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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Synthesis and characterization of a nanofiltration carbon membrane derived from phenol-formaldehyde resin
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Synthesis and characterization of a nanofiltration carbon membrane derived from phenol-formaldehyde resin

机译:酚醛树脂衍生的纳滤碳膜的合成与表征

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We have synthesized carbon membranes by carbonizing a phenol-formaldehyde (PF) resin in the absence of air,and evaluated their physical properties and separation performance.Carbonization of the PF resin at 500 deg C for 30 min resulted in around 20% amss reduction and produced a membrane material which exhibited a moderate BET surface area of 29.6 m~2/g,with the majority of its porous structure confined to pores <15 nm.As observed by visible Raman spectroscopy,the carbon membrane seems to consist of a crystalline structure imbedded in an amorphous carbon matrix.The average grain size was found to be around 9.18 nm,which matches closely the results of Raman studies.The crystal structure is based on a hexagonal structure with a=7.8072 A and c=7.066 A with the latter length matching that of graphite.The difference in the former parameter was attributed to a motif consisting of a seven-membered plane benzene ring (one ring surrounded by six others) due to internal strain which was determined to be 3.22% by an technique.The molecular weight cut-off (MWCO) of this membrane was found to be about 7500 Daltons.The performance of the membrane was studied by separating hexavlent chromium ions from an aqueous chromic acid solution.The apparent intrinsic rejection of Cr~(6+) ions was of the order of 70 and 90%,respectively,and was found to increase with an increase in applied pressure.
机译:我们通过在无空气的情况下将酚醛(PF)树脂碳化来合成碳膜,并评估其物理性能和分离性能.PF树脂在500℃下进行30分钟的碳化会导致大约20%的amss降低和制备了一种膜材料,该膜材料的BET表面积为29.6 m〜2 / g,其中大部分的多孔结构被限制在小于15 nm的孔中。通过可见拉曼光谱观察,碳膜似乎由晶体结构组成晶体结构基于a = 7.8072 A和c = 7.066 A的六方结构,晶体结构基于六方结构,其中a = 7.8072 A,c = 7.066 A,后者的拉曼研究结果与拉曼研究的结果非常接近。长度与石墨的长度相匹配。前者参数的差异归因于由内部确定的内部应变导致的由七元平面苯环(一个环被六个环环抱)组成的基序经技术鉴定为3.22%。该膜的截留分子量(MWCO)约为7500道尔顿。通过从铬酸水溶液中分离六价铬离子来研究膜的性能。 Cr〜(6+)离子的固有排斥率分别为70%和90%,并且随着施加压力的增加而增加。

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