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Enhancing performance of paper coatings by tailor-made plastic pigments

机译:量身定制的塑料颜料可增强纸张涂料的性能

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摘要

The paper industry is constantly looking for new ideas for improving paper products while competition and raw material prices are increasing. Many paper products are pigment coated. Coating layer is the top layer of paper, thus by modifying coating pigment also the paper itself can be altered and value added to the final product.In this thesis, synthesis of new plastic and hybrid pigments and their performance in paper and paperboard coating is reported. Two types of plastic pigments were studied: core-shell latexes and solid beads of maleimide copolymers. Core-shell latexes with partially crosslinked hydrophilic polymer core of poly(n-butyl acrylate-co-methacrylic acid) and a hard hydrophobic polystyrene shell were prepared to improve the optical properties of coated paper. In addition, the effect of different crosslinkers was analyzed and the best overall performance was achieved by the use of ethylene glycol dimethacrylate (EGDMA). Furthermore, the possibility to modify core-shell latex was investigated by introducing a new polymerizable optical brightening agent, 1-[(4-vinylphenoxy)methyl]-4-(2-henylethylenyl)benzene which gave promising results. The prepared core-shell latex pigments performed smoothly also in pilot coating and printing trials. The results demonstrated that by optimizing polymer composition, the optical and surface properties of coated paper can be significantly enhanced.The optimal reaction conditions were established for thermal imidization of poly(styrene-co-maleimide) (SMI) and poly(octadecene-co-maleimide) (OMI) from respective maleic anhydride copolymer precursors and ammonia in a solvent free process. The obtained aqueous dispersions of nanoparticle copolymers exhibited glass transition temperatures (Tg) between 140-170ºC and particle sizes from 50-230 nm. Furthermore, the maleimide copolymers were evaluated in paperboard coating as additional pigments. The maleimide copolymer nanoparticles were partly imbedded into the porous coating structure and therefore the full potential of optical property enhancement for paperboard was not achieved by this method. The possibility to modify maleimide copolymers was also studied. Modifications were carried out via N-substitution by replacing part of the ammonia in the imidization reaction with amines, such as triacetonediamine (TAD), aspartic acid (ASP) and fluorinated amines (2,2,2- trifluoroethylamine, TFEA and 2,2,3,3,4,4,4-heptafluorobuthylamine, HFBA). The obtained functional nanoparticles varied in size between 50-217 nm and their Tg from 150-180ºC. During the coating process the produced plastic pigments exhibited good runnability. No significant improvements were achieved in light stability with TAD modified copolymers whereas nanoparticles modified with aspartic acid and those containing fluorinated groups showed the desired changes in surface properties of the coated paperboard.Finally, reports on preliminary studies with organic-inorganic hybrids are presented. The hybrids prepared by an in situ polymerization reaction consisted of 30 wt% poly(styrene- co-maleimide) (SMI) and high levels of 70 wt% inorganic components of kaolin and/or alumina trihydrate. Scanning Electron Microscopy (SEM) images and characterization by Fourier Transform Infrared Spcetroscopy (FTIR) and X-Ray Diffraction (XRD) revealed that the hybrids had conventional composite structure and inorganic components were covered with precipitated SMI nanoparticles attached to the surface via hydrogen bonding. In paper coating, the hybrids had a beneficial effect onincreasing gloss levels.
机译:在竞争和原材料价格不断上涨的情况下,造纸行业一直在寻找改善纸产品的新思路。许多纸产品都涂有颜料。涂料层是纸张的顶层,因此可以通过改变涂料颜料来改变纸张本身,并增加最终产品的价值。本文报道了新型塑料和混合颜料的合成及其在纸张和纸板涂料中的性能。 。研究了两种类型的塑料颜料:核-壳乳胶和马来酰亚胺共聚物的固体珠粒。制备了具有部分交联的聚(丙烯酸正丁酯-共-甲基丙烯酸)亲水性聚合物核和硬质疏水聚苯乙烯壳的核-壳胶乳,以改善涂布纸的光学性能。此外,分析了不同交联剂的作用,并通过使用乙二醇二甲基丙烯酸酯(EGDMA)获得了最佳的总体性能。此外,通过引入一种新的可聚合的荧光增白剂1-[((4-乙烯基苯氧基)甲基] -4-(2-苯乙炔基)苯,研究了改性核-壳胶乳的可能性,该结果令人鼓舞。制备的核-壳乳胶颜料在中试涂布和印刷试验中也表现良好。结果表明,通过优化聚合物组成,可以显着提高铜版纸的光学性能和表面性能,为聚苯乙烯-顺丁烯二酰亚胺(SMI)和聚十八烯-丙交酯的热酰亚胺化建立了最佳反应条件。不含马来酸酐共聚物前体和氨的马来酰亚胺(OMI)。所得的纳米颗粒共聚物的水分散体显示出140-170℃之间的玻璃化转变温度(Tg)和50-230nm的粒度。此外,马来酰亚胺共聚物在纸板涂料中作为附加颜料进行了评估。马来酰亚胺共聚物纳米颗粒部分地嵌入多孔涂层结构中,因此该方法不能充分发挥增强纸板光学性能的潜力。还研究了改性马来酰亚胺共聚物的可能性。通过N取代进行修饰,方法是在胺化反应中将部分氨置换为胺,例如三丙酮二胺(TAD),天冬氨酸(ASP)和氟化胺(2,2,2-三氟乙胺,TFEA和2,2 ,3,3,4,4,4-七氟丁胺,HFBA)。所获得的功能纳米颗粒的尺寸在50-217 nm之间,Tg在150-180ºC之间变化。在涂布过程中,所生产的塑料颜料表现出良好的流动性。 TAD改性共聚物的光稳定性没有明显改善,而用天冬氨酸和含氟基团改性的纳米粒子显示了涂布纸板表面性能的理想变化。最后,提出了有机-无机杂化材料的初步研究报告。通过原位聚合反应制备的杂化物由30重量%的聚(苯乙烯-共马来酰亚胺)(SMI)和高含量的70重量%的高岭土和/或三水合氧化铝的无机组分组成。扫描电子显微镜(SEM)图像并通过傅立叶变换红外光谱(FTIR)和X射线衍射(XRD)进行表征,结果表明该杂化物具有常规的复合结构,并且无机成分被沉淀的SMI纳米粒子覆盖,该粒子通过氢键附着在表面。在纸张涂料中,杂化材料对提高光泽度具有有益的作用。

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    Ahokas Mia;

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  • 年度 2011
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