在水泥通风砌块中加入咖啡渣作为添加剂

K. A. Shahid, Vignesh Ganesh, N. Ghazali
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引用次数: 0

摘要

不断发展的咖啡业产生了大量废咖啡渣(SCG),主要通过垃圾填埋处理。将其回收利用到混凝土建筑产品中有助于减少其对大气的碳影响。根据早期的调查,废咖啡渣有可能被用作各种土木工程应用中的补充建筑材料。然而,由于缺乏深入的研究和成功的实际应用,有必要对通风砌块的应用进行进一步的详细研究。 本研究调查了含有不同比例 SCG 的水泥砂浆在通风砌块生产中的可操作性、抗压强度、吸水性和热性能。 水泥、砂和水的比例为 1:2.75:0.6,不同比例的 SCG 作为添加剂用于砂浆混合料中。试样浇注成立方体(50 毫米 x 50 毫米 x 50 毫米),以研究其工作性、强度、吸水性和干密度。此外,还选择了理想的混合料来生产通风砌块。用 SCG 通风砌块制作的原型隔间用于连续监测室内温度。 结果表明,在砂浆中添加大量 SCG 会降低水泥砂浆砌块的可操作性和抗压强度。不过,随着混合料中 SCG 添加比例的增加,吸水性也有所降低。根据结果,SCG0.75 是最合适的配比,因为它的流动性为 48%,抗压强度为 12.574 兆帕,吸水率为 6.107%,是生产通风砌块的理想配比。此外,温度监测结果显示,使用 SCG 通风砌块的室内温度有所降低。 这一结果表明,在通风砌块中加入 SCG 需要适当比例的 SCG,以满足砌块的可加工性和强度。尽管如此,它仍可降低室内温度,从而提供更好的热舒适度。这项研究有助于将 SCG 废品作为可持续材料用于通风砌块的生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Incorporation of Spent Coffee Grounds as an Additive in Cement Ventilation Blocks
The growing coffee industry has created a lot of waste in the form of spent coffee grounds (SCG), mainly disposed of through landfills. Recycling them into concrete construction products helps reduce their carbon effect on the atmosphere. According to earlier investigations, the SCGs have potential usage as supplemental construction materials across various civil engineering applications. However, the absence of thorough research and successful practical implementations in the sector necessitate further detailed studies in ventilation block application. This study investigates the workability, compressive strength, water absorption and thermal performance of cement mortar containing different percentages of SCG in ventilation block production. Cement, sand, and water with the 1: 2.75: 0.6 ratio and different percentages of SCG are used in the mortar mix as additives. The specimens were cast in cubes (50 mm x 50 mm x 50 mm) to investigate the workability, strength, water absorption and dry density. Further, the ideal mix was chosen to produce ventilation blocks. The prototype cubicles made from the SCG ventilation blocks were used for continuous indoor temperature monitoring. The results show that adding high amounts of SCGs into mortar has decreased workability and compressive strength in cement mortar blocks. However, the water absorption has reduced with the increased percentage of SCG added to the mix. Based on the results, the SCG0.75 is the most suitable ratio to be used as it showed a flowability of 48%, a compressive strength of 12.574 MPa and water absorption of 6.107%, which is ideal for producing the ventilation block. In addition, the temperature monitoring results showed a reduction in the indoor temperature that used the SCG ventilation block. This result suggests incorporating SCG in the ventilation block requires a suitable percentage of the SCG to fulfill the workability and strength of the block. Nevertheless, it may reduce indoor temperature, thus providing better thermal comfort. This study enables the SCG waste products to be used as sustainable materials in ventilation block production.
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