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Formulation of Polyurethane with Bentonite-Chitosan as Filler Applied to Carbon Steel as an Antibacterial and Environmentally Friendly Paint

机译:用膨润土 - 壳聚糖配制聚氨酯,作为填料,含有碳钢作为抗菌和环保涂料

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The coating material used for the manufacture of polyurethane paint with the addition of bentonite into the matrix can improve thermal capability. The purpose of this study is to produce new material namely hybrid bentonite-chitosan which can be used as a filler for the manufacture of polyurethane paint, chitosan intercalation process into bentonite interlayer and increase the concentration of surfactant against the opening of bentonite interlayer. By varying the CEC of cationic surfactants (0.7 CEC, 1 CEC , and 1.3 CEC) and CEC anionic surfactants (0.1 CEC, 0.2 CEC and 0.3 CEC) to obtain the highest basal spacing, structure, and morphology, several characterization procedures have been carried out. From the results of interlayer bentonite analysis with modification of cationic and anionic surfactants using XRD (X-Ray Diffraction) an increase in basal spacing from 14.18393 A to 23,00023 A. While the FTIR (Fourier Transform Infrared) chemical structure of hybrid bentonite-chitosan at a wavelength of 2800 cm-1 shows the C-H group, 1025 cm-1 shows the C-0 group and polyurethane in the-OH absorption (3445 cm-1). This study can produce hybrid bentonite-chitosan material as a filler in the manufacture of polyurethane paint.
机译:用于制造聚氨酯涂料的涂层材料以加入膨润土进入基质可以提高热能。本研究的目的是生产新的材料,即杂交膨润土 - 壳聚糖,其可用作制造聚氨酯涂料,壳聚糖嵌入过程到膨润土中间层中的填料,并增加膨基钛矿中间层的表面活性剂的浓度。通过改变阳离子表面活性剂(0.7cec,1 cec和1.3 cec)和cec阴离子表面活性剂(0.1cec,0.2cec和0.3cec)来获得最高基础间距,结构和形态的CEC,已经进行了几种表征程序出去。从层间膨润土分析使用XRD(X射线衍射)从14.18393 A至23,00023 A.在基面间距的增加虽然FTIR(傅里叶变换红外)混合bentonite-的化学结构的结果与阳离子和阴离子表面活性剂的改性波长为2800cm-1的壳聚糖显示CH组,1025cm-1显示C-0组和OH吸收中的聚氨酯(3445cm-1)。该研究可以在聚氨酯涂料制造中生产杂交膨润土 - 壳聚糖材料作为填料。

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