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天然和合成沸石对水泥基材料水化及硬化状态性能的影响

The Effect of Natural and Synthesised Zeolites on Cement-Based Materials Hydration and Hardened State Properties.

作者信息

Girskas Giedrius, Pundienė Ina, Pranckevičienė Jolanta

机构信息

Institute of Building Materials, Vilnius Gediminas Technical University, Linkmenų Str. 28, LT-10223 Vilnius, Lithuania.

出版信息

Materials (Basel). 2023 Aug 13;16(16):5608. doi: 10.3390/ma16165608.

Abstract

The synthesis of zeolites from difficult-to-utilise waste materials facilitates the creation of more financially attractive and efficient synthetic zeolites. These can be incorporated into construction materials, resulting in a reduction in cement usage and the production of superior, clean, and sustainable construction materials. The potential to enhance the hydration rate of fresh cement paste by substituting up to 10% of the cement with two synthetic zeolites-one commercially produced and the other synthesised from waste and natural zeolite-was explored. Due to a higher Al/Na ratio, newly sintered waste-based zeolite possesses six times higher electrical conductivity compared to industrially produced 4A zeolite and more than 20 times higher electrical conductivity compared to natural zeolite. As the sequence of this fact, substituting up to 10% of the cement with AX zeolite cement paste accelerates the maximum heat release rate time and increases the total heat by 8.5% after 48 h of hydration. The structure, compressive strength, and water absorption of the hardened cement paste depends on the Al/Na ratio, pH, and electrical conductivity values of the zeolite used. The findings revealed that AX zeolite, due to presence of mineral gibbsite, which speeds up hydration products, such as CSH development, increases the compressive strength up to 28.6% after 28 days of curing and reduces the water absorption by up to 1.5%. Newly synthesised waste-based AX zeolite is cheap because its production is based on waste materials and is mostly promising due to superior properties of created construction materials compared to the other presented zeolites.

摘要

利用难以利用的废料合成沸石有助于制造出更具经济吸引力和高效的合成沸石。这些沸石可掺入建筑材料中,从而减少水泥用量,并生产出优质、清洁和可持续的建筑材料。研究了用两种合成沸石(一种是商业生产的,另一种是由废料和天然沸石合成的)替代高达10%的水泥来提高新鲜水泥浆体水化速率的潜力。由于Al/Na比更高,新烧结的废料基沸石的电导率比工业生产的4A沸石高六倍,比天然沸石高二十多倍。因此,用AX沸石水泥浆体替代高达10%的水泥会加快最大放热速率时间,并在水化48小时后使总放热量增加8.5%。硬化水泥浆体的结构、抗压强度和吸水率取决于所用沸石的Al/Na比、pH值和电导率值。研究结果表明,由于存在矿物三水铝石,AX沸石加速了水化产物(如CSH的形成),在养护28天后抗压强度提高了28.6%,吸水率降低了1.5%。新合成的废料基AX沸石价格低廉,因为其生产基于废料,而且与其他沸石相比,所制成的建筑材料性能优越,因而极具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e7fb/10456263/75c681a1be75/materials-16-05608-g001.jpg

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