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Swelling, ion uptake and biodegradation studies of PE film modified through radiation induced graft copolymerization

机译:辐射诱导的接枝共聚改性PE膜的溶胀,离子吸收和生物降解研究

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An attempt to develop biodegradable polyethylene film grafting of mixture of hydrophilic monomers methacrylic acid (MAAc) and acrylamide (AAm) onto PE film has been carried out by preirradiation method using benzoyl peroxide as the radical initiator. Since ether linkages are susceptible to easy cleavage during degradation process, PE film was irradiated before the grafting reactions by y-rays to introduce peroxidic linkages (PE-OO-PE) that offer sites for grafting. The effect of irradiation dose, monomer concentration, initiator concentration, temperature, time and amount of water on the grafting percent was determined. Maximum percentage of grafting of binary mixture (MAAc+AAm), (1792%) was obtained at a total concentration of binary monomer mixture= 204.6 x 10~(-2) mol/L([MAAc]=176.5 x 10~(-2) mol/L, [AAm]=28.1 x 10~(-2) mol/L), [BPO]=83 x 10~(-2) mol/L at 100 °C in 70 min. The grafted PE film was characterized by the Fourier Transform Infrared Spectroscopy (FTIR), Thermogravimetric Analysis (TGA) and Scanning Electron Microscopic (SEM) methods. Some selective properties of grafted films such as swelling studies, ion uptake and biodegradation studies have been investigated. The grafted films show good swelling in water, ion uptake studies shows promising results for desalination of brackish water and the soil burial test shows that PE film grafted with binary monomer mixture degrades up to 47% within 50 days.
机译:通过使用过氧化苯甲酰作为自由基引发剂的预辐射方法,进行了开发将亲水性单体甲基丙烯酸(MAAc)和丙烯酰胺(AAm)的混合物生物降解的聚乙烯膜接枝到PE膜上的尝试。由于醚键易于在降解过程中裂解,因此在接枝反应之前,先用y射线辐照PE膜,以引入过氧化物键(PE-OO-PE),以提供接枝位置。确定了辐照剂量,单体浓度,引发剂浓度,温度,时间和水量对接枝率的影响。在二元单体混合物的总浓度= 204.6 x 10〜(-2)mol / L([MAAc] = 176.5 x 10〜(-)的情况下,获得了最大二元混合物接枝率(MAAc + AAm)(1792%)。 2)mol / L,[AAm] = 28.1 x 10〜(-2)mol / L),[BPO] = 83 x 10〜(-2)mol / L,在100°C下70分钟。通过傅里叶变换红外光谱(FTIR),热重分析(TGA)和扫描电子显微镜(SEM)方法对接枝的PE膜进行了表征。已经研究了接枝薄膜的一些选择性特性,例如溶胀研究,离子吸收和生物降解研究。接枝的薄膜在水中表现出良好的溶胀性,离子吸收研究显示了微咸水脱盐的良好前景,而土壤掩埋测试表明,用二元单体混合物接枝的PE薄膜在50天内降解高达47%。

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