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首页> 外文期刊>Journal of materials in civil engineering >Characterizing Cold Bituminous Emulsion Mixtures Comprised of Palm Leaf Ash
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Characterizing Cold Bituminous Emulsion Mixtures Comprised of Palm Leaf Ash

机译:表征棕榈叶灰组成的冷沥青乳液混合物

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摘要

Cold bitumen emulsion mixtures (CBEMs) are a promising substitute for hot mix asphalt (HMA) due to their low environmental impact, cost effectiveness, and low energy production costs. Nevertheless, conventional CBEM has some disadvantages, mainly related to the long curing time required to reach its full strength and its higher susceptibility to moisture. This paper reports the experimental test results of research that aimed to investigate and develop a new CBEM containing a waste biomass material, palm leaf ash (PLA), a waste material produced by burning palm leaves. The new CBEM was compared with a conventional cold mix (CCM) as a control. The tests to assess the mixtures' mechanical properties were the Marshall test, indirect tensile strength, and wheel track test. Durability was evaluated by water sensitivity and aging tests. The results revealed noticeable improvements in the mechanical properties of the CBEMs comprising ordinary portland cement (OPC), and raised the possibility of replacing some of the OPC with PLA without compromising said improvements. Results have shown that the new CBEMs with PLA achieved outstanding results in comparison with traditional CBEM, with and without the addition of OPC. There was also a significant improvement in water sensitivity when using PLA. This paper therefore opens the door for the development of new CBEMs that have outstanding mechanical characteristics when made with biomass ash materials.
机译:冷沥青乳液混合物(CBEM)由于对环境的影响小,成本效益高且能源生产成本低,因此有望替代热拌沥青(HMA)。然而,常规的CBEM具有一些缺点,主要与达到其全部强度所需的较长的固化时间以及较高的湿气敏感性有关。本文报告了研究的实验测试结果,旨在研究和开发一种新的CBEM,其中包含一种废弃的生物质材料,棕榈叶灰(PLA),一种通过燃烧棕榈叶产生的废料。将新的CBEM与常规冷拌料(CCM)进行比较。评估混合物力学性能的测试是马歇尔测试,间接拉伸强度和轮距测试。通过水敏感性和老化测试评估耐久性。结果表明,包含普通硅酸盐水泥(OPC)的CBEM的机械性能有了显着改善,并增加了用PLA替代某些OPC而又不损害上述改进的可能性。结果表明,与添加或不添加OPC的传统CBEM相比,带有PLA的新型CBEM取得了出色的结果。使用PLA时,水敏感性也有了显着提高。因此,本文为新型CBEM的开发打开了大门,这些CBEM用生物质灰分材料制成时具有出色的机械特性。

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