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Physical and mechanical properties of cement mortar containing fine sand contaminated with light crude oil

机译:含有轻质原油的水泥砂浆的物理和力学性能

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Oil contaminated sand resulting from oil leakage has continuously been a major environmental concern worldwide. This problem affects the physical and chemical properties of the surrounding soil. Due to prohibitive cost of the existing remediation methods for oil contaminated sand, mixing them with cement and using in construction is considered as a cheaper alternative. In this study, the effect of light crude oil contamination on the physical and mechanical properties of cement mortar was investigated. Fine sand with different percentages of light crude oil by weight ranging from 0% to 10% was mixed with Ordinary Portland cement and cured in a fog room. The compressive strength of the cement mortar was then determined at 7, 14 and 28 days. Results showed that the workability and the total porosity of the cement mortar increased as the amount of crude oil increases. Moreover, the compressive strength increased with the increasing curing time for all specimens. The cement mortar containing fine sand with 1% light crude oil exhibited the highest compressive strength, which is 18%, 30% and 17% higher than the uncontaminated samples at 7, 14 ad 28 days, respectively. Interestingly, the cement mortar with up to 2% oil contamination has higher compressive strength than the 0% oil contamination while increasing the crude oil content more than 2% and up to 10% cause a reduction in the compressive strength by 50%. Still, the strength properties of mortar with oil contaminated sand up to 10% are suitable for landfill layering and production of bricks results indicating their high potential and beneficial use as a sustainable material in civil engineering and construction.
机译:油泄漏产生的油污砂污染砂在全球范围内不断受到全球的重大环境问题。这个问题影响了周围土壤的物理和化学性质。由于现有的油污染砂的现有修复方法的禁止成本,将它们与水泥混合并在施工中使用,被认为是更便宜的替代品。在这项研究中,研究了光原油污染对水泥砂浆物理和力学性能的影响。用不同百分比的浅色原油百分比从0%达到10%的细砂与普通的波特兰水泥混合,并在雾房中固化。然后在7,14和28天测定水泥砂浆的抗压强度。结果表明,随着原油量的增加,水泥砂浆的可加工性和总孔隙率增加。此外,抗压强度随着所有标本的增加而增加。含有1%光原油的细砂的水泥砂浆表现出最高的压缩强度,比分别比未污染的样品高出18%,30%和17%,分别在28天的未污染样品。有趣的是,高达2%的油污染的水泥砂浆比0%的油污污染更高,同时增加了原油含量超过2%,高达10%导致抗压强度降低50%。尽管如此,高达10%砂浆的砂浆的强度特性适用于垃圾填埋层和生产砖的生产结果,表明其在土木工程和建筑中的可持续材料的高潜力和有益的用途。

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