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Construction of a ferritin reactor: An efficient means for trapping various heavy metal ions in flowing seawater

机译:铁蛋白反应器的构建:一种用于捕获流动海水中各种重金属离子的有效方法

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摘要

An apparatus consisting of two pumps, a mixer, a ferritin reactor, and a spectrophotometer was constructed to study the ability to trap various heavy metal ions (M2+) and the dynamics of a reconstituted ferritin reactor in flowing seawater. Reconstituted pig spleen ferritin (PSFr) is assembled from ape-protein shell to form a reconstituted iron core. The main components of the PSF, are its core, which contains an Fe2+:P-i stoichiometry of 6.0+/-0.5, reconstituted from pig spleen apoferritin (apo PSF), Fe2+, inorganic phosphate (P-i), and O-2 (0.6 atm). The Fe3+-P-i clusters within the PSFr core exhibit resistance to salt ranging from 1% to 6% NaCl. The ferritin reactor consists of PSFr and an oscillating bag. Using the reactor, M2+ ions such as Cd2+, Zn2+, Co2+, and Mn2+ are directly trapped by the ferritin. We found a 1:2+/-0.2 stoichiometry of the trapped M2+ to the released iron as measured by chemical analysis or atomic absorption spectrometry; nontransient elements such as Na+, K+, Ca2+, etc., were scarcely trapped by the reactor. This study provides basic conditions for establishing a ferritin reactor and a convenient means for monitoring the pollution of heavy metal ions in seawater.
机译:构造了由两个泵,混合器,铁蛋白反应器和分光光度计组成的设备,以研究捕获各种重金属离子(M2 +)的能力以及流动的海水中重构的铁蛋白反应器的动力学。重组猪脾铁蛋白(PSFr)由猿蛋白壳组装而成,形成了重组铁芯。 PSF的主要成分是其核心,它的Fe2 +:Pi化学计量为6.0 +/- 0.5,由猪脾载铁蛋白(apo PSF),Fe2 +,无机磷酸盐(Pi)和O-2(0.6 atm)组成)。 PSFr核心中的Fe3 + -P-i团簇表现出对1%至6%NaCl的耐盐性。铁蛋白反应器由PSFr和一个振荡袋组成。使用该反应器,铁蛋白直接捕获诸如Cd2 +,Zn2 +,Co2 +和Mn2 +之类的M2 +离子。我们发现,通过化学分析或原子吸收光谱法测得,捕获的M2 +与释放的铁的化学计量比为1:2 +/- 0.2。非瞬态元素(如Na +,K +,Ca2 +等)几乎不会被反应器捕获。该研究为建立铁蛋白反应器提供了基本条件,并为监测海水中重金属离子的污染提供了便利的手段。

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