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Finite Dilution Inverse Gas Chromatography as a Versatile Tool To Determine the Surface Properties of Biofillers for Plastic Composite Applications

机译:有限稀释逆气相色谱法是测定塑料复合材料生物填料表面性能的多功能工具

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摘要

An improved understanding of a filler's surface properties is important for determining the most effective polymer reinforcement fillers. In this work, the surface characteristics of two biofillers, namely, clam shell modified by hydrochloric acid (AMP) and furfural (FMF), were investigated using inverse gas chromatography (IGC). The IGC results showed that the dispersive surface energy (gamma(D)(S)) contributed the major part to the total surface energy for the biofillers. The values changed as a function of surface coverages, meaning that both samples were energetically fairly heterogeneous. The gamma(D)(S) calculated with the Dorris-Gray method was larger than that calculated with the Schultz method, with a gamma(D)(S,Dorris-Gray)/gamma(D)(S,Schultz) ratio of 1.10. Compared to AMF, FMF possessed higher gamma(D)(S) value; however, this difference was compensated by specific (add base) surface energy (gamma(AB)(S)) Both samples predominantly interacted with ethanol and acetonitrile, implying an amphoteric nature of the material surfaces. Gutmann acid and base number profiles indicated that the surfaces of both samples were more basic in nature. The FMF showed a lower total work of cohesion (W-Coh(total)) value compared to the AMF, which could lead to an increase in composite performance.
机译:更好地了解填料的表面性质对于确定最有效的聚合物增强填料非常重要。在这项工作中,使用反相气相色谱法(IGC)研究了两种生物填充剂的表面特性,即用盐酸(AMP)和糠醛(FMF)改性的蛤壳。 IGC结果表明,分散表面能(gamma(D)(S))占生物填充剂总表面能的主要部分。该值随表面覆盖率的变化而变化,这意味着两个样品在能量上都相当不均匀。用Dorris-Gray方法计算的gamma(D)(S)大于用Schultz方法计算的gamma(D)(S),其gamma(D)(S,Dorris-Gray)/ gamma(D)(S,Schultz)之比为1.10。与AMF相比,FMF具有更高的γ(D)(S)值;但是,这种差异被比表面(加碱)表面能(γ(AB)(S))补偿。这两个样品主要与乙醇和乙腈相互作用,这表明材料表面具有两性性质。古特曼酸和碱值曲线表明,两个样品的表面本质上都更碱性。与AMF相比,FMF的总内聚功(W-Coh(total))值较低,这可能导致复合材料性能的提高。

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