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Assessment of compatibility between historic mortars and lime-METAKAOLIN restoration mortars made from amazon industrial waste

机译:评估历史迫击炮与石灰 - 偏高素修复粉体兼容性亚马逊工业废物的兼容性

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摘要

In the field of conservation and restoration, incompatibility between historic materials and restoration materials should be avoided, and, therefore, a lot of studies are aimed at assessing compatibility in restoration projects. Thus, this work aims to evaluate the mineralogical, physical, and mechanical compatibility between historic mortars and lime-metakaolin (MK) restoration mortars, using MK derived from the industrial waste from the Amazon region. It is worth mentioning that this is the first attempt to use this kind of residue for the restoration of cultural heritage. Historical samples used in this work are from the 18th and 19th centuries, from Belem do Para (northern Brazil). The composition of the restoration mortars was determined using a complete factorial duplicated in 22 with three central points. The evaluation of mineralogical compatibility was performed by XRD and DSC-TG, and the evaluation of physical and mechanical compatibility occurred by determining the compressive strength, open porosity, capillarity coefficient, and drying rate. As expected, lime mortars were the most compatible with historic mortars in terms of mineralogical composition. The mineralogy of lime-MK mortars resulted in the immediate formation of hydraulic products in the first days of curing, indicating rapid hardening and high initial mechanical strength. In general, the physical and mechanical properties of restoration mortars were compatible with historic mortars, which was influenced by the adopted features and mineralogy. The results indicate restoration mortars with lower mechanical resistance and greater open porosity, capillarity coefficient, and drying rate. This indicates that some of the restoration materials would not cause excessive stress on the old structure, favor gas exchange, and reduce the prolonged presence of moisture. The results also indicate that restoration mortars with MK are probably more resistant to weathering than restoration mortars without this additive, especially the prolonged presence of water, a common situation in the humid tropics. Thus, the conclusions of this work can be useful both for the field of conservation and restoration and for the field of applied clay science, as it directs towards the sustainable use of clays from industrial wastes as an additive in restoration mortars.
机译:在保护和恢复领域,应避免历史材料和恢复材料之间的不相容性,因此,许多研究旨在评估恢复项目的兼容性。因此,这项工作旨在利用来自亚马逊地区的工业废物的MK评估历史迫击炮和石灰型胶水(MK)修复迫击炮之间的矿物学,物理和机械兼容性。值得一提的是,这是第一次尝试使用这种残留物来恢复文化遗产。这项工作中使用的历史样本是来自贝伦(Belem)的第18世纪和19世纪,从贝伦(巴西北部)起。使用具有三个中心点的22个完整的因子确定修复砂浆的组成。通过XRD和DSC-TG进行矿物学相容性的评价,并通过确定压缩强度,开孔,毛细血管系数和干燥速率来进行物理和机械相容性的评估。正如预期的那样,石灰迫击炮在矿物学组合物方面与历史迫击炮最兼容。石灰MK灰泥的矿物质导致固化的第一天立即形成液压产品,表明快速硬化和高初始机械强度。一般而言,恢复迫击星的物理和力学性质与历史迫击炮相容,受到采用的特征和矿物质的影响。结果表明了机械抗性较低和更大的开孔,毛细血管系数和干燥速率的修复砂浆。这表明一些恢复材料不会对旧结构引起过大的压力,有利于气体交换,减少延长水分的延长存在。结果还表明,由于没有这种添加剂的恢复迫击炮,具有MK的修复砂浆可能比恢复砂浆更耐受,尤其是水的长期存在,潮湿的热带地区的常见情况。因此,这项工作的结论可用于保护和恢复领域以及应用粘土科学领域,因为它指导到可持续使用工业废物作为复原砂浆中的添加剂。

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