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Quantification of the Vulcanizing System of Rubber in Industrial Tire Rubber Production by Laser-Induced Breakdown Spectroscopy (LIBS)

机译:通过激光诱导的击穿光谱法量化工业轮胎橡胶生产中橡胶硫化系统(LIBS)

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摘要

The properties of natural and synthetic rubber critically depend on the concentration of the vulcanizing system, among others. Sulfur and zinc oxide are typically used as cross-linking and activating agents for the vulcanization reaction (0-3 wt %). We present an advanced spectroscopic method to chemically analyze the vulcanizing system in rubber under ambient conditions, and we demonstrate a novel application to measure the elements in-line of industrial rubber production. The laser-induced breakdown spectroscopy (LIBS) technique is optimized to ablate material from the surface of produced rubber sheets and to measure the optical emission of S and Zn from the rubber plasma in air. The sulfur lines in the near-infrared range are masked by molecular emission bands of the C-N radical and spectrally interfered by atomic lines of O. Plasma excitation in collinear double pulse geometry and detection of plasma emission with time-gated detectors suppresses the spectroscopic overlays and enables to resolve the sulfur lines. For the determination of ZnO the weak Zn lines in the ultraviolet range are measured due to their superior intensity stability compared to the much stronger lines in the deeper UV. S and ZnO are quantified in three different rubber materials prepared from the most important polymers used in rubber production. The mean error of prediction of concentrations RMSEP is <= 0.07 wt % for S and <= 0.33 wt % for ZnO for all polymer types. Our results demonstrate that the vulcanizing system of rubber can be quantified under ambient conditions with LIBS. Other chemical elements could be analyzed also and the rubber production could be controlled employing this multielement detection technique as process analytical sensor.
机译:天然和合成橡胶的性质主要取决于硫化系统等的浓度。硫和氧化锌通常用作硫化反应的交联和活化剂(0-3wt%)。我们提出了一种先进的光谱法,在环境条件下将硫化系统化学分析,我们展示了测量工业橡胶生产中的元素的新颖应用。激光诱导的击穿光谱(Libs)技术优化成从生产的橡胶板的表面消融材料,并从空气中测量来自橡胶等离子体的S和Zn的光学发射。近红外范围中的硫系通过CN的分子发射带掩蔽,并通过O. O.由O.的原子线进行光谱干扰。在共线的等离子体激发中的等离子体激发和具有时光检测器的等离子体发射的检测抑制了光谱覆盖物和启用硫化线。对于ZnO的测定,与较深UV中的更强的线相比,由于其优异的强度稳定性,测量紫外线范围中的弱Zn线。 S和ZnO在三种不同的橡胶材料中量化,由橡胶生产中使用的最重要的聚合物制成。对于所有聚合物类型的ZnO的S和<= 0.33wt%的浓度Rmsep预测的平均误差为<= 0.07wt%。我们的结果表明,橡胶硫化系统可以在与LIBS的环境条件下量化。还可以分析其他化学元素,并且可以控制橡胶产生,采用这种多元首检测技术作为过程分析传感器。

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  • 来源
    《Analytical chemistry》 |2019年第8期|共7页
  • 作者单位

    Johannes Kepler Univ Linz Inst Appl Phys Altenberger Str 69 A-4040 Linz Austria;

    KRAIBURG Austria GmbH &

    Co KG Webersdorf 11 A-5132 Geretsberg Austria;

    KRAIBURG Austria GmbH &

    Co KG Webersdorf 11 A-5132 Geretsberg Austria;

    Johannes Kepler Univ Linz Inst Appl Phys Altenberger Str 69 A-4040 Linz Austria;

    Johannes Kepler Univ Linz Inst Appl Phys Altenberger Str 69 A-4040 Linz Austria;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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