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Alkali-Activated Cement-Based Binders (AACBs) as durable and cost-competitive low-CO2 binder materials: some shortcomings that need to be adressed

机译:碱活化水泥基粘合剂(AACB)作为耐用且具有成本竞争力的低二氧化碳粘合剂材料:需要解决的一些不足

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摘要

The production of 1 t of ordinary Portland cement generates 0.55 t of chemical CO2 and requires an additional 0.39 t of CO2 in fuel emissions for baking and grinding, accounting for a total of 0.94 t of CO2. The projections for the global demand of Portland cement show that by 2056 it will have doubled, reaching 6 Gt/year. Publications in the field of alkali-activated cement-based binders (AACBs) state that this new material is likely to have high potential to become an alternative to Portland cement. However, AACBs still show some shortcomings that needs to be addressed so that they can effectively compete against Portland cement. This chapter thus reviews AACB costs, carbon dioxide emissions, and some durability issues like efflorescences, alkali silica reaction, and corrosion of steel reinforcement.
机译:生产1吨普通波特兰水泥会产生0.55吨化学CO2,并且在烘烤和磨碎过程中还需要0.39吨CO2排放,总共需要0.94吨CO2。对全球硅酸盐水泥需求的预测表明,到2056年,硅酸盐水泥将翻一番,达到6 Gt /年。碱活化水泥基粘合剂(AACB)领域的出版物指出,这种新材料可能具有很高的潜力,可以替代波特兰水泥。但是,AACC仍显示出一些缺陷,需要解决,以便它们可以有效地与波特兰水泥竞争。因此,本章将回顾AACB的成本,二氧化碳的排放以及一些耐久性问题,例如风化,碱硅石反应以及钢筋的腐蚀。

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