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Effect of mineral additives (natural pozzolana and sand of dunes) by substitution of cement on the performance and durability of mortars

机译:矿物添加剂(天然Pozzolana和沙丘)对水泥替代对迫击炮性能和耐久性的影响

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The objective of our work consists of the study of the substitution effects of clinker by mineral additions such as: natural pozzolana (PZ) and the sand of dunes (SD) finely crushed on the mechanical properties and the durability of the mortars worked out according to various combinations containing these additions. The results from this research confirm that the substitution of 20% to 30% of cement APC (Artificial Portland Cement) by additions in binary cement (APC + PZ) or ternary (APC + PZ + SD) contributes positively to the mechanical strength of mortars and resistance to the chemical attacks in various corrosive conditions such as: hydrochloric acid, sulfuric acid and nitric acid. The mechanical strength of the different variants is comparable to those of the APC. The test results of the weight loss and phenolphthalein shows that the chemical resistance of variants (PZ20) and (PZ20 with SD5) are larger compared to the reference mortar APC and other variants. This study shows that adding value by substituting a part of clinker. This substitution can save20% to 30% of clinker used for the manufacture of cement; this will have a beneficial effect for cement and economically (less energy spent for the clinker burning). This study contributes to the protection of the environment as to produce one ton of clinker generates about one ton ofCO2is harmful to the atmosphere. Based on our results we will reduce from 20% to30% CO2gasresponsible for the greenhouse effect.
机译:我们工作的目标包括研究熟料通过矿物添加的替代效应,例如:天然波兹拉樱糖(PZ)和沙丘(SD)精细地压碎机械性能,迫击炮的耐久性根据各种含有这些添加的组合。本研究的结果证实,通过在二元水泥(APC + PZ)或三元(APC + PZ + SD)中添加了20%至30%的水泥APC(人工料理水泥)对迫击炮的机械强度有贡献和各种腐蚀条件下的化学攻击抗性,如:盐酸,硫酸和硝酸。不同变体的机械强度与APC的机械强度相当。重量损失和酚酞的测试结果表明,与参考砂浆APC和其他变体相比,变体(PZ20)和(PZ20的耐受SD5)的耐化学性。该研究表明,通过代替熟料部分来增加值。这种取代可以节省20%至30%用于制造水泥的熟料;这将对水泥和经济上的有益效果(在熟料燃烧的能量较少)。本研究有助于保护环境,以产生一吨熟料产生约1吨的含量对大气有害。根据我们的结果,我们将减少20%至30%的CO2GASRESPORSIBE,以获得温室效应。

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