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从黑色金合欢(Acacia mearnsii De Wild.)树皮残渣中获得富含纤维素的物质。

Obtaining of a rich-cellulose material from black wattle (Acacia mearnsii De Wild.) bark residues.

机构信息

Graduate Program in Materials Science and Engineering, Federal University of Pampa, Bagé, RS, 96413-172, Brazil.

Chemical Engineering, Federal University of Pampa, Bagé, RS, 96413-172, Brazil.

出版信息

Environ Sci Pollut Res Int. 2023 Nov;30(52):113055-113067. doi: 10.1007/s11356-023-30254-9. Epub 2023 Oct 17.

Abstract

Black wattle (Acacia mearnsii De Wild.) barks are residues produced by tannin industries in huge quantities, which are normally discharged on environmental or used for energy production. Therefore, this study aimed to evaluate the use of black wattle bark residues as a raw material on obtaining of a rich-cellulose material by alkaline (MET1), acetosolv (MET2), and organosolv (MET3) procedures. The results obtained indicated that the alkaline methodology, followed by a bleaching step (MET1), promoted klason lignin and hemicellulose removals more efficiently. It was possible to observe that better results were achieved using NaOH concentration of 6% (wt%), at 65 °C for 2.5 h, presenting a yield of 63.24 ± 1.25%, and a reduction on klason lignin content of almost 90.45%. Regarding the bleaching step, it was possible to obtain a material free of non-cellulosic compounds with a yield of 78.28 ± 1.48%. Thermogravimetric analysis indicated the removal of lignin and hemicellulose as well as an increase in cellulose degradation temperature, due to changes in crystalline phases. According to X-ray diffraction (XRD), the procedures employed have led to an increase in crystallinity from 66.27 to 91.78% due to the removal of non-cellulosic compounds. Scanning electron microscopy (SEM) showed morphological alterations in accordance with the removal of non-cellulosic compounds.

摘要

黑荆树皮是制革单宁工业产生的大量废弃物,通常被排放到环境中或用于能源生产。因此,本研究旨在评估利用黑荆树皮残余物作为原料,通过碱性(MET1)、乙酰基solv(MET2)和有机溶剂solv(MET3)工艺获得富含纤维素的材料。结果表明,碱性方法(MET1),随后进行漂白步骤,更有效地去除了综纤维素和半纤维素。使用 6%(wt%)的 NaOH 浓度,在 65°C 下反应 2.5 小时,可以获得更好的效果,产率为 63.24±1.25%,并且综纤维素含量降低了近 90.45%。关于漂白步骤,可以获得一种不含非纤维素化合物的材料,产率为 78.28±1.48%。热重分析表明,由于木质素和半纤维素的去除以及纤维素降解温度的升高,结晶相发生了变化。根据 X 射线衍射(XRD),由于去除了非纤维素化合物,结晶度从 66.27%增加到 91.78%。扫描电子显微镜(SEM)显示,形态发生了变化,与非纤维素化合物的去除一致。

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