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Development of a Simplified Radiation-Induced Emulsion Graft Polymerization Method and Its Application to the Fabrication of a Heavy Metal Adsorbent

机译:简化的辐射诱导乳液接枝聚合方法的发展及其在重金属吸附剂制备中的应用

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A simplified radiation-induced emulsion graft polymerization (SREG) method is proposed. This method involves a convenient and easy degassing process of a monomer solution using a commercially available sealed glass jar. A loaded weight on the lid of the jar was used to control the jar’s internal pressure as the degassing of the monomer solution took place using a vacuum pump. The degassing method was highly reproducible, resulting from no bumping of the monomer solution. The initial grafting velocity was proportional to the absorbed doses of pre-irradiation between 5 and 20 kGy. This result indicates that dissolved oxygen was sufficiently eliminated from the monomer solution at such a level where the remaining oxygen had little effect on the grafting reaction at a dose of 5 kGy. The method was then applied to the fabrication of a heavy metal adsorbent that possessed a sufficient adsorption capacity of Co(II) ions. The SREG method is applicable to the fabrication of a wide variety of functional graft polymers because high-dose-rate gamma-ray radiation and expensive experimental equipment are not necessary.
机译:提出了一种简化的辐射诱导乳液接枝聚合(SREG)方法。该方法涉及使用可商购的密封玻璃罐方便且容易地对单体溶液进行脱气的方法。当使用真空泵对单体溶液进行脱气时,将罐盖上的负载重量用于控制罐的内部压力。脱气方法具有很高的重现性,这是因为没有单体溶液的碰撞。初始接枝速度与5至20 kGy之间的预辐照吸收剂量成比例。该结果表明,在5kGy的剂量下,残留的氧对接枝反应的影响很小,因此从单体溶液中充分除去了溶解的氧。然后将该方法应用于具有足够的Co(II)离子吸附能力的重金属吸附剂的制造。 SREG方法可用于制造多种功能性接枝聚合物,因为不需要高剂量率的伽马射线辐射和昂贵的实验设备。

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