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木糖基水泥外加剂的力学性能及缓凝减水机理

The Mechanical Properties and Water-Reducing and Retarding Mechanism of a Xylonic Cement Admixture.

作者信息

Han Feng, Huang Kaijian, Wei Yang, Han Jian, Xu Yong

机构信息

College of Civil Engineering, Nanjing Forestry University, Nanjing 210037, China.

Jiangsu Co-Innovation Center of Efficient Processing and Utilization of Forest Resources, College of Chemical Engineering, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Materials (Basel). 2023 Nov 9;16(22):7096. doi: 10.3390/ma16227096.

Abstract

This study explores the mechanical properties, as well as the water-reducing and setting delay mechanism, of a novel xylonic acid-based water reducer applied to cementitious materials. Four xylonic acid water reducers were synthesized in this study: XACa (PX) from pure xylose, XACa (HS) from hemicellulose hydrolysate, XANa (PX) from pure xylose, and XANa (HS) from hemicellulose hydrolysate. These were generated through the whole-cell catalysis of Gluconobacter oxydans bacteria, using pure xylose and hemicellulose hydrolysate as substrates. The findings indicate that the xylonic acid-based water reducer can attain a water-reducing capability between 14% and 16% when the dosage (expressed as a mass fraction of cement) is roughly 0.2%. In initial and final setting tests, XACa (PX) demonstrated a pronounced retarding influence at admixture levels below 0.15%, reaching its apex at 0.10%. This delayed the initial setting time by 76% and the final setting time by 136% relative to the control group. However, a slight pro-setting effect was noted beyond a 0.2% dosage. In the compressive and flexural tests of concrete, under the same slump, the XA group improved its mechanical properties by 5% to 10% compared to the SodiuM lignosulfonate (SL) group. In the air content and chloride ion migration resistance tests, the XA group reduced the air content by 38% compared to the SL group, but also increased the data of rapid chloride migration (D) by 16%. Characterization studies revealed that the carboxyl and hydroxyl groups in xylonic acid undergo chemisorption with the Si-O bonds on the surface of cement particles. These groups interact with the Si-O bonds on cement particles, contributing to water-reducing effects and delaying the setting process by impeding Ca ion aggregation in the calcium-silicate-hydrate gel. Its significant water-reducing effect, adjustable setting time, and excellent mechanical and durability properties suggest its viability as an alternative to lignosulfonate series water-reducing agents.

摘要

本研究探讨了一种新型木糖酸基减水剂应用于胶凝材料时的力学性能以及减水和缓凝机理。本研究合成了四种木糖酸减水剂:由纯木糖制得的XACa(PX)、由半纤维素水解产物制得的XACa(HS)、由纯木糖制得的XANa(PX)以及由半纤维素水解产物制得的XANa(HS)。它们是通过氧化葡萄糖杆菌的全细胞催化作用,以纯木糖和半纤维素水解产物为底物生成的。研究结果表明,当用量(以水泥质量分数表示)约为0.2%时,木糖酸基减水剂的减水能力可达14%至16%。在初凝和终凝试验中,XACa(PX)在掺量低于0.15%时表现出显著的缓凝作用,在0.10%时达到峰值。相对于对照组,其初凝时间延迟了76%,终凝时间延迟了136%。然而,用量超过0.2%时会出现轻微的促凝效果。在混凝土的抗压和抗折试验中,在相同坍落度下,与木质素磺酸钠(SL)组相比,XA组的力学性能提高了5%至10%。在含气量和抗氯离子迁移试验中,与SL组相比,XA组的含气量降低了38%,但快速氯离子迁移系数(D)数据也增加了16%。表征研究表明,木糖酸中的羧基和羟基与水泥颗粒表面的Si-O键发生化学吸附。这些基团与水泥颗粒上的Si-O键相互作用,有助于产生减水效果,并通过阻碍硅酸钙水化物凝胶中钙离子的聚集来延缓凝结过程。其显著的减水效果、可调节的凝结时间以及优异的力学和耐久性性能表明它有作为木质素磺酸盐系列减水剂替代品的可行性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ead6/10672015/443182213991/materials-16-07096-g001.jpg

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