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首页> 外文期刊>Canadian Journal of Civil Engineering >Development of chloride binding capacity in cement pastes and influence of the pH of hydration products
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Development of chloride binding capacity in cement pastes and influence of the pH of hydration products

机译:水泥浆中氯离子结合能力的发展以及水合产物pH的影响

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This study deals with the chloride binding capacity of cementitious materials. The binding capacities of ordinary Portland cement (OPC), 30 percent pulverized fuel ash (PFA), 60 percent ground granulated blast furnace slag (GGBS), and 10 percent silica fume (SF) pastes were monitored for 150 d using the water extraction method and the pH of the suspension (ground sample in distilled water) was simultaneously measured at 150 d. Results show that the binding capacity always increased with time, irrespective of binder, and the order of binding capacity with binders was 60 percent GGBS > 30 percent PFA > OPC > 10 percent SF. The pH of suspensions increased with time up to about 10 d, presumably due to a leaching out of alkalis, and then kept a certain value that was dependent on binder type. It was also found that an increase in the concentration of hy-droxyl ions, derived from the pH of the suspension, resulted in a decrease in the mole ratio of free chloride to hydroxyl ions, reflecting the lower risk of steel corrosion.
机译:这项研究涉及水泥材料的氯化物结合能力。使用抽水方法监测了普通硅酸盐水泥(OPC),30%的粉煤灰(PFA),60%的粉状高炉矿渣(GGBS)和10%的硅粉(SF)浆料的粘结能力150 d并在150天同时测量悬浮液(在蒸馏水中的研磨样品)的pH值。结果表明,与粘合剂无关,粘合能力始终随时间增加,与粘合剂的粘合能力顺序为60%GGBS> 30%PFA> OPC> 10%SF。悬浮液的pH值随着时间的增长而增加,直至约10 d,这可能是由于碱的浸出所致,然后保持一定的值,该值取决于粘合剂的类型。还发现,由悬浮液的pH引起的羟氢氧根离子浓度的增加导致游离氯与氢氧根离子的摩尔比降低,反映出较低的钢腐蚀风险。

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