Allel Amina, Benguergoura Hassiba, Naceur Mohamed Wahib, Ledoux Alain, Saeed Waseem Sharaf, Aouak Taïeb
Laboratoire Eau, Environnement, et Développement Durable (2E2D), Département de Génie des Procédés, Faculté de Technologies, Université Saâd Dahlab Blida 1, Route de Soumâa, B.P. 270, Blida 09000, Algeria.
Laboratoire de Chimie-Physique Moléculaire et Macromoléculaire LCPMM, Département de Chimie, Faculté des Sciences, Université Saâd Dahlab Blida 1, Route de Soumâa, B.P. 270, Blida 09000, Algeria.
Membranes (Basel). 2021 Nov 24;11(12):921. doi: 10.3390/membranes11120921.
In order to improve the thermal and mechanical properties of poly(styrene-co-butadiene) (SBR) to use it as a pervaporation membrane in the separation of the azeotropic mixture toluene/methanol, poly(styrene-co-butadiene) crosslinked Maghnia-organo-montmonrillonite (CSBR/OMMT), a nanocomposite of different compositions was first prepared by a solvent casting method. SBR was crosslinked in situ in the presence of OMMT nanoparticles by an efficient vulcanization technique using sulfur as a crosslinking agent and zinc diethyldithiocarbamate as a catalyst. The structure and morphology of the hybrid materials obtained were characterized by Fourier transform infrared spectroscopy, X-ray diffraction, and scanning electron microscope analysis. The thermal properties of these hybrid materials were studied by differential scanning calorimetry and thermogravimetric analysis/thermal differential analysis. The mechanical properties were studied by strength measurements. The results obtained occurred when the OMMT was incorporated in the CSBR matrix; a significant increase in the glass transition temperature of the SBR was observed which passed from -27 °C for virgin SBR to -21.5 °C for that containing 12 wt% of OMMT. The addition of OMMT nanoparticles to CSBR also improved the mechanical properties of this copolymer. When the OMMT content in the CSBR varied from 0 to 15% by weight, the tensile strength, the elongation at the nose and the modulus at 100% elongation increased from 3.45 to 6.25 MPa, from 162, 17 to 347.20% and 1.75 to 3.0 MPa, respectively. The results of pervaporation revealed that when the OMMT content varied between 3% and 12%, a significant increase in the total flux, the separation factor and the separation index by pervaporation increased from 260.67 to g m h, 0.31 to 1.43, and 0.47 to 113.81 g m h, respectively.
为了改善聚(苯乙烯 - 共 - 丁二烯)(SBR)的热性能和机械性能,以便将其用作渗透蒸发膜来分离甲苯/甲醇共沸混合物,首先通过溶液浇铸法制备了不同组成的聚(苯乙烯 - 共 - 丁二烯)交联马格尼亚 - 有机蒙脱土(CSBR/OMMT)纳米复合材料。使用硫作为交联剂和二乙基二硫代氨基甲酸锌作为催化剂,通过高效硫化技术在OMMT纳米颗粒存在下使SBR原位交联。通过傅里叶变换红外光谱、X射线衍射和扫描电子显微镜分析对所得杂化材料的结构和形态进行了表征。通过差示扫描量热法和热重分析/热差分析研究了这些杂化材料的热性能。通过强度测量研究了机械性能。当将OMMT掺入CSBR基体中时得到了相应结果;观察到SBR的玻璃化转变温度显著升高,从原始SBR的 - 27°C升至含有12 wt%OMMT的SBR的 - 21.5°C。向CSBR中添加OMMT纳米颗粒也改善了该共聚物的机械性能。当CSBR中OMMT的含量按重量从0变化到15%时,拉伸强度、拉伸断裂伸长率和100%伸长率下的模量分别从3.45 MPa增加到6.25 MPa、从162.17%增加到347.20%以及从1.75 MPa增加到3.0 MPa。渗透蒸发结果表明,当OMMT含量在3%至12%之间变化时,渗透蒸发的总通量、分离因子和分离指数显著增加,分别从260.67 g m⁻² h⁻¹增加到[此处原文缺失具体数值] g m⁻² h⁻¹、从0.31增加到1.43以及从0.47增加到113.81 g m⁻² h⁻¹。