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Water retention mechanism of cellulose ethers in calcium sulfoaluminate cement-based materials

机译:硫氧化钙基材料纤维素醚含水量机制

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摘要

To explore the mechanism to water retention of cellulose ether (CE) in calcium sulfoaluminate (CSA) cementbased materials, three cellulose ethers (CEs) with similar viscosity but different substitution groups were selected in this paper, namely hydroxyethyl cellulose (HEC) and hydroxyethyl methyl cellulose (HEMC) with high and low degree of substitution (DS). Water retention of CE modified CSA cement mortar with different CE dosages was characterized by filter paper method. The water state and content in CE modified CSA cement paste were determined by low field nuclear magnetic resonance (1H NMR). The adsorption and dispersion characteristics of CE in CSA cement paste were analyzed by measuring the organic carbon content in the pore solution. Combined with the measurement of dynamic viscosity and surface tension of pore solution, the mechanism to water retention of CEs in CSA cement-based materials was comprehensively analyzed. The results show that the addition of CE can significantly improve the water retention of CSA cement mortar. At the same dosage, the water retention effect of HEMC is better than HEC, and DS has little effect on the water retention capacity of HEMC. The mechanism to water retention of HEC and HEMC added less than 0.1% dosage in system is governed by water sorption effect of CE. While more than 0.1% dosage, HEC and HEMC in CSA cement-based materials achieve water retention respectively through the adsorption of CE on cement and the formation of threedimensional polymer network in pore solution.
机译:为了探讨硫氧化钙(CSA)含钙材料(CSA)硫化物醚(Ce)的水保留的机制,在本文中选择具有相似粘度但不同取代基的三种纤维素醚(CES),即羟乙基纤维素(HEC)和羟乙基甲基纤维素(HEMC)具有高且低的取代度(DS)。用不同的CE剂量的CE改性CSA水泥砂浆的水保留的特征在于过滤纸法。通过低现场核磁共振(1H NMR)测定CE改性CSA水泥浆中的水状态和含量。通过测量孔隙溶液中的有机碳含量分析CE中Ce的吸附和分散特性。结合孔隙溶液的动态粘度和表面张力的测量,综合分析了CSA水泥基材料中CE的水保留的机制。结果表明,CE的添加可以显着提高CSA水泥砂浆的水保留。在相同的剂量下,HEMC的水保留效果优于HEC,DS对HEMC的水保持能力几乎没有影响。水保留的机制和HEMC的含量小于0.1%的体系中的剂量受CE的水吸附作用来控制。虽然CSA水泥基材料中的多种剂量,HEC和HEMC,通过CE在水泥上的吸附和孔隙溶液中的三维聚合物网络的形成来分别达到水潴留。

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