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Long-Term Dissolution of Glass Fibers in Water Described by Dissolving Cylinder Zero-Order Kinetic Model: Mass Loss and Radius Reduction

机译:通过溶解汽缸零级动力学模型描述的水中玻璃纤维的长期溶解:质量损失和半径

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摘要

Glass fibers are degraded when they are exposed to water. In this work, a model is developed that uses zero-order kinetics for predicting a decreasing glass fiber radius. The model is used to describe experimental test results of almost half a year long-term dissolution of R-glass fibers. The model is able to predict both mass loss and radius reduction kinetics using the same four parameters: initial fiber radius (r0), rate constants for both short-term degradation K0I$left( K_{0}^{I} ight)$and steady-state degradation K0II$left( K_{0}^{II} ight)$and the time when steady-state kinetics are reached (tst). All parameters can be easily determined from initial radius measurements and mass loss evolution in time. Elements released and detected during degradation were Na, K, Ca, Mg, Fe, Al, Si and Cl. Rate constants were obtained for individual ion release and for the total mass loss. The contribution of Si to the total mass loss was the largest (56.1% by mass). It governed the dissolution process. The kinetics of radius reduction are also reported. The radius reduction was found to be linear with time during the steady-state dissolution. The zero-order kinetic constant and the density of the glass describe the rate (proportionality) of the dissolution.
机译:玻璃纤维被降解当它们暴露于水。在这项工作中,一个模型开发了用于预测减小玻璃纤维半径用途零级动力学。该模型被用于描述R-玻璃纤维的几乎一半一年长期溶解试验的试验结果。该模型能够使用相同的四个参数来预测二者的质量损失和半径还原动力学:初始纤维半径(R 0),速率常数为短期降解K0I $ 左(K_ {0} ^ {I} 右) $和稳态降解K0II $ 左(K_ {0} ^ {II} 右)$当稳态动力学达到(TST)的时间。所有参数可以从初始半径测量和时间质量损失的演变很容易确定。降解过程中释放,并且检测出的元素是钠,钾,钙,镁,铁,铝,硅和Cl。单个离子的释放和总质量损失,获得速率常数。硅的总质量损失的贡献是最大的(56.1质量%)。它管辖的溶解过程。也报道半径减少的动力学。半径减少发现稳态溶解期间为与时间呈线性关系。零级动力学常数和玻璃的密度描述了溶解速率(比例)。

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