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首页> 外文期刊>African Journal of Pure and Applied Chemistry >Extraction and separation of Ni(II) from by functionalized graphene oxide with covalently linked porphyrin (GOH2NP) adsorbed on surfactant coated C18
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Extraction and separation of Ni(II) from by functionalized graphene oxide with covalently linked porphyrin (GOH2NP) adsorbed on surfactant coated C18

机译:吸附在表面活性剂涂覆的C18上的功能化氧化石墨烯与共价连接的卟啉(GOH2NP)的萃取和分离Ni(II)

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摘要

A novel, simple, sensitive and effective method has been developed for preconcentration of Ni (II) on functionalized Graphene oxide with covalently linked porphyrin (GO–H2NP) solid-phase extraction adsorbent. The stability of a chemical (GO–H2NP), especially in concentrated hydrochloric acid, was then used as a recycling and pre-concentration reagent. The method is based on selective chelation of Ni(II) on surfactant coated C18, modified with functionalized GO with covalently linked porphyrin (GO–H2NP). The retained ions were then eluted with 4 ml of 4 M nitric acid and determined by flame atomic absorption spectrometry (FAAS) at 283.3 nm for Ni. The influence of flow rates of sample and eluent solutions, pH, breakthrough volume, effect of foreign ions on chelation and recovery were investigated. 1.5 g of surfactant coated C18adsorbs 40 mg of the functionalized Graphene oxide with covalently linked porphyrin (GO–H2NP) base which in turn can retain 20.0 ± 0.9 mg of each of the two ions. The limit of detection (3σ) for Ni (II) was found to be 5.40 ngL-1. The enrichment factor for both ions is 100. The mentioned method was successfully applied on the determination of Ni in different water samples. The ions were also speciated by means of a three columns system.
机译:已开发出一种新颖,简单,灵敏且有效的方法,用于通过功能性氧化石墨烯与共价连接的卟啉(GO-H2NP)固相萃取吸附剂对镍(II)进行预浓缩。然后,将一种化学物质(GO-H2NP)的稳定性,特别是在浓盐酸中的稳定性,用作再循环和预浓缩试剂。该方法基于Ni(II)在表面活性剂涂层的C18上的选择性螯合,并用共价连接的卟啉(GO-H2NP)官能化的GO修饰。然后将保留的离子用4 ml的4 M硝酸洗脱,并通过火焰原子吸收光谱法(FAAS)在283.3 nm处测定Ni。研究了样品和洗脱液的流速,pH,突破体积,外来离子对螯合和回收率的影响。 1.5 g表面活性剂涂覆的C18吸收40 mg官能化的氧化石墨烯与共价连接的卟啉(GO-H2NP)碱,该碱又可以保留20.0±0.9 mg的两个离子。 Ni(II)的检出限(3σ)为5.40 ngL-1。两种离子的富集系数均为100。所提及的方法已成功应用于不同水样中镍的测定。还通过三柱系统指定了离子。

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