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Synthesis and Characterization of Biodegradable Synthetic Thickener from Anionic Triglyceride Polylactic Acid

机译:阴离子甘油三酸酯聚乳酸的合成及可生物降解合成增稠剂的表征

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In this research work, we report the synthesis of novel biodegradable synthetic thickener able to provide good quality prints with reduced wastewater pollution. Biodegradable triglyceride polylactic acid (TGPLA) star polymer hydrogel was prepared via one-pot reaction by direct polycondensation of lactic acid and glycerol. The chemical structure of the produced polymer was determined By Fourier transform infrared spectroscopy (FT-IR), nuclear magnetic resonance spectroscopy (1H-NMR), and gel permeation chromatography (GPC). The rheological properties and biodegradation of the novel thickening agent were investigated. The prints quality of the prepared thickening hydrogels increased with increasing lactic acid content, while the apparent viscosity and biodegradation rate increased. Technical evaluation of TGPLA as environmentally friendly thickening agent in printing of different fabrics was studied. In addition, the chemical oxygen demand (COD) and biological oxygen demand (BOD) were described. The use of such thickening composite in printing such variety of fabrics with pigment and different types of dyes including reactive, acid, metal complex, basic, and disperse dyes was described. It was established that the TGPLA composite paste is characterize by a non-Newtonian pseudoplastic performance, and their apparent viscosity increases upon neutralization. Printing pastes are very stable against storing compared to mypro-gum as natural thickener. Printing pastes thickened with TGPLA containing a ratio of 98% of lactic acid and 2% of glycerol; display similar K/S values and colorfastness properties compared to those prints from commercial synthetic thickeners.
机译:在这项研究工作中,我们报告了新型可生物降解的合成增稠剂的合成,该增稠剂能够提供高质量的印刷品,并减少废水污染。通过一锅反应通过乳酸和甘油的直接缩聚反应制备可生物降解的甘油三酸酯聚乳酸(TGPLA)星形聚合物水凝胶。通过傅立叶变换红外光谱法(FT-IR),核磁共振光谱法(1H-NMR)和凝胶渗透色谱法(GPC)来确定所产生的聚合物的化学结构。研究了新型增稠剂的流变性能和生物降解性。制备的增稠水凝胶的印刷质量随乳酸含量的增加而增加,而表观粘度和生物降解率则增加。研究了TGPLA作为环境友好型增稠剂在不同织物上印花的技术评价。另外,还描述了化学需氧量(COD)和生物需氧量(BOD)。描述了这种增稠复合物在用颜料和不同类型的染料(包括反应性,酸,金属配合物,碱性和分散性染料)印刷这种多种织物中的用途。可以确定的是,TGPLA复合浆料的特征在于非牛顿的假塑性性能,并且它们的表观粘度在中和后会增加。与作为天然增稠剂的mypro-gum相比,印刷浆料在储存方面非常稳定。用TGPLA增稠的印刷浆料,其中乳酸和甘油的比例分别为98%和2%;与商业合成增稠剂印花相比,具有更高的K / S值和色牢度特性。

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