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首页> 外文期刊>Regulatory Toxicology and Pharmacology: RTP >Reduction of the biological potential of chrysotile asbestos arising from conditions of service on brake pads.
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Reduction of the biological potential of chrysotile asbestos arising from conditions of service on brake pads.

机译:降低了在刹车片上的使用条件所引起的温石棉生物潜力。

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摘要

Data exist that show that chrysotile asbestos does not retain its mineral properties, or biological activity, at temperatures far below the olivine transformation point. Temperatures hundreds of degrees below this point cause the mineral to lose structural water with accompanying crystal structure degradation. The loss of structure is accompanied by modification of its surface and reduction or loss of biological activity. Using heating studies and milling as an approximation of thermal and mechanical shear stress that chrysotile is subjected to on a brake lining, biological blunting is shown to begin much earlier than the olivine transformation process. Minimal degradation of the chrysotile surface structure imparts a disproportionately great effect on its biological activity. Biological and epidemiological data for brake workers exposed to chrysotile asbestos should be viewed in context with the conditions of service to which the product was subjected over a lower range of temperatures than previouslyconsidered important.
机译:存在的数据表明,温石棉在远低于橄榄石转变点的温度下不会保留其矿物特性或生物活性。低于此点几百度的温度使矿物失去结构水,伴随晶体结构退化。结构的丧失伴随着其表面的修饰以及生物活性的降低或丧失。使用加热研究和研磨作为温石棉在制动衬片上受到的热和机械剪切应力的近似值,表明生物钝化比橄榄石转化过程早得多。温石棉表面结构的最小降解对其生物活性产生不成比例的巨大影响。接触温石棉石棉的制动工人的生物学和流行病学数据应结合产品在比以前认为重要的温度更低的温度范围内使用的服务条件来查看。

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