CaCO3–Polymer Nanocomposite Prepared with Supercritical CO2

H. Wakayama
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引用次数: 2

Abstract

A novel process for generation of a CaCO3–polymer nanocomposite with a controlled three-dimensional shape was developed. Specifically, a nanocomposite with a high CaCO3 content was produced by introducing supercritical CO2 into a polymer matrix containing Ca ions. A mixture of poly(vinyl alcohol), Ca acetate, and poly(acrylic acid) was poured into a mold, the mold was placed in an autoclave, and CO2 was introduced to precipitate CaCO3 within the polymer matrix. Laser Raman spectroscopy and transmission electron microscopy showed that this process produced a nanocomposite containing highly dispersed CaCO3 (aragonite) nanoparticles. The flexural strength of the nanocomposite was larger than the flexural strengths of limestone and CaCO3 produced by hydrothermal hot pressing. The use of supercritical CO2 facilitated CO2 dissolution, which resulted in rapid precipitation of CaCO3 in the polymer matrix. The above-described process has potential utility for fixation of CO2.
超临界CO2制备caco3 -聚合物纳米复合材料
提出了一种制备三维形状可控的caco3 -聚合物纳米复合材料的新工艺。具体来说,通过将超临界CO2引入到含有Ca离子的聚合物基体中,制备了具有高CaCO3含量的纳米复合材料。将聚乙烯醇、醋酸钙和聚丙烯酸的混合物倒入模具中,将模具置于高压灭菌器中,并引入二氧化碳使CaCO3在聚合物基体中沉淀。激光拉曼光谱和透射电子显微镜显示,该工艺制备了含有高度分散的CaCO3(文石)纳米颗粒的纳米复合材料。纳米复合材料的抗弯强度大于水热压制法制备的石灰石和碳酸钙的抗弯强度。超临界CO2的使用促进了CO2的溶解,导致CaCO3在聚合物基体中的快速沉淀。上述工艺对CO2的固定具有潜在的效用。
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