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Spent Coffee Grounds-Fly Ash Geopolymer Used as an Embankment Structural Fill Material

机译:用过的咖啡渣-粉煤灰土聚合物用作路堤结构填充材料

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The drinking of coffee forms a deep-rooted pastime in many communities worldwide. However, the culture of coffee drinking generates vast quantities of organic waste that ends up in landfills. Current research trends are inclined towards recycling of waste materials into alternative construction materials, hence the need to research sustainable uses for spent coffee grounds. Coffee grounds (CG) are highly organic with a very high percentage of biodegradable material. The objective of this research was to study the strength development of CG when used as a geopolymer stabilized embankment structural fill material aiming for a better understanding of geopolymer stabilization of highly organic material. Fly ash (FA), being a silica and alumina rich material, was used as a precursor. A liquid alkaline activator, L, being a sodium hydroxide-sodium silicate solution was used for alkali activation of FA in the CG-FA geopolymer. Factors found to affect strength development of the CG-FA geopolymer were: (1) the ratio of sodium hydroxide and sodium silicate in the activator liquid; (2) the curing time; (3) the replacement ratio of FA in the CG; (4) the alkalinity of the activator liquid used; and (5) the curing temperature. Optimally, FA can constitute up to 30% of the CG-FA mix for efficient geopolymerization to occur. The concentration of sodium hydroxide can be increased up to 12 mol before the strength development-to-alkalinity ratio decreases. The highest strength was found to occur when the curing temperature was 50℃. By introducing 30% of FA into CG, an efficient geopolymer can be synthesized with a L/FA ratio of 1.8 and a Na_2SiO_3:Na0H ratio of 50:50, which provides the maximum 7-day strength. California Bearing Ratio tests conducted on the CG-FA geopolymer, confirm that it is possible to use geopolymer stabilized CG as an embankment structural fill or subgrade material. Geopolymerization products will further encapsulate and bind the organics in CG, eliminating their potential to biodegrade, which attest to the efficacy of geopolymers as an alternative stabilization agent for highly organic soils.
机译:喝咖啡已成为世界上许多社区的根深蒂固的消遣方式。但是,喝咖啡的文化会产生大量有机废物,最终被填埋。当前的研究趋势倾向于将废料再循环到替代建筑材料中,因此需要研究废咖啡渣的可持续利用。咖啡渣(CG)是高度有机的,具有很高比例的可生物降解材料。这项研究的目的是研究CG用作地聚合物稳定路堤结构填充材料时的强度发展,目的是更好地了解高度有机材料的地聚合物稳定性。粉煤灰(FA)是富含二氧化硅和氧化铝的材料,被用作前体。液态碱活化剂L,即氢氧化钠-硅酸钠溶液,用于CG-FA地质聚合物中FA的碱活化。已发现影响CG-FA地质聚合物强度发展的因素有:(1)活化剂液体中氢氧化钠和硅酸钠的比例; (2)固化时间; (3)CG中FA的置换率; (4)所用活化剂液体的碱度; (5)固化温度。最佳地,FA可以构成CG-FA混合物的30%,以进行有效的地聚。在强度发展与碱度之比降低之前,氢氧化钠的浓度可增加至12 mol。当固化温度为50℃时,强度最高。通过将30%的FA引入CG,可以合成有效的地质聚合物,其L / FA比为1.8,Na_2SiO_3:NaOH比为50:50,可提供最大的7天强度。在CG-FA地聚合物上进行的加利福尼亚承载比测试证实,可以使用稳定的地聚合物CG作为路堤结构填料或路基材料。地聚产物将进一步封装并结合CG中的有机物,消除其生物降解的潜力,这证明了地聚体作为高有机土壤的替代稳定剂的功效。

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