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Effect of chemical composition of man-made vitreous fibers on the rate of dissolution in vitro at different pHs.

机译:在不同pH下人造玻璃纤维的化学组成对体外溶出速率的影响。

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摘要

Measurements of rates of dissolution of typical insulation wool fibers (glasswool and basalt based stonewool) and an experimental fiber were made using a flow-through equipment. The liquids used were a modified Gamble's solution, adjusted to pH 4.8 and 7.7 +/- 0.2, respectively. The dissolution of SiO2 and CaO was determined over periods of up to three months. The rate of dissolution of stonewool fibers was lower than that of glasswool fibers at pH 7.7, whereas the opposite was true at pH 4.8. The stonewool fibers dissolve congruently, but glasswool fibers tend to dissolve with leaching. The rates of dissolution of fibers of different compositions, including insulation wool (glasswool, basalt-based stonewool, slagwool) and experimental fibers were screened using a stationary set-up. Both the chemical composition and pH influenced the rates of dissolution. At pH 7.7 alumina was a determining component and at pH 4.8 the content of SiO2 and CaO was determinant. One experimental fiber with a high content of alumina was an exception having a fairly high rate of dissolution both at pH 4.8 and 7.7.
机译:使用流通设备对典型绝缘棉纤维(玻璃棉和玄武岩基石棉)和实验纤维的溶解速率进行了测量。使用的液体是改良的Gamble溶液,分别调节至pH 4.8和7.7 +/- 0.2。在长达三个月的时间内确定了SiO2和CaO的溶解度。在pH 7.7下石棉纤维的溶解速率低于玻璃棉纤维,而在pH 4.8上则相反。石棉纤维会完全溶解,但玻璃棉纤维会随着浸出而溶解。使用固定装置筛选不同成分的纤维(包括绝缘棉(玻璃棉,玄武岩基石棉,矿渣棉)和实验纤维)的溶解速率。化学成分和pH值都影响溶解速率。在pH 7.7时,氧化铝是决定性的成分,在pH 4.8时,SiO2和CaO的含量是决定因素。一种具有高含量氧化铝的实验纤维是一个例外,在pH 4.8和7.7时都具有相当高的溶解速率。

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