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Environmental Sustainability by Bulk Utilization of Fly Ash and GBFS as Road Subbase Materials

机译:大量利用粉煤灰和GBFS作为道路基层材料的环境可持续性

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The underutilization of fly ash, in contrast with its generation, and scarcity of natural aggregates paved the way to unconventional construction approaches, thereby ensuring environmental stability by preserving valuable land from huge waste dumps and protecting fast depleting natural aggregate resources. In this work, fly ash stabilized with lime and granulated blast furnace slag (GBFS) are studied to assess their utility as a subbase material in flexible pavements. Laboratory investigations were carried out to determine compaction characteristics, unconfined compressive strength, California bearing ratio (CBR), shear strength parameters, and elastic modulus to obtain optimum mixtures of fly ash-lime (FAL) and fly ash-GBFS (FAG), respectively. Both optimum mixes satisfied the minimum strength criteria stipulated by the Indian Road Congress (IRC) for a material to be used as a subbase layer in a flexible pavement. To validate the feasibility of construction, service life, and cost efficiency of pavement constructed with these mixtures, six different test sections were constructed with FAL and FAG in the subbase layers and compared with one constructed with conventional granular subbase (GSB). Proper quality control was maintained throughout the construction of test sections by carrying out field dry density, lightweight deflectometer (LWD), and field CBR tests on the finished subbase layers. On the basis of the initial structural evaluation of pavement sections by a falling weight deflectometer (FWD) test, it was found that both FAL and FAG can effectively replace conventional GSB.
机译:与粉煤灰的产生相比,粉煤灰的未充分利用以及天然骨料的稀缺为非常规的施工方法铺平了道路,从而通过保护宝贵的土地免遭巨大的垃圾场和保护快速消耗的天然骨料资源,从而确保了环境的稳定性。在这项工作中,研究了用石灰和粒状高炉矿渣(GBFS)稳定的粉煤灰,以评估它们在柔性路面中作为基础材料的用途。进行了实验室研究,以确定压实特性,无侧限抗压强度,加利福尼亚承载比(CBR),抗剪强度参数和弹性模量,分别获得粉煤灰-石灰(FAL)和粉煤灰-GBFS(FAG)的最佳混合物。两种最佳混合物均满足印度道路大会(IRC)规定的最低强度标准,该标准规定了在柔性路面中用作基础层的材料。为了验证使用这些混合物建造的人行道的可行性,使用寿命和成本效益,在基层中使用FAL和FAG构造了六个不同的测试区域,并与使用常规粒状基层(GSB)进行了比较。通过对成品基层进行现场干密度,轻型挠度计(LWD)和现场CBR测试,可以在整个测试区域的构建过程中保持适当的质量控制。在通过落锤挠度计(FWD)测试对路面断面进行初步结构评估的基础上,发现FAL和FAG均可有效替代传统的GSB。

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