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Variation in the Adsorption of Lead(II) by a Range of Electrolytic Manga-nese Dioxides: Chemometric Examination of Correlation with Physical Properties

机译:一系列电解二氧化锰吸附铅(II)的变化:与物理性质相关的化学计量学检验

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The adsorption of lead(II) by a range of 'boutique' electrolytic manganese dioxide (EMD) samples which differ in a range of physical properties has been followed at pH 5, 20°C and an ionic strength of 0.5, employing a wide range of initial lead ion concentrations from 5 x ] 0~s mol/dm-1 to 5 x 10*2 mol/dm3. Adsorption isotherms all fitted quite well to a simple Langmuir adsorption equa-tion. The Langmuir parameters vary significantly for the different samples and good correlations between them and some physical properties (% water content, open circuit voltage and average crystallite size) are apparent. Further, Principal Component Regression (PCR) reveals excellent correlations between the lead(II) adsorption isotherms and some of the physical properties (water content, average crystallite size, density, total pore volume, electric conductivity, porosity, etc), A qualitative understanding of the relationship between the isotherms and the physi-cal properties can be achieved. Adsorption of lead on partially chemically reduced EMD samples falls as the degree of reduction increases, associated with a drop in available hydrolysable surface groups with increasing degree of reduction.
机译:在pH 5、20°C和0.5的离子强度下,采用了一系列物理性质不同的“精品”电解二氧化锰(EMD)样品吸附铅(II)。初始铅离子浓度从5 x] 0〜s mol / dm-1到5 x 10 * 2 mol / dm3。吸附等温线都非常适合简单的Langmuir吸附方程。 Langmuir参数对于不同的样品有很大的不同,并且它们之间的良好相关性与某些物理属性(%含水量,开路电压和平均晶粒尺寸)也很明显。此外,主成分回归(PCR)揭示了铅(II)吸附等温线与某些物理特性(水含量,平均微晶尺寸,密度,总孔容,电导率,孔隙率等)之间的极佳关联,这是定性理解等温线与物理性质之间的关系可以实现。铅在部分化学还原的EMD样品上的吸附随着还原度的增加而下降,这与还原度越高,可用的可水解表面基团的减少有关。

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