Ketahanan Beton Normal Terhadap Air Gambut Di Kota Palangka Raya

Noviyanthy Handayani
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引用次数: 2

Abstract

The city of Palangka Raya has these peatlands spread across several regions including populated areas. This needs special attention in the world of concrete construction because the peatland has peat water with a high level of organic matter, low acidity (pH) which results in acidic water. The acidity of peat water will cause problems in concrete construction because it will affect the physical and mechanical properties of concrete which will make the concrete corrosive. This research method is by making 27 K-250 concrete samples, each of which three examples will be immersed in peat water, Kahayan river water, and tap water for one month, two months and three months. The results showed that the concrete soaked in peat water had the most significant decline compared to the concrete soaked in Kahayan river water and tap water, which was 8.798% of the planned concrete compressive strength of 250 kg / cm2 while the concrete with river water immersion decreased by 5.882% and tap water immersion 2.966% from the planned concrete compressive strength of 250 kg / cm2.
在大保兰州,对泥炭水体的正常抵抗力
帕朗卡拉雅市的泥炭地分布在包括人口稠密地区在内的几个地区。这在混凝土施工中需要特别注意,因为泥炭地的泥炭水含有高水平的有机物,低酸度(pH值)导致酸性水。泥炭水的酸性会影响混凝土的物理力学性能,使混凝土具有腐蚀性,在混凝土施工中会出现问题。本研究方法是制作27个K-250混凝土样品,每样3个样品分别浸入泥炭水、卡哈延河水和自来水中1个月、2个月和3个月。结果表明:泥炭水浸泡混凝土与卡哈岩河水和自来水浸泡混凝土相比,混凝土抗压强度下降幅度最大,为250 kg / cm2计划混凝土抗压强度的8.798%,河水浸泡混凝土和自来水浸泡混凝土的抗压强度分别为250 kg / cm2计划混凝土抗压强度的5.882%和2.966%。
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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