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Effect of calcium sulphoaluminate cement on mechanical strength and waterproof properties of beta-hemihydrate phosphogypsum

机译:硫铝酸钙水泥对β-半水合磷石膏的机械强度和防水性能的影响

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Beta-hemihydrate phosphogypsum (beta-HPG) as a cementitious material obtained from the dehydration of phosphogypsum (PG) can be widely used for the preparation of building materials. The main problems for its utilization are its low mechanical strength and poor waterproof properties. In this study, calcium sulphoaluminate cement (SAC) was used to improve the properties of beta-HPG. The compressive strength, flexural strength, ratio of compressive to flexural strength, water absorption rate and softening coefficient were measured. The volume stability, pore structure and microstructure were characterized to evaluate the effect of SAC. The results show that SAC can improve the mechanical strength and waterproof properties of beta-HPG significantly. With the addition of 20% SAC, the increase of drying shrinkage is relatively small, and the compressive strength and softening coefficient were 21.5 MPa and 0.66, increasing by 60.85% and 96.04% respectively compared to the mixture without SAC. Specifically, ettringite and aluminate hydroxide are formed and interconnected with calcium sulfate dihydrate to improve the waterproof properties of beta-HPG under the effect of SAC. The crystal morphology of calcium sulfate dihydrate changes from long rods to short columns, and the pore size and total porosity of the mixture decrease, resulting in the improvement of the mechanical strength of beta-HPG. The purpose of this work is to optimize the properties of beta-HPG and provide a high performance cementitious material for the effective utilization of PG. (C) 2020 Elsevier Ltd. All rights reserved.
机译:β-半水合磷酸石膏(β-HPG)作为从磷石膏(PG)脱水获得的胶结材料,可以广泛用于建筑材料的制备。利用它的主要问题是机械强度低和防水性能差。在这项研究中,硫铝酸钙水泥(SAC)用于改善β-HPG的性能。测量了抗压强度,抗弯强度,抗压强度与抗弯强度的比,吸水率和软化系数。表征了体积稳定性,孔结构和微结构,以评价SAC的效果。结果表明,SAC可以显着改善β-HPG的机械强度和防水性能。加入20%的SAC后,干燥收缩的增加相对较小,抗压强度和软化系数分别为21.5 MPa和0.66,与不含SAC的混合物相比分别增加了60.85%和96.04%。具体地,形成钙矾石和氢氧化铝,并与二水合硫酸钙互连,以在SAC的作用下改善β-HPG的防水性能。二水合硫酸钙的晶体形态从长杆变为短柱,混合物的孔径和总孔隙率降低,从而导致β-HPG的机械强度提高。这项工作的目的是优化β-HPG的性能,并为有效利用PG提供高性能的胶凝材料。 (C)2020 Elsevier Ltd.保留所有权利。

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