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硬石膏作为石膏沉淀稳定前体相的作用和意义。

The role and implications of bassanite as a stable precursor phase to gypsum precipitation.

机构信息

Laboratorio de Estudios Cristalográficos, Instituto Andaluz de Ciencias de la Tierra, Consejo Superior de Investigaciones Cientificas-Universidad de Granada, Av. de las Palmeras 4, 18100 Granada, Spain.

出版信息

Science. 2012 Apr 6;336(6077):69-72. doi: 10.1126/science.1215648.

Abstract

Calcium sulfate minerals such as gypsum play important roles in natural and industrial processes, but their precipitation mechanisms remain largely unexplored. We used time-resolved sample quenching and high-resolution microscopy to demonstrate that gypsum forms via a three-stage process: (i) homogeneous precipitation of nanocrystalline hemihydrate bassanite below its predicted solubility, (ii) self-assembly of bassanite into elongated aggregates co-oriented along their c axis, and (iii) transformation into dihydrate gypsum. These findings indicate that a stable nanocrystalline precursor phase can form below its bulk solubility and that in the CaSO(4) system, the self-assembly of nanoparticles plays a crucial role. Understanding why bassanite forms prior to gypsum can lead to more efficient anti-scaling strategies for water desalination and may help to explain the persistence of CaSO(4) phases in regions of low water activity on Mars.

摘要

硫酸钙矿物(如石膏)在自然和工业过程中起着重要作用,但它们的沉淀机制在很大程度上仍未被探索。我们使用时间分辨的样品淬火和高分辨率显微镜来证明石膏是通过三个阶段形成的:(i)半水石膏在其预测的溶解度以下的均匀沉淀;(ii)半水石膏自组装成长的沿其 c 轴共取向的聚集体;(iii)向二水石膏的转化。这些发现表明,在其体相溶解度以下可以形成稳定的纳米晶前体相,并且在 CaSO(4)体系中,纳米颗粒的自组装起着关键作用。了解为什么半水石膏先于石膏形成,可以为海水淡化的防垢策略提供更有效的方法,并且可能有助于解释火星低水活度地区 CaSO(4)相的持久性。

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