台中过滤系统的气体吸附能力。非分散红外(NDIR)CO_2传感器将在气体进口和出口部分使用,以测量CO_2的浓度并确定过滤器系统吸收的气体量。

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