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Morphological Structure of Pretreated Organo Layer Silicate Dispersion in Masterbatch Biodegradable Polymer Cassava Starch Clay Nanocomposite

机译:母卵生物降解性聚合物木薯淀粉粘土复合材料预处理有机硅酸盐分散体的形态学结构

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Biodegradable polymer using inexpensive renewable resources such as starch produced poor mechanical, barrier properties and transparency of product, these properties were the important parameter for packaging material. This research intended to study the effect of glycerol monostearate (GMS) treated organo layer silicate (OLS) in biodegradable polymer starch masterbatch to eliminate the inferior properties. Focus was in morphological structure of biodegradable polymer starch clay nanocomposite. Biodegradable polymer starch clay nanocomposite was prepared using Haake Rheomix Polydrive at a temperature of 100°C for 5 minutes and screw speed 60 rpm and the product was used as masterbatch to get a better dispersion of OLS in the matrix. Masterbatch was formulated with the parameter of 35%, 45% and 50% starch and 3.5% of OLS. Morphological structure of biodegradable polymer starch clay nanocomposite was characterized using Scanning Electron Microscope (SEM), Atomic Force Microscope (AFM) and X-Ray Diffraction (XRD) to observe the dispersion and compatibility of the organo layer silicate in biodegradable nanocomposite matrix. XRD analysis provided the dispersion of organo layer silicate at 35% starch was better than 45% starch and 50% starch in materbatch. This was consistent with the SEM and AFM result, masterbatch containing 50% starch had interfere the OLS dispersion and produced agglomeration of organo layer silicate. SEM images of masterbatch with 50% loading level of starch shown structure that starch not completely thermoplasticized.
机译:可生物降解的聚合物,使用廉价的可再生资源,如淀粉产生差的机械,阻隔性和产品透明度,这些性质是包装材料的重要参数。该研究旨在研究甘油单硬脂酸酯(GMS)处理有机层硅酸盐(OLS)在可生物降解的聚合物淀粉母料中的作用,以消除劣质性质。重点是生物降解聚合物淀粉粘土纳米复合材料的形态学结构。使用Haake rheomix Polydrive在100℃的温度下使用Haake Rheomix Polydrive来制备可生物降解的聚合物淀粉粘土纳米复合材料5分钟,螺杆速度60rpm,并将产物用作母料,以在基质中更好地分散OL。母料被配制,参数为35%,45%和50%淀粉和3.5%的OLS。使用扫描电子显微镜(SEM),原子力显微镜(AFM)和X射线衍射(XRD)表征可生物降解聚合物淀粉粘土纳米复合材料的形态学结构,观察可生物降解的纳米复合材料中有机层硅酸盐的分散和相容性。 XRD分析提供了有机层硅酸盐在35%淀粉的分散优于45%的淀粉和25%淀粉在物料中。这与SEM和AFM结果一致,含有50%淀粉的母料干扰OLS分散体并产生有机层硅酸盐的聚集。母料的SEM图像具有50%装载水平的淀粉,所示结构淀粉不完全热塑化。

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