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Carboxymethyl lignin as stabilizing agent in aqueous ceramic suspensions.

机译:羧甲基木质素在水性陶瓷悬浮液中作为稳定剂。

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Identifying new uses for residues of industries that process large quantities of biomass, as in bioethanol production, is essential for a sustainable development with reduced impact on the environment, which is the reason why many efforts have been devoted to find noble uses for lignins. In this study, a lignin obtained from sugarcane bagasse in a bioethanol producing plant was carboxymethylated to yield the water-soluble carboxymethyl lignin (CML), which was then used as stabilizing agent in aqueous alumina (Al2O3) suspensions. CML had a degree of substitution 0.46+or-0.01, in relation to the C9 unit of lignin, and behaved as a polyelectrolyte in a large pH range owing to the dissociation of carboxylic groups. The action of CML as stabilizing agent of alumina aqueous suspensions was investigated using viscometry, zeta potential, and photon correlation spectroscopy (PCS) measurements, mainly as a function of pH and time. Overall, the results showed that CML had a good performance as a deflocculating agent, because it led to dispersions with low viscosity and small change in particle size as a function of time. The positive effect from the addition of CML was confirmed in the morphological features of the material obtained from the alumina suspensions after elimination of water, as indicated by scanning electron microscopy. The stabilization of alumina suspensions afforded by CML opens the way for similar applications of modified lignins, whose electrical and structural properties may be tuned for specific uses in various industries, including the ceramic industry.
机译:在生物乙醇生产中,识别处理大量生物质的工业残余物的新用途对于减少对环境的影响的可持续发展至关重要,这就是为什么许多努力致力于寻找木质素的高用途的原因。在这项研究中,将从生物乙醇生产厂的甘蔗渣中获得的木质素羧甲基化,生成水溶性羧甲基木质素(CML),然后将其用作氧化铝水溶液中的稳定剂(Al 2 O 3 )暂停。相对于木质素的C9单元,CML具有0.46+或-0.01的取代度,并且由于羧基的解离,其在大pH范围内表现为聚电解质。使用粘度测定法,ζ电势和光子相关光谱法(PCS)测量研究了CML作为氧化铝水悬浮液稳定剂的作用,主要是pH和时间的函数。总体而言,结果表明CML作为抗絮凝剂具有良好的性能,因为它导致分散体的粘度低,随时间变化的粒度变化小。如通过扫描电子显微镜所表明的,在去除水之后从氧化铝悬浮液获得的材料的形态特征中证实了添加CML的积极作用。 CML提供的氧化铝悬浮液的稳定化为改性木质素的类似应用开辟了道路,改性木质素的电和结构性能可针对各种行业(包括陶瓷行业)的特定用途进行调整。

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