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Phosphorylation/caproylation of cornstarch to improve its adhesion to PLA and cotton fibers

机译:玉米淀粉的磷酸化/己酰化,以提高其对PLA和棉纤维的附着力

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To investigate the influence of phosphorylation/caproylation on the adhesion of cornstarch to polylactic acid (PLA) and cotton fibers for improving its applications, such as in PLA and cotton sizing, herein, a series of phosphorylated and caproylated cornstarch (PCS) samples with different total degrees of substitution (DS) were synthetized by the phosphorylation of acid-converted cornstarch (ACS) with sodium tripolyphosphate (STP) and subsequent caproylation with caproic anhydride (CA). The PCS granules were characterized by Fourier transform infrared spectroscopy and scanning electron microscopy. The adhesion was evaluated by determining the bonding forces of the impregnated PLA and cotton roving. The results of the adhesion measurements were also analyzed, especially for the wetting and spreading of the pastes on the fiber surfaces as well as the failure type and internal stress of the adhesive layers among the fibers. In addition, the viscosity stabilities of the pastes were determined. The results showed that phosphorylation/caproylation was capable of obviously improving the adhesion of starch to PLA and cotton fibers. As the total DS increased, the bonding forces gradually increased. The two substituents improved the wetting and spreading, reduced the internal stress, lowered the layer brittleness, and decreased the probabilities of interfacial failure and cohesive failure, thereby favoring the improvement of the adhesion. The PCS samples with stabilities above 85% could meet the stability requirement for sizing. Based on the experimental results of the adhesion and the analysis of the results, it can be concluded that PCS shows potential for applications in PLA and cotton sizing.
机译:为了研究磷酸化/己酰化对玉米淀粉对聚乳酸(PLA)和棉纤维的粘附性的影响,以改善其在PLA和棉上浆中的应用,例如,在本文中,一系列磷酸化和己酰化的玉米淀粉(PCS)样品具有不同的通过用三聚磷酸钠(STP)对酸转化的玉米淀粉(ACS)进行磷酸化,然后再用己酸酐(CA)进行己酰基化,合成总取代度(DS)。通过傅立叶变换红外光谱和扫描电子显微镜对PCS颗粒进行表征。通过确定浸渍的PLA和棉纱的粘合力来评估粘合力。还分析了粘附力测量的结果,特别是对于糊状物在纤维表面上的润湿和散布以及纤维之间粘附层的破坏类型和内应力的分析。另外,确定糊剂的粘度稳定性。结果表明,磷酸化/己酰化能够明显提高淀粉对PLA和棉纤维的附着力。随着总DS的增加,结合力逐渐增加。这两个取代基改善了润湿和扩散,降低了内部应力,降低了层的脆性,并降低了界面破坏和内聚破坏的可能性,从而有利于改善粘附性。稳定性高于85%的PCS样品可以满足上浆的稳定性要求。根据附着力的实验结果和结果分析,可以得出结论,PCS在PLA和棉上浆中具有应用潜力。

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