El Moudni El Alami Souad, Moussaoui Raja, Monkade Mohamed, Lahlou Khaled, Hasheminejad Navid, Margaritis Alexandros, Van den Bergh Wim, Vuye Cedric
Applied Geoscience Laboratory (LGA), Department of Geology, Mohamed First University, 60000 Oujda, Morocco.
Department of Physics, Chouaib Doukkali University, 24000 El Jadida, Morocco.
Materials (Basel). 2019 Aug 22;12(17):2674. doi: 10.3390/ma12172674.
Industrial waste causes environmental, economic, and social problems. In Morocco, the Jorf Lasfar Thermal Power Station produces two types of coal ash with enormous quantities: fly ash (FA) and Bottom ash (BA). FA is recovered in cement while BA is stored in landfills. To reduce the effects of BA disposal in landfills, several experimental studies have tested the possibility of their recovery in the road construction, especially as a subbase. In the first phase of this study, the BA underwent a physicochemical and geotechnical characterization. The results obtained show that the BA should be treated to improve its mechanical properties. The most commonly used materials are lime and cement. In the selected low-cost treatment, which is the subject of the second phase of the study, lime is used to improve the low pozzolanicity of BA while calcarenite sand is used to increase the compactness. Several mixtures containing BA, lime, and calcarenite sand were prepared. Each of these mixtures was compacted in modified Proctor molds and then subjected to a series of tests to study the following characteristics: compressive strength, dry and wet California Bearing Ratio (CBR), dry density and swelling. The composition of each mixture was based on an experimental design approach. The results show that the values of the compressive strength, the dry density, and the CBR index have increased after treatment, potentially leading to a valorization of the treated BA for use in a subbase.
工业废物会引发环境、经济和社会问题。在摩洛哥,乔夫拉斯法尔火力发电站产生了大量两种类型的煤灰:飞灰(FA)和底灰(BA)。飞灰被回收用于水泥生产,而底灰则被填埋。为了减少底灰填埋处置的影响,多项实验研究测试了将其用于道路建设,特别是作为底基层的可能性。在本研究的第一阶段,对底灰进行了物理化学和岩土特性表征。所得结果表明,底灰需要进行处理以改善其力学性能。最常用的材料是石灰和水泥。在本研究第二阶段所采用的选定低成本处理方法中,使用石灰来改善底灰的低火山灰活性,同时使用钙质砂来提高压实度。制备了几种包含底灰、石灰和钙质砂的混合物。将这些混合物分别在改进的普氏击实模具中压实,然后进行一系列测试以研究以下特性:抗压强度、干加州承载比(CBR)和湿加州承载比(CBR)、干密度和膨胀性。每种混合物的组成基于实验设计方法。结果表明,处理后抗压强度、干密度和CBR指数的值均有所提高,这可能会使处理后的底灰有用于底基层的价值。