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Methods currently used in testing microbiological degradation and deterioration of a wide range of polymeric materials with various degree of degradability: A review

机译:目前用于测试微生物降解和各种可降解程度的聚合物材料的劣化的方法:综述

摘要

Biodegradation of polymeric materials affect a wide range of industries, information on degradability can provide fundamental information facilitating design and life-time analysis of materials. Among the methods currently used in testing, traditional gravimetric and respirometric techniques are tailored to readily degradable polymeric materials mostly and polymer blends with biodegradable components, but they are not applicable to the new generation of engineering polymers which are relatively resistant to biodegradation. However, electrochemical impedance spectroscopy (EIS) has been tested for monitoring biodeterioration of high strength materials and the technique has very high sensitivity. A wide range of materials including electronic insulation polyimides, fiber-reinforced polymeric composites (FRPC's) and corrosion protective polyurethane coatings have been successfully measured under inoculation of degradative microorganisms using EIS. In addition, the mechanism of degradation of high strength polymers is mainly due to the presence of plasticizers in the polymer matrices. The information on various methods discussed in this review is intended to illustrate a suite of methods for those who are interested in testing biodeterioration of polymeric materials under different environmental conditions and in selecting appropriate techniques for specific applications.
机译:聚合物材料的生物降解影响广泛的行业,有关可降解性的信息可以提供基本信息,从而有助于材料的设计和寿命分析。在当前用于测试的方法中,传统的重量分析法和呼吸测定法主要适用于易于降解的聚合物材料以及具有可生物降解成分的聚合物共混物,但不适用于新一代具有相对抗生物降解性的工程聚合物。但是,已经测试了电化学阻抗谱(EIS)来监测高强度材料的生物降解,并且该技术具有很高的灵敏度。在使用EIS接种降解性微生物的条件下,已经成功地测量了多种材料,包括电子绝缘聚酰亚胺,纤维增强的聚合物复合材料(FRPC)和防腐蚀聚氨酯涂料。另外,高强度聚合物降解的机理主要是由于聚合物基质中存在增塑剂。本综述中讨论的各种方法的信息旨在为有兴趣在不同环境条件下测试聚合物材料的生物降解并为特定应用选择适当技术的人员提供一套方法。

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    Gu JG; Gu JD;

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  • 年度 2005
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