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迈向用于将强化后的RS黑液作为水性吸附剂用途的活性炭前驱体的制浆工艺。

Toward pulping process for enhancing the RS-black liquors as precursor of activated carbons for aqueous adsorbent purposes.

作者信息

Lotfy Vivian F, Bao Zhichao, Zhou Xuesong, Basta Altaf H, Fu Shiyu

机构信息

Cellulose and Paper Department, National Research Centre, El Buhouth St., Dokki, 12622, Giza, Egypt.

State State Key Laboratory of Pulp and Paper Engineering, South China University of Technology, Guangzhou, 510640, China.

出版信息

Sci Rep. 2023 Nov 16;13(1):20072. doi: 10.1038/s41598-023-47447-4.

Abstract

This work deals with providing a green pulping process of rice straw with zero waste discharged, via valorization of its by-product as a promising precursor for production of carbon nanostructures. The carbon nanostructures (BL-CNSs) from rice straw pulping liquors (BLs) are prepared in one step with phosphoric acid activation. The carbon nanostructures (BL-CNSs) from rice straw pulping liquors (BLs) are prepared in one step with phosphoric acid activation. The optimal pulping approach for achieving effective adsorbent (BL-CNSs) of cationic and anionic dyes is recommended from using different BLs precursors resulting from different reagents (alkaline, neutral, and acidic reagents). The carbon precursors are characterized by elemental, thermal (TGA and DTG) and ATR FTIR analyses. While the impact of pulping route on performance of CNSs is evaluated by their adsorption of iodine, cationic dye and anionic dye, as well as ATR-FTIR, textural characterization, and SEM. The data of elemental analysis displayed a high Carbon content ranges from 57.85 to 66.69% suitable for CNSs preparation, while the TGA showed that Sulphur-containing BLs (Kraft, neutral sulfite and acidic sulfite) have higher degradation temperature and activation energies as compared with other BLs. The optimum BL-CNSs adsorbent is prepared from the disposed neutral sulfite black liquor, with the following characteristics: cationic dye adsorption capacity 163.9 mg/g, iodine value 336.9 mg/g and S 310.6 m/g. While the Kraft-CNSs provided highest anionic adsorption (70.52 mg/g). The studies of equilibrium and kinetic adsorption of dyes showed that the adsorption equilibrium of all investigated BL-CNSs toward MB follow the Langmuir and mainly Freundlich models for BB adoption. Their adsorption kinetics are a good fit with the pseudo-second-order model. The textural characterization and SEM revealed the CNSs exhibit a mixture of mesoporous and microporous structure.

摘要

这项工作致力于提供一种稻草绿色制浆工艺,实现零废物排放,即将其副产品作为生产碳纳米结构的一种有前景的前驱体进行增值利用。通过磷酸活化一步法制备稻草制浆黑液(BLs)中的碳纳米结构(BL-CNSs)。使用由不同试剂(碱性、中性和酸性试剂)产生的不同BLs前驱体,推荐实现阳离子和阴离子染料有效吸附剂(BL-CNSs)的最佳制浆方法。通过元素分析、热分析(TGA和DTG)以及ATR FTIR分析对碳前驱体进行表征。而制浆路线对CNSs性能的影响则通过其对碘、阳离子染料和阴离子染料的吸附以及ATR-FTIR、结构表征和SEM来评估。元素分析数据显示,适合制备CNSs的碳含量较高,范围为57.85%至66.69%,而TGA表明,与其他BLs相比,含硫BLs(硫酸盐法、中性亚硫酸盐法和酸性亚硫酸盐法)具有更高的降解温度和活化能。最佳的BL-CNSs吸附剂由废弃的中性亚硫酸盐黑液制备,具有以下特性:阳离子染料吸附容量163.9 mg/g、碘值336.9 mg/g和S 310.6 m/g。而硫酸盐法CNSs提供了最高的阴离子吸附量(70.52 mg/g)。染料的平衡和动力学吸附研究表明,所有研究的BL-CNSs对亚甲基蓝的吸附平衡遵循朗缪尔模型,而对溴百里酚蓝的吸附主要遵循弗伦德利希模型。它们的吸附动力学与准二级模型拟合良好。结构表征和SEM显示,CNSs呈现出介孔和微孔结构的混合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed7/10654448/f50fe44a3019/41598_2023_47447_Fig1_HTML.jpg

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