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Precipitation mechanism of soluble phosphates in mortar

机译:砂浆可溶性磷酸盐的沉淀机制

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摘要

The penetration of three phosphate compounds in mortar bulk matrix, sodium monofluorophosphate (Na2FPO3) (MFP), disodium hydrogen phosphate (Na2HPO4) (DHP) and trisodium phosphate (Na3PO4) (TSP) has been evaluated using two water: cement ratios (0.5 and 0.6). The mortar samples were immersed in a 5% MFP, DHP or TSP solution for a period of 40 days. Microprobe line profile analysis for phosphorus (P) and fluorine (F) showed similar behaviour for the three soluble phosphates, which penetrated the mortar to a depth of more than 2 mm, below which the P and F contents dropped to almost zero. The stability of the phosphate ions vs. pH was calculated using thermodynamic data to obtain the following stability ranges: pH 2-4 for HFPO -3 ion, pH 5-9 for FPO32- ion, pH 3-6 for H2PO4- ion, pH 8-12 for HPO42- ion, and pH above 11 for PO43- ion. The use of the MFP, DHP and TSP as corrosion inhibitors presents some limitations in the case of total or partial immersion.
机译:使用两种水评估了三种磷酸盐块状基质,单氟磷酸钠(Na 2 FPO3),磷酸二钠(Na 2 HPO4)(DHP)和三磷酸二钠(NA3PO4)(TSP)中的磷酸盐化合物的渗透性:水泥比例(0.5和 0.6)。 将砂浆样品浸入5%MFP,DHP或TSP溶液中40天。 微探针对磷(P)和氟(F)的微探针分析显示出三种可溶性磷酸盐的类似行为,其穿透砂浆至超过2mm的深度,下面的P和F内容降至几乎为零。 使用热力学数据计算磷酸根离子与pH的稳定性,以获得以下稳定性范围:用于HFPO -3离子的pH 2-4,FPO32离子的pH 5-9,H2PO4离子的pH 3-6,pH值 8-12用于HPO42-离子,PO43离子的pH值高于11。 MFP,DHP和TSP作为腐蚀抑制剂的使用在总体或部分浸没的情况下具有一些限制。

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