Usability of Organic Wastes in Concrete Production; Palm Leaf Sample

O. Bayraktar
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Abstract

Palm leaves are vegetal waste that are not widely used by the society, only piled up and causing odors that mix with the environment. Channeling this waste material into the construction industry helps to overcome waste disposal problems as well as promote sustainability. The most important features expected from the buildings are the creation of the most suitable environmental conditions for the products to be stored or the creatures that will live in them, and they can be used safely for a long time. In the construction of the buildings, materials that are the cheapest possible, safe and capable of creating the optimum environmental conditions should be used. The materials to be selected should have sufficient strength and durability, high heat and sound insulation and lightness. Since single-storey buildings are not subject to excessive load, it is important that the thermal insulation is high and light in material selection. Since the widespread use of concrete as a building material in the world, efforts to make concrete light, cheaper and better insulating have gained importance. Lightweight concrete, which is easy to apply, has been an important building material in recent years. With the use of lightweight concrete as a building material, benefits such as economy in terms of material, earthquake resistance, and the elimination of a second insulation material for heat and sound insulation can be achieved. In this study; Experimental study using Portland cement (CEM I), Palm Leaf, CEN standard sand and water mortar production; sample production, curing, some physical and mechanical experiments were carried out in four stages. The usability of palm leaf, which is a vegetable waste, as aggregate in concrete production by replacing it with CEN standard sand at 0, 5, 10, 20, 30 and 40% as well as 10% with cement has been investigated. The study results show that the addition of both ground palm leaf and palm leaf aggregate significantly altered almost all properties of concrete. These changes are at different levels in terms of physical properties. As a result of the study, it was determined that as the amount of foam increased, the spreading diameter increased, whereas palm leaf addition decreased the spreading diameter. It has been determined that the addition of palm leaf decreases the depth of water treatment depending on time, the porosity of the samples with high level of palm leaf addition increases and the compression and bending strength decreases.
有机废弃物在混凝土生产中的可利用性研究棕榈叶样本
棕榈叶是植物废料,没有被社会广泛利用,只是堆积起来,产生的气味与环境混合。将这些废物引入建造业,有助解决废物处置问题,并促进可持续发展。建筑最重要的特点是为储存产品或生活在其中的生物创造最合适的环境条件,并且它们可以长期安全使用。在建筑的建造中,应该使用尽可能便宜、安全和能够创造最佳环境条件的材料。所选择的材料应具有足够的强度和耐久性,高隔热隔音和轻便性。由于单层建筑不受过大负荷的影响,因此在材料选择上,保温隔热的高、轻是很重要的。自从混凝土作为一种建筑材料在世界范围内广泛使用以来,使混凝土变得更轻、更便宜和更好的绝缘性变得越来越重要。轻质混凝土因其易于施工而成为近年来一种重要的建筑材料。使用轻质混凝土作为建筑材料,可以实现诸如材料经济,抗震,以及消除隔热和隔音的第二绝缘材料等效益。在本研究中;试验研究采用波特兰水泥(CEM I)、棕榈叶、CEN标准砂和水砂浆生产;试样制作、固化、部分物理力学实验分四个阶段进行。研究了棕榈叶(一种蔬菜废料)在混凝土生产中作为骨料的可用性,将其用CEN标准砂(含量为0、5、10、20、30和40%)以及水泥(含量为10%)代替。研究结果表明,棕榈叶碎骨料和棕榈叶碎骨料的掺入均显著改变了混凝土的几乎所有性能。这些变化在物理性质上是不同层次的。研究结果表明,随着泡沫用量的增加,扩散直径增大,而棕榈叶的加入使扩散直径减小。实验结果表明,棕榈叶的加入会随时间降低水处理深度,高棕榈叶加入量的试样孔隙率增大,抗压强度和抗弯强度降低。
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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