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玻璃棉、岩棉和碱土硅酸盐棉的溶解:纤维的形态和化学变化

Dissolution of glass wool, rock wool and alkaline earth silicate wool: morphological and chemical changes in fibers.

作者信息

Campopiano Antonella, Cannizzaro Annapaola, Angelosanto Federica, Astolfi Maria Luisa, Ramires Deborah, Olori Angelo, Canepari Silvia, Iavicoli Sergio

机构信息

Italian Workers' Compensation Authority, Research Area, Department of Occupational Hygiene, Rome, Italy.

Italian Workers' Compensation Authority, Research Area, Department of Occupational Hygiene, Rome, Italy.

出版信息

Regul Toxicol Pharmacol. 2014 Oct;70(1):393-406. doi: 10.1016/j.yrtph.2014.05.023. Epub 2014 Jun 5.

DOI:10.1016/j.yrtph.2014.05.023
PMID:24910419
Abstract

The behavior of alkaline earth silicate (AES) wool and of other biosoluble wools in saline solution simulating physiological fluids was compared with that of a traditional wool belonging to synthetic vitreous fibers. Morphological and size changes of fibers were studied by scanning electron microscopy (SEM). The elements extracted from fibers were analyzed by inductively coupled plasma atomic emission spectrometry. SEM analysis showed a larger reduction of length-weighted geometric mean fiber diameter at 4.5 pH than at 7.4 pH. At the 7.4 pH, AES wool showed a higher dissolution rate and a dissolution time less than a few days. Their dissolution was highly non-congruent with rapid leaching of calcium. Unlike rock wool, glass wool dissolved more rapidly at physiological pH than at acid pH. Dissolution of AES and biosoluble rock wool is accompanied by a noticeable change in morphology while by no change for glass wool. Biosoluble rock wool developed a leached surface with porous honeycomb structure. SEM analysis showed the dissolution for glass wool is mainly due to breakage transverse of fiber at pH 7.4. AES dissolution constant (Kdis) was the highest at pH 7.4, while at pH 4.5 only biosoluble rockwool 1 showed a higher Kdis.

摘要

将碱土金属硅酸盐(AES)羊毛及其他生物可溶羊毛在模拟生理流体的盐溶液中的行为,与一种属于合成玻璃纤维的传统羊毛的行为进行了比较。通过扫描电子显微镜(SEM)研究了纤维的形态和尺寸变化。采用电感耦合等离子体原子发射光谱法分析了从纤维中提取的元素。SEM分析表明,在pH值为4.5时,长度加权几何平均纤维直径的减小幅度大于pH值为7.4时。在pH值为7.4时,AES羊毛显示出更高的溶解速率,溶解时间不到几天。它们的溶解与钙的快速浸出高度不一致。与岩棉不同,玻璃棉在生理pH值下的溶解速度比在酸性pH值下更快。AES和生物可溶岩棉的溶解伴随着形态的明显变化,而玻璃棉则没有变化。生物可溶岩棉形成了具有多孔蜂窝结构的浸出表面。SEM分析表明,玻璃棉在pH值为7.4时的溶解主要是由于纤维的横向断裂。AES的溶解常数(Kdis)在pH值为7.4时最高,而在pH值为4.5时,只有生物可溶岩棉1显示出更高的Kdis。

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