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采用改良的固有生物降解法,在环境相关浓度下测定抗氧化剂二芳基对苯二胺的生物降解性。

Biodegradability of the antioxidant diaryl-p-phenylene diamine using a modified inherent biodegradation method at an environmentally relevant concentration.

机构信息

The Goodyear Tire & Rubber Company, 1485E Archwood Avenue, Akron, OH 44306, USA.

出版信息

Chemosphere. 2013 Oct;93(6):1023-8. doi: 10.1016/j.chemosphere.2013.05.072. Epub 2013 Jun 24.

Abstract

The chemical product diaryl-p-phenylene diamine (DAPD), produced by The Goodyear Tire & Rubber Company as POLYSTAY 100 (CAS 68953-84-4), is employed as an antidegradant in polymers used in tires and industrial rubber products. Previous evaluations pertaining to the ecological fate of DAPD indicated a lack of biodegradative activity in aquatic media. In order to further pursue the biodegradation potential of DAPD, it was deemed necessary to enhance the sensitivity of the aquatic biodegradation assay through (a) employment of a radiotracer of the test substance, and (b) optimisation of conditions for achieving maximal solubilisation of test material in the aquatic media of the incubation vessels. Test vessels were prepared according to the OECD ready biodegradability test guidelines, with DAPD added on silica gel at concentrations of 10 or 100 μg L(-1), together with a surfactant to aid solubilisation. After 63 d incubation up to 37% mineralisation was measured and up to 29% of the applied radioactivity was incorporated into cell biomass. Also, after 28 d no DAPD could be measured in solution by radio-TLC and HPLC-MS. These three results demonstrate that the antioxidant DAPD undergoes microbiologically mediated biodegradation and is highly unlikely to persist in the environment.

摘要

化学制品二芳基对苯二胺(DAPD)由固特异轮胎橡胶公司生产,商品名为 POLYSTAY 100(CAS 68953-84-4),作为抗降解剂用于轮胎和工业橡胶制品的聚合物中。先前对 DAPD 生态命运的评估表明,其在水介质中缺乏生物降解活性。为了进一步研究 DAPD 的生物降解潜力,有必要通过(a)使用测试物质的放射性示踪剂,以及(b)优化在孵育容器的水介质中实现测试物质最大溶解的条件,来提高水生物降解测定的灵敏度。根据 OECD 易生物降解性测试指南,按照测试方法准备测试容器,将 DAPD 添加到硅胶上,浓度为 10 或 100μg/L,并添加表面活性剂以助于溶解。在 63d 的孵育期内,测量到高达 37%的矿化度,高达 29%的应用放射性被纳入细胞生物量。此外,在 28d 时,通过放射性 TLC 和 HPLC-MS 无法在溶液中测量到 DAPD。这三个结果表明,抗氧化剂 DAPD 经历了微生物介导的生物降解,极不可能在环境中持久存在。

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