A Research of Chemical Nature and Surface Properties of Plant Disperse Fillers

Y. Danchenko, A. Kariev, V. Andronov, A. Cherkashina, V. Lebedev, T. Shkolnikova, Oleksii Burlutskyi, Anatoliy Kosse, Yuriy Lutsenko, Dayana Yavors'ka
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引用次数: 5

Abstract

Chemical nature and surface properties of plant disperse fillers are investigated: buckwheat (BH) and oat (OH) husk, wood (WF) and conifer flour (CF). Using IR spectroscopy, it was found that oxygen-containing atomic groups –OH, –C–O–, –C=O prevail in the filler components. It was found that a hydroxyl-hydrate layer of functional groups is present on the surface of air-dry fillers. By potentiometric titration of aqueous suspensions using the Parks–Bobyrenko method, it was determined that all fillers are of the «polyfunctional solid» type. It is shown that the hydroxyl-hydrate surface layer consists of functional groups with similar values of acid-base characteristics. Functional groups of acidic nature were additionally found on the surface of the fillers: groups with pKa≈4.37−5.66 on the BH surface, groups with pKa≈4.49−4.90 on the CF surface and groups with pKa≈3.91−4.30 on the WF surface. As a result of potentiometric titration, it was shown that the surface acidity of the fillers decreases in the WFgCFgBHgОH series, which coincides with the one in which the total cellulose and lignin content decreases, and the resistance of fillers to thermal-oxidative breakdown increases. It was found that the rate of hydrolytic processes in aqueous suspensions at the interface decreases in the ОHgCFgBHgWF series and inversely depends on the concentration of functional groups on the surface of the fillers, and also that the change in the rate of hydrolytic processes at the interface depending on the content of fillers is described by step functions. It is revealed that for the effective use of the studied disperse waste in composite materials and as adsorbents for the extraction of pollutants, dispersion media with the following ranges of the hydrogen index are required: for BH − pHg4.4; OH − pHg6.4; WF − pHg3.9; CF − pHg4.5. The results obtained make it possible to predict and control acid-base interfacial interactions, as well as reasonably approach the development of new effective technologies
植物分散填料的化学性质及表面性能研究
研究了荞麦(BH)和燕麦(OH)壳、木材(WF)和针叶树粉(CF)等植物分散填料的化学性质和表面性能。红外光谱分析发现,填料成分中主要含有含氧基团- oh、-c - O -、-c =O。研究发现,在风干填料表面存在一层羟基水合官能团。通过使用Parks-Bobyrenko方法对水悬浮液进行电位滴定,确定了所有填料都属于“多功能固体”类型。结果表明,水合羟基表层由具有相似酸碱特征值的官能团组成。在填料表面还发现了酸性官能团:BH表面pKa≈4.37 ~ 5.66的基团,CF表面pKa≈4.49 ~ 4.90的基团,WF表面pKa≈3.91 ~ 4.30的基团。电位滴定结果表明,WFgCFgBHgОH系列填料的表面酸度降低,与总纤维素和木质素含量降低的趋势一致,填料的抗热氧化分解能力增强。研究发现,界面处水悬浮液的水解速率以ОHgCFgBHgWF级数递减,与填料表面官能团的浓度成反比;界面处水解速率随填料含量的变化可以用阶跃函数描述。结果表明,为了有效地利用所研究的分散废物在复合材料中并作为污染物萃取的吸附剂,需要具有以下氢指数范围的分散介质:BH−pHg4.4;OH−pHg6.4;WF−pHg3.9;CF−pHg4.5。所得结果为预测和控制酸碱界面的相互作用提供了可能,并为开发新的有效技术提供了合理的途径
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