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Development of Hydrophobic Microporous Isotactic Polypropylene Membrane for Membrane Contactor Application

机译:疏水性微孔全同立构聚丙烯膜用于膜接触器应用

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Membrane Contactor (MC) is a well-known membrane technology to provide significant advantages required by industries. For MC, a hydrophobic membrane required as a barrier so that liquid absorbent and flue gaseous do not disperse with one another. However, the major concern in hydrophobic membrane is getting swelling by liquid after a short operating period. To minimize the swelling, this study focused on the exploration on membrane fabrication by Thermally Induced Phase Separation (TIPS). As the immersion in solvents is one of the important step to extract the diluent from membranes pores, the effect of the immersion in methanol was studied. The productions of hydrophobic microporous flat sheets were accomplished by using isotactic Polypropylene (iPP) and two type diluents: Dipenyl Ether (DPE) and Methyl Salicylate (MS). The measurement of hydophobicity of membranes produced was conducted by Test System of JY-82 Video Contact Instrument. Membranes produced were characterized by Scanning Electron Microscopy (SEM) and Fourier Transform Infrared Spectroscopy (FTIR). The highest hydrophobicity obtained were 124°(three hours immersed in methanol) and 107° (two hours immersed in methanol) by DPE and MS respectively. All membranes show spherical pores, indicating that membranes were formed via liquid-liquid TIPS and strong bond alkane group by Infrared (IR) spectras show that the membranes produce did not change when undergo TIPSprocess.
机译:膜接触器(MC)是一种着名的膜技术,可提供行业所需的显着优势。对于MC,需要作为屏障所需的疏水膜,使得液体吸收剂和烟气气体彼此不分散。然而,疏水性膜中的主要问题在短时间运行期后液体溶胀。为了使肿胀最小化,本研究专注于热诱导相分离(提示)对膜制造的探索。随着浸渍溶剂的浸渍是从膜孔中提取稀释剂的重要步骤之一,研究了浸入甲醇中的效果。通过使用全同立构聚丙烯(IPP)和两种稀释剂:二苯基醚(DPE)和水杨酸甲酯(MS)来完成疏水性微孔平板的制造。通过JY-82视频触点仪器的测试系统进行产生的膜的肺化的测量。通过扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)表征产生的膜。所得最高疏水性分别为124°(浸入甲醇中的三小时)和107°(浸没在甲醇中)的107°(浸入甲醇)。所有膜显示球形孔,表明膜通过红外线(IR)光谱通过液 - 液尖端和强键烷烃组形成,表明膜在经过尖端过程时不会改变。

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