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Concrete durability enhancement from nopal (opuntia ficus-indica) additions

机译:Nopal(opuntia ficus-indaga)添加的具体耐久性增强

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Durability criteria were used to evaluate concretes containing Opuntia Ficus Indica (OFI, also called nopal) derivatives: exudate nopal mucilage (eNm), cooked nopal mucilage (cNm), and dehydrated nopal powder (dNp). Concrete containing eNm and cNm was fabricated using 4%, 8%, 15%, and 30% concentrations by water mass replacement. The dNp was added at 1%, 2%, and 4% (per cement weight) by sand mass replacement. Concrete's physical and mechanical performance was monitored for the nopal derivative treatments and the control (without nopal derivatives), to quantify any possible durability improvements.The durability tests included: saturated electrical resistivity (rho(S)); total voids percentage (TV%), capillary absorption (effective porosity, epsilon(EF)); compressive strength (fc); rapid chloride permeability (RCP); and SEM micrograph analysis. Because nopal derivatives have an apparently slow reaction time, the tests were evaluated at 30, 90, 180, and 400 days.Addition of dehydrated nopal powder (dNp) did not improve substantially concrete durability performance, except chloride transport: additions 2% decreased RCP index values up to 10%. Exudate nopal mucilage (eNm) exhibited improved durability index values up to 20% (TV%/epsilon(EF) decrease and rho(S)/fc increase), and RCP index was improved up to 30%. Cooked nopal mucilage (cNm), at all four tested ages, produced results superior to the control mixture (between 20% and 40% improvements). In summary, nopal derivatives may act as clogging sponge-like biopolymer within the cement matrix pores, stopping water and chloride transport into concrete. (C) 2020 Elsevier Ltd. All rights reserved.
机译:耐久性标准用于评估含有Opuntia Ficus inda(OFI,也称为Nopal)衍生物的混凝土:渗出物Nopal粘液(烯),煮熟的Nopal粘液(CNM)和脱水的Nopal粉末(DNP)。通过水质量更换使用4%,8%,15%和30%浓度制造含有烯族和CNM的混凝土。通过砂质量更换,将DNP加入1%,2%和4%(每水泥重量)。监测混凝土的物理和机械性能,用于Nopal衍生物处理和对照(没有Nopal衍生物),以量化任何可能的耐久性改进。包括耐久性测试:饱和电阻率(rho);总空隙百分比(TV%),毛细管吸收(有效孔隙度,ε(EF));抗压强度(Fc);氯化物渗透性快(RCP);和SEM显微照片分析。因为诺博尔衍生物具有明显慢的反应时间,所以在30,90,180和400天内评估试验。除氯化物输送外,脱水Nopal粉末(DNP)的作用没有改善基本上混凝土的耐久性,除氯化物外:添加<2%下降RCP索引值高达10%。渗出物Nopal粘液(烯)表现出高达20%的耐久性指数值,高达20%(TV%/ε(EF)降低,RHO(S)/ Fc增加),RCP指数高达30%。在所有四个测试的年龄煮熟的Nopal粘液(CNM),产生的结果优于对照混合物(20%至40%)。总之,Nopal衍生物可以充当水泥基质孔隙内的海绵状生物聚合物,将水和氯化物输送到混凝土中。 (c)2020 elestvier有限公司保留所有权利。

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