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Effect on Concrete Surface Water Absorption upon Addition of Lactate Derived Agent

机译:添加乳酸衍生剂对混凝土表面吸水率的影响

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Water tightness of a concrete cover layer is important, as it is typically used as a protective coating of the steel reinforcement. Water tightness can be impaired by crack formation or by permeability. A bacteria-based lactate-derived healing agent (HA) can be added to concrete to enhance the potential for restoration of water tightness. Bacterial conversion of the included carbon source results in CO 2 production and subsequent CaCO 3 precipitation, similar to the mechanism of concrete carbonation. Carbonation is known to densify concrete, particularly when using ordinary Portland cement (OPC), but to a much lower extend in slag-based concrete (CEM III/B). To identify the effect of HA addition on concrete properties, this study focusses on the ingress of moisture in non-cracked concrete surfaces by assessing capillary water absorption. Surface properties were determined for sealed and unsealed surfaces of concrete—either based on OPC or CEM III/B—before and after curing under three different conditions: Dry, wet, or humid. HA addition to concrete containing slag cement generated a surface less prone to continued drying, but resulted in higher water absorption. In contrast, surface water absorption significantly decreased upon HA addition to OPC-based samples, independent of the curing regime. It is therefore concluded that HA in its current form is suitable for application in OPC, but less in CEM III/B-based mixtures.
机译:混凝土覆盖层的水密性很重要,因为它通常用作钢筋的保护层。裂纹形成或渗透性会损害水密性。可以将基于细菌的乳酸源愈合剂(HA)添加到混凝土中,以增强恢复水密性的潜力。所含碳源的细菌转化导致CO 2的产生和随后的CaCO 3沉淀,类似于混凝土碳化的机理。已知碳化会使混凝土致密,特别是在使用普通波特兰水泥(OPC)时,但在矿渣基混凝土(CEM III / B)中的扩展程度要低得多。为了确定添加HA对混凝土性能的影响,本研究通过评估毛细吸水率,着重研究了非开裂混凝土表面水分的浸入情况。在三种不同条件下(固化,干燥或湿润)固化之前和之后,基于OPC或CEM III / B确定了密封和未密封混凝土表面的表面性能。 HA除含矿渣水泥的混凝土外,其表面较不易于继续干燥,但吸水率较高。相反,将HA添加到基于OPC的样品中后,表面吸水率显着降低,而与固化方式无关。因此得出结论,目前形式的HA适用于OPC,但不适用于CEM III / B基混合物。

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