Enhancing cellulose fiber properties from chromolaena odorata and anana comosus through novel pulping chemical mixtures

O. Oluwasina, Mochamad Zakki Fahmi, O. Oluwasina
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Abstract

The production of cellulose with exceptional properties has led to the modification of chemical pulping methods and the development of newer chemical pulping methods. This study developed mixtures of sodium hydroxide, ethanol, and anthraquinone as new pulping chemicals to produce alpha-cellulose from pineapple leaves and Saim weed stems. The addition of anthraquinone was noticed to influence the pulp yield positively and the FTIR of all the cellulose has the characteristic cellulose bands. Calculated Total crystallinity index (TCI), (Lateral order index) LOI., and Hydrogen bond intensity (HBI) from the FTIR presented PLSHAEC (68.38 %) and SWSHQEC (67.74 %) having high crystallinity. From the XRD, the 2? by all the materials is attributed to cellulose I diffraction, and the crystallinity index aligned with FTIR determined crystallinity. The determined particle average diameter using ImageJ software showed that PLSHQEC 3.00 had the smallest value, followed by 5.17 for PLSHQC, 5.32 for SWSHQEC, and 6.03 for SWSHQEC. From the thermal analysis, the onset of the degradation of all the cellulose occurred at different temperatures: 247.10? (PLSHQC), 253.38? (PLSHQEC), 240.20? (SWSHQC) and 242.58? (SWSHQEC). The increase in yield, higher crystallinity index, and smaller fiber diameter of the cellulose demonstrated anthraquinone as a better additive to produce quality cellulose that would undergo easy chemical modification.
通过新型制浆化学混合物提高臭椿和芒果的纤维素纤维性能
生产具有特殊性能的纤维素促使人们改变化学制浆方法,并开发出更新的化学制浆方法。本研究开发了氢氧化钠、乙醇和蒽醌的混合物作为新的制浆化学品,用于从菠萝叶和赛马草茎中生产α-纤维素。添加蒽醌对纸浆产量有积极影响,所有纤维素的傅立叶变换红外光谱都具有纤维素的特征带。根据傅立叶变换红外光谱计算的总结晶度指数(TCI)、侧序指数(LOI)和氢键强度(HBI)显示,PLSHAEC(68.38 %)和 SWSHQEC(67.74 %)具有较高的结晶度。从 XRD 中可以看出,所有材料中的 2.0% 都是纤维素 I 衍射的结果,结晶度指数与傅立叶变换红外光谱测定的结晶度一致。使用 ImageJ 软件测定的颗粒平均直径显示,PLSHQEC 3.00 的值最小,其次是 PLSHQC 5.17、SWSHQEC 5.32 和 SWSHQEC 6.03。从热分析结果来看,所有纤维素的降解都发生在不同的温度下:247.10?(PLSHQC)、253.38?(PLSHQEC)、240.20?(SWSHQC) 和 242.58? (SWSHQEC)。纤维素产量的增加、结晶度指数的提高和纤维直径的缩小表明,蒽醌是一种更好的添加剂,可用于生产易于进行化学改性的优质纤维素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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