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The Capability of Nanomagnetite Carboxymethyl Kappa-Carrageenan Coated to Adsorp Metal Ions

机译:纳米磁石羧甲基kappa-carrageenan涂覆到Adsorp金属离子的能力

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Nanomagnetite is a nano-sized iron oxide Fe304. One of the utilization of nanomagnetite is as a metal ion binder. Nanomagnetite has a hydrophobic surface, so they difficult to interact with polar environments and tends to agglomerated. Agglomeration can reduce the magnetization of nanomagnetite. Modification of nanomagnetite was carried out to reduce agglomeration and to add a functional group on the surface of nanomagnetite. Carboxymethyl kappa carrageenan (CMKC) is a result of kappa carrageenan carboxymethylation, having an active group of carboxyl that can interact with metal ions. The research aims to synthesize CMKC coated nanomagnetite and characterize them by SEM and VSM and use it as metal ions adsorbent. This research is part of adsorption of metal ions with nanomagnetite CMKC coated research. The research was conducted in several stages including first synthesis of CMKC, secondly synthesis of magnetite, and thirdly synthesis of nanomagnetite CMKC coated, fourthly, sample preconcentration by adsorption of metal ions Cr(III), Ni(II), Cu(II), and Co(II) at pH 6, 40 minutes adsorption contact time, with nanomagnetite CMKC coated as adsorbent. The results showed that magnetite can be synthesized from a mixture of FeC13.6H20 and FeSO4.7H2O and NaOH as reagent. The peak of FTIR spectrum at 586 cm-1 peak confirmed that magnetite was formed, XRD's difractogram at 30°; 35°; 42°; 57°; 63°; and 74° peaks were confirmed the formation of magnetite. Morphological analysis was conducted with SEM that indicates that the average of magnetite sizes is 31 nm, so the magnetite that was synthesized can be categorized as nanomagnetite. Nanomagnetite that was coated with CMKC, and then analyzed with SEM, based on the SEM image, CMKC coated of nanomagnetite's size is larger than the original nanomagnetite, there are differences of magnetization of coated nanomagnetite and nanomagnetite without coating, the magnetization of nanomagnetite without coating is 24 emu/g and the ma
机译:Nanomagnetite是一种纳米型氧化铁Fe304。纳米磁石的利用之一是金属离子粘合剂。 Nanomagnetite具有疏水性表面,因此它们难以与极性环境相互作用并倾向于凝聚。聚集可以减少纳米磁石的磁化。进行纳米磁石的改性以减少附聚并在纳米磁石表面上加入官能团。羧甲基kappa角叉菜胶(CMKC)是Kappa Carrageenan羧甲基化的结果,具有可以与金属离子相互作用的活性羧基。该研究旨在合成CMKC涂覆的纳米磁石并通过SEM和VSM表征它们,并用作金属离子吸附剂。该研究是金属离子与纳米磁石CMKC涂层研究吸附的一部分。该研究是在几个阶段进行的,包括CMKC的第一次合成,其次合成磁石,并第三合成纳米磁石CMKC涂覆,第四,通过吸附金属离子Cr(III),Ni(II),Cu(II),Ni(II),Cu(II),和CO(II)在pH6,40分钟吸附接触时间,用纳米磁石CMKC作为吸附剂涂覆。结果表明,磁铁矿可以从FEC13.6H20和FESO4.7H2O和NaOH的混合物中合成。 586cm-1峰的FTIR光谱的峰值证实,形成磁铁矿,XRD在30°的不同图。 35°; 42°; 57°; 63°;并且确认了74°峰值的形成磁铁矿。用SEM进行形态学分析,表明磁铁矿尺寸的平均值为31nm,因此合成的磁铁矿可分为纳米磁石。用CMKC涂覆的纳米磁石,然后用SEM分析,基于SEM图像,CMKC涂覆纳米磁石的尺寸大于原来的纳米磁石,涂覆纳米磁石和纳米磁石的磁化差异差异而无涂层,纳米磁铁的磁化无涂层是24个emu / g和ma

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