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The effects of synthesized calcium phosphate compounds on the mechanical and microstructural properties of metakaolin-based geopolymer cements

机译:合成磷酸钙化合物对偏高岭土基聚合物水泥力学和微观结构性能的影响

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Dicalcium phosphate dihydrate (DCPD) and hydroxyapatite (HAP) were prepared from oyster shell powder and phosphoric acid solution as raw materials using sol-gel process in order to study the influence of calcium phosphate compounds on the mechanical and microstructural properties of metakaolin-based geopolymer cements. The synthesized DCPD and HAP with molar ratio Ca/P equal to 1.00 and 1.65, respectively, were used as additives for replacement of metakaolin (0, 2, 4, 6, 8 and 10 wt%) and the resulting powders were used for producing geopolymer cements. The compressive strengths of geopolymer cements containing DCPD were in the range 40-48 MPa with increasing DCPD content, but when 10 wt% was used, the strength fell to 26 MPa. Similar results were obtained for HAP addition with a decrease of the compressive strength at 8 wt%. The ESEM images of geopolymers containing 4-10 wt% of HAP showed some non-reacted or partially reacted particles that do not well connect to the matrix. Samples of geopolymer with 4-8 wt% of DCPD present a lower number of unreacted particles and the matrix appeared denser than that of the control geopolymer cements. The use of calcium phosphate compounds such as brushite and hydroxyapatite led to the overall improvement in compressive strength and contribute to the densification of the structure of geopolymer cements. On the other hand, the addition of 4% of HAP and 10% of DCPD resulted in a large amount of hydroxyapatite and brushite, respectively in the systems. The matrix appear less dense indicating that a fraction of calcium phosphate addition at the aforementioned level was excessive. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了研究磷酸钙化合物对偏高岭土基聚合物的力学和微观结构性能的影响,以牡蛎壳粉和磷酸溶液为原料,以牡蛎壳粉和磷酸溶液为原料,制备了磷酸二钙二水合物(DCPD)和羟基磷灰石(HAP)。水泥。 Ca / P摩尔比分别等于1.00和1.65的合成DCPD和HAP用作替代偏高岭土(0、2、4、6、8和10 wt%)的添加剂,并将所得粉末用于生产地聚合物水泥。随着DCPD含量的增加,含DCPD的地聚合物水泥的抗压强度在40-48 MPa的范围内,但当使用10 wt%时,强度降低至26 MPa。添加HAP可获得相似的结果,压缩强度降低了8 wt%。含有4-10 wt%的HAP的地质聚合物的ESEM图像显示出一些未反应或部分反应的颗粒,无法很好地连接到基质上。具有4-8 wt%DCPD的地质聚合物样品呈现出较少数量的未反应颗粒,且基质比对照地质聚合物水泥致密。磷酸钙化合物如透钙磷石和羟基磷灰石的使用导致抗压强度的整体改善,并有助于地质聚合物水泥的结构致密化。另一方面,在系统中加入4%的HAP和10%的DCPD分别导致大量的羟基磷灰石和透钙磷石。基质显得不太稠密,表明在上述水平上磷酸钙添加的部分过量。 (C)2017 Elsevier Ltd.保留所有权利。

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