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Abiotic degradation of LDPE and LLDPE formulated with a pro-oxidant additive

机译:用抗氧化剂添加剂配制的LDPE和LLDPE的非生物降解

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摘要

This article investigates the influence of a pro-oxidant additive on the accelerated and environmental degradation of linear low density polyethylene (LLDPE) and low density polyethylene (LDPE). Extruded cast films (100 μm) were prepared with various amounts of a pro-oxidant (a so-called "Oxo" additive) (0%, 1% and 2% w/w). The films were subjected to either environmental weathering or air oven aging (60 ℃) tests for 260 days. The chemical and physical changes induced by aging were monitored by: Gel Permeation Chromatography (GPC), Fourier Transform Infrared Spectroscopy (FTIR), Differential Scanning Calorimetry (DSC), Successive Self-nucleation and Annealing (SSA) thermal fractionation and tensile tests. Neat PE samples did not exhibit significant changes during the period evaluated. Crystallinity obtained from standard DSC tests during accelerated degradation exhibited variations due to a combination between annealing and recrystallization after chain scission. For both accelerated and environmental degradation a complete loss of mechanical properties was obtained although at different exposure times. SSA was shown to be the most sensitive technique applied since it evidenced early structural changes during degradation in LLDPE and LDPE that were undetected by GPC, tensile tests (i.e., strain at break) or FTIR at identical exposure times. SSA tests after accelerated degradation revealed that LLDPE linear sequences in between branching points are substantially more affected at longer exposure times than those in LDPE, a result that may imply differences in degradation mechanisms during the later stages of the degradation process.
机译:本文研究了助氧化剂对线性低密度聚乙烯(LLDPE)和低密度聚乙烯(LDPE)的加速降解和环境降解的影响。用各种量的助氧化剂(所谓的“ Oxo”添加剂)(0%,1%和2%w / w)制备挤出的流延膜(100μm)。将该膜经受环境风化或烘箱老化(60℃)测试260天。老化引起的化学和物理变化通过以下方法监测:凝胶渗透色谱(GPC),傅立叶变换红外光谱(FTIR),差示扫描量热法(DSC),连续自成核和退火(SSA)热分级和拉伸试验。整洁的PE样品在评估期间没有显示出明显的变化。通过标准DSC测试在加速降解过程中获得的结晶度由于断链后退火和再结晶之间的结合而表现出差异。对于加速降解和环境降解,尽管暴露时间不同,但机械性能完全丧失。 SSA被证明是应用最灵敏的技术,因为它证明了LLDPE和LDPE降解过程中的早期结构变化,而GPC,拉伸试验(即断裂应变)或FTIR在相同的曝光时间都无法检测到。加速降解后的SSA测试表明,在更长的暴露时间下,分支点之间的LLDPE线性序列比LDPE受到的影响更大,其结果可能暗示在降解过程后期的降解机理有所不同。

著录项

  • 来源
    《Polymer Degradation and Stability》 |2013年第2期|490-501|共12页
  • 作者单位

    Crupo de Polimeros USB, Departamento de Ciencia de los Materiales, Universidad Simon Bolivar, Apartado 89000, Caracas 1080-A, Venezuela;

    Crupo de Polimeros USB, Departamento de Ciencia de los Materiales, Universidad Simon Bolivar, Apartado 89000, Caracas 1080-A, Venezuela;

    Crupo de Polimeros USB, Departamento de Ciencia de los Materiales, Universidad Simon Bolivar, Apartado 89000, Caracas 1080-A, Venezuela;

    Crupo de Polimeros USB, Departamento de Ciencia de los Materiales, Universidad Simon Bolivar, Apartado 89000, Caracas 1080-A, Venezuela;

    Departamento de Materiales Avanzados, Centra de Investigation en Quimica Aplicada, Blvd. Enrique Reyna 140, Saltillo 25253, Coah., Mexico;

    Departamento de Sintesis de Polimeros, Centro de Investigation en Quimica Aplicada, Blvd. Enrique Reyna 140, Saltillo 25253, Coah., Mexico;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    polyethylene; oxo-additive; SSA; induction time; degradation;

    机译:聚乙烯含氧添加剂SSA;诱导时间;降解;

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