Çeşitli Endüstriyel ve Yumurta Kabuk Atıklarının Sürdürülebilir İnşaat Sektörü için Kullanılması

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
Ertuğrul Aydın
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引用次数: 0

Abstract

The alternative composites’ production alleviates the serious problem generated by global warming. Methods to reduce the amount of cement used in concrete production, for example, are being investigated to determine how to reduce carbon dioxide emissions in many applications. Egg shells and various industrial wastes, which are recommended to use in the construction sector at an appropriately high rate, also cause serious environmental damage. Bottom ash (BA) and marble powder (MP) wastes are used today in civil engineering applications. In addition, it is important to increase the use of eggshells due to their rich calcium carbonate content. In this work, BA and MP wastes were blended with eggshells to produce cement paste composites. Two different sets of composites were prepared during this study. The composites were prepared with cement (80%), BA (20%), and MP (20%) wastes by weight with 0.3%, 0.75%, 1.5%, and 2.5% eggshell waste. The fresh (flow table), physical (dry unit mass, apparent specific gravity, and porosity), mechanical (unconfined compressive strength and flexural strength), and durability (water absorption, seawater resistance) tests were conducted. According to the experimental results, the composites can be classified as lightweight construction materials. The test results showed that 0.75% eggshell by weight of cement in bottom ash and marble powder can be used as an optimum value for better performance. The bottom ash mixtures groups are higher water absorption and porosity values when referring to the marble powder mixture groups. The highest compressive strength value was found at 56.03 MPa in the MP mixture group and 52.79 MPa in the BA mixture groups with these optimum eggshell combinations at 56 days. The MP mixture group showed better resistance to seawater when referring to the bottom ash blended mixtures. Laboratory-produced composites are possible candidates for cost-effective and environmentally friendly building materials. The eggshells have a promising alternative binder for concrete in the near future and they are utilized together with industrial wastes such as BA and MP in sustainable concrete construction.
用于管理建筑行业的各种工业和尤穆尔塔电缆废料
替代复合材料的生产缓解了全球变暖带来的严重问题。例如,正在研究减少混凝土生产中水泥用量的方法,以确定如何在许多应用中减少二氧化碳排放。蛋壳和各种工业废物被建议以适当的高比率用于建筑业,也会造成严重的环境破坏。目前,底灰(BA)和大理石粉(MP)废物被用于土木工程应用。此外,由于蛋壳含有丰富的碳酸钙,因此增加蛋壳的使用也很重要。本工作将BA和MP废料与蛋壳混合制成水泥浆复合材料。在本研究中制备了两组不同的复合材料。用水泥(80%)、BA(20%)和MP(20%)废物以及0.3%、0.75%、1.5%和2.5%的蛋壳废物制备复合材料。进行了新鲜(流动表)、物理(干单位质量、表观比重和孔隙率)、机械(无侧限抗压强度和抗弯强度)和耐久性(吸水性、耐海水性)试验。根据试验结果,该复合材料可归类为轻质建筑材料。试验结果表明,底灰和大理石粉中水泥蛋壳重量的0.75%可以作为获得更好性能的最佳值。当涉及大理石粉末混合物组时,底灰混合物组具有较高的吸水率和孔隙率值。在56天时,MP混合物组和BA混合物组的抗压强度最高,分别为56.03MPa和52.79MPa。当涉及底灰混合混合物时,MP混合物组显示出更好的耐海水性。实验室生产的复合材料可能是成本效益高、环境友好的建筑材料的候选材料。蛋壳在不久的将来有一种很有前途的混凝土替代粘合剂,它们与BA和MP等工业废物一起用于可持续混凝土施工。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Polytechnic-Politeknik Dergisi
Journal of Polytechnic-Politeknik Dergisi ENGINEERING, MULTIDISCIPLINARY-
自引率
33.30%
发文量
125
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