疏浚污泥生态水泥对胶凝材料性能的影响

Riad Ali Halassa, M. Bibi, M. Chikouche
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摘要

本文试图模拟在大坝中使用淤泥中的绿色材料,并减少淤积对阿尔及利亚大坝的有害影响,这些大坝受到气候变化导致的频繁干旱和不规则降雨的影响。这些恶劣的天气条件是阿尔及利亚水土流失的主要原因,导致全国许多水坝的高淤积水平。因此,有必要对坝区内大量的污泥进行疏浚。本文对K 'sob大坝疏浚的污泥进行处理,并将处理后的污泥加入水泥中,形成一种混合粘合剂,可用于水泥材料的组成。具体来说,从K 'sob大坝中提取的污泥具有化学、物理、矿物学和机械特性,并作为水泥的替代品和普通混凝土/砂浆混合物的组成部分引入。首先对污泥进行煅烧活化,分别以10%、15%、20%的质量掺量加入水泥中。通过室内试验研究了以处理后的污泥为基础的胶凝材料(混凝土/砂浆)的力学性能,特别是在压缩条件下的力学性能。试验结果表明,该技术创新使成品具有强度高、经济、生态效益好的三大性能。所得结果令人鼓舞,有望对类似坝区的污泥进行优化利用。
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Behavior of Cementitious Materials under the Effect of an Eco-Cement Based on Dredged Sludge
This paper attempts to simulate the use of green materials from the silt in a dam, and reduce the harmful impacts of siltation on Algerian dams affected by frequent droughts and irregular rainfalls, which are resulted from climate change. These harsh weather conditions are the main cause of water erosion in Algeria, leading to a high silting level in many dams across the country. Therefore, it is necessary to dredge the considerable volumes of sludge in the dam areas. This paper treats the sludge dredged from the K’sob dam, and adds the treated sludge into cement, creating a hybrid binder that can be used in composition of cementitious materials. Specifically, the sludge extracted from the K’sob dam was characterized chemically, physically, mineralogically, and mechanically, and introduced both as a substitute of cement and a component in the mixture of ordinary concrete/mortar. The sludge was firstly activated through calcination, and added to cement at the mass dosages of 10%, 15%, and 20% separately. The mechanical behavior, especially that under compression, of cementitious materials (concrete/mortar) based on the treated sludge was studied through lab tests. The test results show that this technical innovation gives the finished product three major properties, namely, high strength, economy, and a beneficial ecological impact. The results obtained are encouraging and promise an optimal exploitation of the sludge from similar dam areas.
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