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羧烷基化木质素作为水煤浆的一种可持续分散剂

Carboxyalkylated Lignin as a Sustainable Dispersant for Coal Water Slurry.

作者信息

Qulatein Hussein Ahmad, Gao Weijue, Fatehi Pedram

机构信息

Faculty of Science and Technology, University of Lille, 59000 Lille, France.

Green Process Research Centre, Department of Chemical Engineering, Lakehead University, 955 Oliver Road, Thunder Bay, ON P7B 5E1, Canada.

出版信息

Polymers (Basel). 2024 Sep 13;16(18):2586. doi: 10.3390/polym16182586.

Abstract

Coal water slurry (CWS) has been considered a cleaner and sustainable alternative to coal. However, the challenging suspension of coal particles in CWS has created a major obstacle to its use in industry. This study presents a novel approach to enhance the stability and rheological properties of coal water slurry (CWS) through the utilization of carboxyalkylated lignin (CL) as a dispersant. The generated CL samples had high water solubility of around 9 g/L and a charge density of around 2 mmol/g. All CLs were able to stabilize the coal suspension, and their performance decreased due to the increase in the alkyl chain length of carboxyalkylated lignin. Carboxymethylated lignin (CL-1) improved the stability of the coal suspensions with the lowest instability index of less than 0.6. The addition of CLs reduced the contact angle of the coal surface from 45.3° to 34.6°, and the increase in the alkyl chain length hampered its effect on contact angle changes. The zeta potential measurements confirmed that the adsorption of CL enhanced the electrostatic repulsion between coal particles in suspensions, and the zeta potential decreased with the increased alkyl chain length of CLs due to increased steric hindrance. The rheology results indicated that CLs demonstrated shear thinning behavior. This innovative method showcases the affinity of carboxyalkylated lignin to improve the performance of CWS, offering an environmentally friendly alternative for producing a cleaner product, i.e., sustainable coal water slurry, with improved suspension stability.

摘要

水煤浆(CWS)被认为是一种比煤炭更清洁、更可持续的替代品。然而,水煤浆中煤颗粒难以悬浮,这成为其在工业应用中的一个主要障碍。本研究提出了一种新方法,通过利用羧烷基化木质素(CL)作为分散剂来提高水煤浆(CWS)的稳定性和流变性能。所制备的CL样品具有约9 g/L的高水溶性和约2 mmol/g的电荷密度。所有CL都能够稳定煤悬浮液,并且随着羧烷基化木质素烷基链长度的增加,其性能下降。羧甲基化木质素(CL-1)提高了煤悬浮液的稳定性,最低不稳定指数小于0.6。CL的添加使煤表面的接触角从45.3°降低到34.6°,烷基链长度的增加阻碍了其对接触角变化的影响。zeta电位测量证实,CL的吸附增强了悬浮液中煤颗粒之间的静电排斥力,并且由于空间位阻增加,zeta电位随着CL烷基链长度的增加而降低。流变学结果表明,CL表现出剪切变稀行为。这种创新方法展示了羧烷基化木质素对改善水煤浆性能的亲和力,为生产更清洁的产品,即具有更高悬浮稳定性的可持续水煤浆,提供了一种环保替代方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2075/11435015/2bf8ee227ca6/polymers-16-02586-g001.jpg

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