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椰壳灰对混凝土工作性、力学性能和隐含碳的影响。

Influence of coconut shell ash on workability, mechanical properties, and embodied carbon of concrete.

作者信息

Bheel Naraindas, Mahro Santosh Kumar, Adesina Adeyemi

机构信息

Department of Civil Engineering, Hyderabad College of Science & Technology, Hyderabad, Pakistan.

Institute of Environmental Engineering & Management, Mehran University of Engineering and Technology, Jamshoro, Pakistan.

出版信息

Environ Sci Pollut Res Int. 2021 Feb;28(5):5682-5692. doi: 10.1007/s11356-020-10882-1. Epub 2020 Sep 24.

Abstract

The significant contribution of the carbon dioxide emission from the production of Portland cement which is the main binder used in concrete has called for an imminent need to find environmentally friendly materials as alternatives. The availability of large quantities of agricultural wastes such as coconut shell in most developing countries opens a pathway to explore how these materials can be recycled into concrete as the binder composition. The combustion of most solid agricultural wastes results in the production of ash which can be used to replace Portland cement as a binder in concrete. This paper presents the results from the experimental investigation of the effect of coconut shell ash on the workability, mechanical properties, and embodied carbon of concrete. A total of five mixtures were made with coconut shell ash replacing Portland cement up to 20%. Results from this paper showed that coconut shell ash can be incorporated into concrete mixtures to reduce its embodied carbon. A reduction in embodied carbon of about 15% was achieved when 20% of Portland cement was replaced with coconut shell ash. The incorporation of coconut shell ash into concrete mixtures also resulted in an increase in the mechanical properties up to 10% replacement of Portland cement. The compressive, tensile, and flexural strength of mixtures incorporating 10% coconut shell ash as replacement of Portland cement is 12%, 10%, and 9% higher than that of the control mixture without coconut shell ash.

摘要

作为混凝土中主要胶凝材料的波特兰水泥生产过程中二氧化碳排放量巨大,这迫切需要寻找环保材料作为替代品。在大多数发展中国家,大量农业废弃物如椰壳的存在为探索如何将这些材料作为胶凝材料成分回收利用到混凝土中开辟了一条途径。大多数固体农业废弃物燃烧后会产生灰烬,这些灰烬可用于替代波特兰水泥作为混凝土中的胶凝材料。本文介绍了椰壳灰对混凝土工作性、力学性能和隐含碳影响的试验研究结果。总共制备了五种混合物,用椰壳灰替代波特兰水泥的比例最高可达20%。本文结果表明,椰壳灰可掺入混凝土混合物中以降低其隐含碳。当用20%的椰壳灰替代波特兰水泥时,隐含碳减少了约15%。将椰壳灰掺入混凝土混合物中还使力学性能提高,波特兰水泥替代量最高可达10%。用10%椰壳灰替代波特兰水泥的混合物的抗压、抗拉和抗弯强度分别比不含椰壳灰的对照混合物高12%、10%和9%。

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