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Early Combination of Material Characteristics and Toxicology Is Useful in the Design of Low Toxicity Carbon Nanofiber

机译:材料特性和毒理学的早期组合可用于低毒性碳纳米纤维的设计

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摘要

This paper describes an approach for the early combination of material characterization and toxicology testing in order to design carbon nanofiber (CNF) with low toxicity. The aim was to investigate how the adjustment of production parameters and purification procedures can result in a CNF product with low toxicity. Different CNF batches from a pilot plant were characterized with respect to physical properties (chemical composition, specific surface area, morphology, surface chemistry) as well as toxicity by in vitro and in vivo tests. A description of a test battery for both material characterization and toxicity is given. The results illustrate how the adjustment of production parameters and purification, thermal treatment in particular, influence the material characterization as well as the outcome of the toxic tests. The combination of the tests early during product development is a useful and efficient approach when aiming at designing CNF with low toxicity. Early quality and safety characterization, preferably in an iterative process, is expected to be efficient and promising for this purpose. The toxicity tests applied are preliminary tests of low cost and rapid execution. For further studies, effects such as lung inflammation, fibrosis and respiratory cancer are recommended for the more in-depth studies of the mature CNF product.
机译:本文介绍了一种早期组合材料表征和毒理学测试的方法,以设计低毒性的碳纳米纤维(CNF)。目的是研究生产参数和纯化程序的调整如何产生低毒性的CNF产品。通过体外和体内试验,对中试工厂中不同批次的CNF进行了物理特性(化学成分,比表面积,形态,表面化学)以及毒性方面的表征。给出了用于材​​料表征和毒性的测试电池的描述。结果表明,生产参数的调整和提纯(尤其是热处理)如何影响材料的表征以及毒性测试的结果。在设计低毒性CNF时,在产品开发过程中早期进行测试组合是一种有用且有效的方法。早期的质量和安全性表征,最好是在迭代过程中,有望达到高效且有希望的目的。应用的毒性测试是低成本和快速执行的初步测试。为了进行进一步的研究,建议对成熟的CNF产品进行更深入的研究,如肺部炎症,纤维化和呼吸道癌。

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