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Agarose Cleaning Optimization for DGT Devices Specific for Cesium

机译:用于铯的DGT器件的琼脂糖清洁优化

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Agarose gels commonly used in electrophoresis are regularly checked by its manufacturers for the absence of contaminating nucleases or residual sulfates.It is also tested for several metals and trace elements:Pb,Cd,Co,Cu,Zn,K,Ca,Cr Mg,Mn,Fe,Ni,Na,and CI.However,no data are available for Cs-impurity measurements.A Diffusive Gradients in Thin films(DGT)device specific for cesium(Cs)is intended to be developed.Therefore,it is important to assess the impurity degree of agarose with Cs.Direct dissolution of agarose in 4 mol-L~(-1)FINO3 gives a concentration of 2.1×10~(-8)mol·L~(-1)of Cs,which is higher than that is found in natural environments(e.g.[Cs]<1×10~(-8)mol·L~(-1)in water).Two methods of Cs impurity removal have been tested,involving acidic cleaning with HCl and extraction by exchanger resin(KCuFC).Agarose powder was mixed with HCl in different concentrations,rinsed and dried.This method shows that the HCl-cleaning method is not quite efficient in removing the Cs impurity compared to untreated agarose gel.The”second method,KCuFC resin was mixed with agarose powder in ultra-pure water,heated afterwards,and filtered.This method was able to reduce the amount of Cs by 99% compared to the untreated agarose gel.It appears that acceptable Cs levels(i.e.with respect to ambient Cs concentration in natural waters)are achievable by the removal of preexisting Cs in the agarose powder.
机译:其制造商常用在电泳中常用在电泳中的琼脂糖凝胶用于不存在污染核酸酶或残留的硫酸盐。还测试了几种金属和微量元素:Pb,Cd,Co,Cu,Zn,K,Ca,Cr mg, Mn,Fe,Ni,Na和Ci.然而,没有任何数据可用于CS-杂质测量。旨在开发用于铯(CS)的薄膜(DGT)装置中的扩散梯度。因此,这是重要的评估琼脂糖的琼脂糖的杂质程度。在4mol-1〜(-1)中的琼脂糖溶解的溶解给出的Cs浓度为2.1×10〜(-8)mol·L〜(-1),即高于在水中的自然环境中发现的(例如[Cs] <1×10〜(-8)mol·L〜(-1)中的Mol·L〜(-1)。已经测试了CS杂质去除的杂质方法,涉及HCl和HCL的酸性清洁通过交换剂树脂(KCUFC)萃取,用HCl以不同浓度的HCl混合,冲洗并干燥。方法表明,HCl清洁方法在比较中除去CS杂质并不相当有效为了未处理的琼脂糖凝胶。“第二种方法”,将KCUFC树脂与琼脂糖粉混合在超纯水中,然后加热,过滤。与未处理的琼脂糖凝胶相比,该方法能够将Cs的量减少99%似乎可以通过去除琼脂糖粉中的预先存在的Cs来实现可接受的CS水平(iewith尊重天然水中的环境Cs浓度)。

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