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The effect of curing time and mix parameters on the sequestration of carbon dioxide in concrete.

机译:养护时间和混合参数对混凝土中二氧化碳固存的影响。

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摘要

The purpose of this research is to investigate the potential for using recovered CO2 to develop a carbon-negative sustainable PCC. A preliminary study is presented to maximize the potential of PCC to absorb CO2 through optimized mix design and modified mixing/curing procedures. Accelerated carbonation through the use of a controlled CO2 chamber was used to enhance absorption. The effect of CO2 absorption is correlated with the PCC strength properties and the carbonation depth after 28-day. This study is different from previous work in that it is directed towards the influence of initial curing times as well as the introduction of using carbonated water in the mix design.;The experimental plan is to study the influence of water type, supplementary cementitious materials, local aggregate sources and curing combination between carbonated/non-carbonated medium to increase the capability of PCC mixes to absorb CO2. The PCC mixes were evaluated by the hardened properties and carbonation depth.;In this research, concrete with initial curing of 1- and 3-days, showed an overall higher compressive strength at 28-day. The batches mixed with 25% fly ash showed higher carbonation depths than the other mixes. Results implied that carbonation of concrete can overcome the effects of a shorter initial curing period. Also, fly ash has a greater effect on carbonation than mixes without mineral additives.
机译:这项研究的目的是调查使用回收的二氧化碳开发碳负性可持续PCC的潜力。提出了一项初步研究,旨在通过优化混合物设计和改进的混合/固化程序最大限度地发挥PCC吸收CO2的潜力。通过使用受控的CO2室加速碳酸化来增强吸收。 28天后,CO2吸收的影响与PCC强度特性和碳化深度相关。这项研究与以前的工作不同,它针对的是初始固化时间的影响以及在混合料设计中引入碳酸水的使用。实验计划是研究水类型,辅助胶凝材料,局部骨料来​​源和碳酸盐/非碳酸盐介质之间的固化组合,以提高PCC混合物吸收CO2的能力。通过硬化性能和碳化深度评估PCC混合料;在这项研究中,初始固化1天和3天的混凝土在28天时显示出总体较高的抗压强度。与25%粉煤灰混合的批次显示出比其他混合物更高的碳化深度。结果表明,混凝土碳化可以克服较短的初始固化时间的影响。此外,粉煤灰比不含矿物添加剂的混合物对碳酸的影响更大。

著录项

  • 作者

    Sanchez, Jeremy I.;

  • 作者单位

    The University of Texas at San Antonio.;

  • 授予单位 The University of Texas at San Antonio.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2012
  • 页码 68 p.
  • 总页数 68
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:42:56

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