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4.2 Modified starch as potential water-based binder system for interior coatings

机译:4.2改性淀粉作为潜在的水性内墙涂料粘合剂体系

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With its worldwide availability and its low market-price native starch provides the potential for the use as a bio-based material. However, in its native form it is highly hydrophilic, not cold-water dispersible and only forms brittle films. So, our work aimed at the chemical modification of degraded starch for the application in the coating sector as binder, with the focus on paints and varnishes. For this purpose, cold-water dispersible hydrophobized starch esters and ethers with high solid contents (2 30% (w/w)) and viscosities between 100 and 1000 mPa-s should be synthesized. Additionally, they should form continuous films and show adhesion to different substrates. As starting product a degraded potato starch with a molar mass of 1.18- 10~5 g/mol was used and modified by carboxylic acid anhydrides (C_2-C_4) and carboxylic acid vinylestere (Co) in the case of the esters. Epoxy alkane derivatives were used for the synthesis of hydroxyalkyl starch ethers (C_3-C_4, C_5). Beside the type of substituent and the chain length, also the degrees of substitution (DS) and molar substitutions (MS) were varied from 0.05 to 1.1. The modification led to cold water-soluble or dispersible products with applicable concentrations between 30 and 45% (w/w) and viscosities in the range of 10~2-10~3 mPa-s (100 s~(-1)). The most samples had a newtonian flow behaviour and showed viscoelastic properties with higher values for the loss modulus (G"). Continuous films were observed with starch esters in the DS range of 0.11-0.81 and in the case of the starch ethers with MS values of 0.77-0.91. Wet and dry layer thicknesses of 25-50 pm and 7-12 pm were obtained (doctor blade: 100 pm)- In the cross cut test the esters had clearly better results with values of 0 and 1, in contrast to the tested ether with values of 4. The compatibility tests with 3 commercial binders showed that two Acronal binders (A 754 & S 559) (42%) showed compatibility with the modified starches (58%). According our. experiments and especially based on the results of the film formation and the cross cut test the starch esters and not the ethers could be the preferred class for an application in the coating sector. Additionally, the results showed that the starch esters could be an alternative to petroleum-based polymers as binder in paints and varnishes potentially.
机译:凭借其在全球范围内的可用性以及较低的市场价格,天然淀粉提供了用作生物基材料的潜力。但是,其天然形式具有高度亲水性,不能在冷水中分散,仅形成脆性薄膜。因此,我们的工作旨在对降解淀粉进行化学改性,以便将其作为粘合剂用于涂料行业,重点是油漆和清漆。为此,应合成具有高固含量(2 30%(w / w))和粘度在100至1000 mPa-s之间的冷水可分散的淀粉酯和醚。另外,它们应形成连续的膜并显示对不同基材的粘附力。作为起始产物,使用摩尔质量为1.18-10-5g / mol的降解马铃薯淀粉,在酯的情况下,用羧酸酐(C_2-C_4)和羧酸乙烯基酯(Co)进行改性。环氧烷烃衍生物用于合成羟烷基淀粉醚(C_3-C_4,C_5)。除了取代基的类型和链长以外,取代度(DS)和摩尔取代度(MS)也从0.05到1.1不等。改性导致冷水溶性或分散性产品,其适用浓度在30%至45%(w / w)之间,粘度范围为10〜2-10〜3 mPa-s(100 s〜(-1))。多数样品具有牛顿流动特性,并显示出较高的损耗模量(G“)粘弹性。在DS值为0.11-0.81的淀粉酯中观察到连续膜,而在MS值为MS的淀粉醚中观察到连续膜。厚度为0.77-0.91。湿层和干层的厚度分别为25-50 pm和7-12 pm(医生刀片:100 pm)-在横切测试中,酯的结果明显更好,值为0和1与3种市售粘合剂的相容性测试表明,两种Acronal粘合剂(A 754&S 559)(42%)与改性淀粉(58%)具有相容性。根据成膜和交叉切割的结果,淀粉酯而不是醚可能是涂料领域的首选,此外,结果表明淀粉酯可以替代石油基聚合物作为痛苦中的粘合剂可能会涂上清漆。

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