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Transformation Kinetics Of Monohydrocalcite To Aragonite In Aqueous Solutions

机译:水溶液中单氢方解石向文石的转化动力学

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Monohydrocalcite (CaCO_3·H_2O; MHC) is a rare mineral in geological settings. It is metastable with respect to calcite and aragonite. This metastability of MHC is considered to make it a rare mineral in geological settings. Alteration experiments of MHC in aqueous solutions in a closed system were conducted at temperatures between 10 and 50 ℃ in order to measure its metastability quantitatively. In the present study, monohydrocalcite transformed to aragonite with time. There are two rate-limiting steps in the transformation of monohydrocalcite to aragonite: the nucleation and crystal growth of aragonite. On the other hand, the dissolution of monohydrocalcite is a faster process than the nucleation and crystal growth of aragonite. The amounts of aragonite were calculated from the X-ray diffraction (XRD) intensity to evaluate the rate of both the processes at different temperatures. The induction times for the nucleation of aragonite were estimated to be 2.7 ± 0.9×10~3, 5.4 ± 1.8×10~3, 3.2 ± 0.4×10~4, and 7.3 ± 0.4×10~5 s at 50, 40, 25, and 10 ℃, respectively. The conventional rate constants by assuming a zero-order reaction of aragonite crystal growth were estimated to be 1.0 ± 0.3 × 10~(-5), 6.1 ± 0.8×10~(-5), 1.0 ±0.3×10~(-5), and 1.6 ± 0.3×10~(-6) mmol·s~(-1) at 10, 25, 40, and 50 ℃, respectively. From Arrhenius plots, the apparent activation energies were estimated to be 108.1 kJ·mol~(-1) and 80.7 kJ·mol~(-1) for the nucleation and crystal growth steps, respectively.
机译:单氢方解石(CaCO_3·H_2O; MHC)是地质环境中的稀有矿物。它对方解石和文石是亚稳的。 MHC的这种亚稳定性被认为使其在地质环境中成为稀有矿物。为了在密闭系统中的水溶液中进行MHC的改变实验,在10至50℃的温度下进行了该实验,以便定量测量其亚稳态。在本研究中,单氢方解石随时间转变为文石。单氢方解石转化为文石有两个限速步骤:文石的成核和晶体生长。另一方面,单氢方解石的溶解比文石的成核和晶体生长更快。由X射线衍射(XRD)强度计算文石的量,以评估两种方法在不同温度下的速率。在50、40和40 s时,文石成核的诱导时间估计为2.7±0.9×10〜3、5.4±1.8×10〜3、3.2±0.4×10〜4和7.3±0.4×10〜5 s。 25和10℃。假设文石晶体生长发生零级反应,常规速率常数估计为1.0±0.3×10〜(-5),6.1±0.8×10〜(-5),1.0±0.3×10〜(-5) ),在10、25、40和50℃下分别为1.6±0.3×10〜(-6)mmol·s〜(-1)。根据Arrhenius曲线,在成核和晶体生长步骤中,表观活化能估计分别为108.1 kJ·mol〜(-1)和80.7 kJ·mol〜(-1)。

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