Experimental study on reaction of chlorite with CO<sub>2</sub> aqueous solution
Abstrak
During the reaction between CO<sub>2</sub> and rocks, there is a synergistic/coupling effect among minerals because the rocks contain quartz, potassium feldspar, albite and other components, which promotes or inhibits the reaction process to a certain extent. The chlorite is an important clay mineral of sedimentary rocks. In order to clarify the chemical behavior and change process of the chlorite in the CO<sub>2</sub> aqueous solution, the state of chlorite reacting with CO<sub>2</sub> respectively for 7 and 30 days at 10 MPa and 60 ℃ are systematically evaluated by means of XRD(X-Ray Diffraction), XRF(X-Ray Fluorescence), ICP(Inductively Coupled Plasma), and SEM(Scanning Electron Microscopy), focusing on the comparison of the change of the solid elements, the crystal structure and the ion concentration in the reaction solution before and after chlorite powder reaction. Combined with the structural characteristics of chlorite, the mechanism of chlorite change is clarified. The results show that the concentrations of Ca<sup>2+</sup>, Mg<sup>2+</sup> and Al<sup>3+</sup> in the liquid phase firstly increase and then decrease after the reaction of the chlorite with CO<sub>2</sub>. The concentration of Si<sup>4+</sup> firstly increases and then is stabilized. The crystal planes corresponding to chlorite d(002) and d (004) peaks in the solid phase are destroyed after the reaction, and the mass ratio of Si and Al in the solid element increase from 4.82 to 5.39. Under the acidic conditions, hydroxyl groups in brucite flakes are easier to combine with H<sup>+</sup> and release cations such as Fe<sup>2+</sup>, Mg<sup>2+</sup>, Al<sup>3+</sup>, etc. Because the brucite octahedron is more prone to ion exchange than silica tetrahedron and alumina octahedron, Mg, Al, Fe and other elements in brucite flakes are dissolved before Si and Al in silica tetrahedron and alumina octahedron.
Topik & Kata Kunci
Penulis (6)
DENG Jiasheng
WANG Ziyi
HE Wangda
PENG Dongyu
YU Bo
TANG Hongming
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- 2022
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