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通过化学计量共滴定法探究聚合物对碳酸钙形成早期阶段的影响。

Probing the effects of polymers on the early stages of calcium carbonate formation by stoichiometric co-titration.

作者信息

Schodder Philipp I, Gindele Maxim B, Ott Andreas, Rückel Markus, Ettl Roland, Boyko Volodymyr, Kellermeier Matthias

机构信息

Material Physics, BASF SE, Carl-Bosch-Strasse 38, D-67056 Ludwigshafen, Germany.

Department of Materials Science and Engineering, Institute of Glass and Ceramics, Friedrich-Alexander-University of Erlangen-Nuremberg (FAU), Martensstrasse 5, D-91058 Erlangen, Germany.

出版信息

Phys Chem Chem Phys. 2022 May 4;24(17):9978-9989. doi: 10.1039/d1cp05606a.

Abstract

Potentiometric titrations are a powerful tool to study the early stages of the precipitation of minerals such as calcium carbonate and were used among others for the discovery and characterisation of key precursors like prenucleation clusters. Here we present a modified procedure for conducting such titration experiments, in which the reactants ( calcium and (bi)carbonate ions) are added simultaneously in stoichiometric amounts, while both the amount of free calcium and the optical transmission of the solution are monitored online. Complementarily, the species occurring at distinct stages of the crystallisation process were studied using cryogenic transmission electron microscopy. This novel routine was applied to investigate CaCO nucleation in the absence and presence of polymeric additives with different chemical functionalities. The obtained results provide new insights into the critical steps underlying nucleation and subsequent ripening, such as the role of liquid mineral-rich phases and their transformation into solid particles. The studied polymers proved to interfere at multiple stages along the complex mineralisation pathway of calcium carbonate, with both the degree and mode of interaction depending on the chosen polymer chemistry. In this way, the methodology developed in this work allows the mechanisms of antiscalants - or crystallisation modifiers in general - to be elucidated at an advanced level of detail.

摘要

电位滴定法是研究碳酸钙等矿物质沉淀早期阶段的有力工具,曾被用于发现和表征诸如预成核簇等关键前驱体。在此,我们展示了一种进行此类滴定实验的改进方法,即按化学计量比同时加入反应物(钙离子和碳酸氢根离子),同时在线监测游离钙离子的量和溶液的透光率。作为补充,使用低温透射电子显微镜研究了结晶过程不同阶段出现的物种。这种新方法被用于研究在有无具有不同化学功能的聚合物添加剂的情况下碳酸钙的成核过程。所得结果为成核及后续熟化的关键步骤提供了新见解,比如富含矿物质的液相的作用及其向固体颗粒的转变。研究证明,所研究的聚合物在碳酸钙复杂矿化途径的多个阶段产生干扰,相互作用的程度和方式均取决于所选聚合物的化学性质。通过这种方式,本工作中开发的方法能够在更精细的层面阐明阻垢剂——或一般的结晶改性剂——的作用机制。

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