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Eco-friendly fired clay bricks incorporated with porcelain ceramic sludge

机译:掺有陶瓷污泥的环保烧制粘土砖

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Due to the limited natural clay resources, a shift to alternative resources for brick clay is a challenge in the construction industry. A possibility of brick clay replacement with ceramic sludge in manufacturing of eco-friendly bricks is investigated by evaluating strength, durability and thermal performances of bricks. For this purpose, clay bricks were manufactured by blending ceramic sludge in five mix proportions: 0%, 20%, 40%, 50% and 60% by weight. Raw materials were characterised by bulk density, specific gravity, sieve analysis, X-Ray Fluoresce (XRF) and X-Ray Diffraction (XRD) while the mixtures were characterised by Atterberg's limits. The bricks were characterised by dry weight, micro-structure, strength property (compressive strength), durability properties (i.e. water absorption, initial rate of sorption, acid and alkaline resistance, efflorescence), thermal performance and XRD patterns. Reduced dry weight was found with increasing ceramic sludge contents, promising a light weight clay brick. With 40% ceramic sludge, the optimum compressive strength was found to be 2.9 N/mm(2), indicating 32% strength improvement, comparing to the conventional brick. At 40% ceramic sludge, water absorption was 20.6%, satisfying the requirement for moderate weathering resistance. The acid and alkaline resistances of bricks increase with increasing ceramic sludge content, indicating that ceramic sludge contributes to increase durability performance of the brick. In addition, the bricks with 40% clay replacement yielded better thermal performances. At 12:30, when the day time temperature is expected to be the highest, 10.1 degrees C temperature difference was observed for the 40% ceramic sludge blended brick, whereas 4.2 degrees C difference was observed for the conventional brick. An eco-friendly brick with improved strength, durability and thermal properties can be achieved by 40% replacement of brick clay with ceramic sludge. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于天然粘土资源有限,在建筑业中向砖粘土替代资源的转换是一个挑战。通过评估砖的强度,耐久性和热性能,研究了在制造环保砖时用陶瓷污泥替代砖粘土的可能性。为此,通过以五种混合比例:0重量%,20%重量,40%重量,50%重量和60%重量混合陶瓷污泥来制造粘土砖。原料的特征在于堆积密度,比重,筛分分析,X射线荧光(XRF)和X射线衍射(XRD),而混合物则由Atterberg极限表征。砖的特征在于干重,微观结构,强度性质(抗压强度),耐久性性质(即吸水率,初始吸附速率,耐酸碱性,风化),热性能和XRD图。发现随着陶瓷污泥含量的增加,干重降低,有望成为轻质粘土砖。对于40%的陶瓷污泥,发现最佳抗压强度为2.9 N / mm(2),与传统砖相比,强度提高了32%。在40%的陶瓷污泥中,吸水率为20.6%,满足了中等耐候性的要求。砖的耐酸碱性随陶瓷污泥含量的增加而增加,表明陶瓷污泥有助于提高砖的耐久性能。此外,粘土替代量为40%的砖具有更好的热性能。在12:30,当预计白天温度最高时,对于40%的陶瓷污泥混合砖,观察到10.1℃的温差,而对于常规砖,观察到4.2℃的温差。可以通过用陶瓷污泥替代40%的砖粘土来实现强度,耐久性和热性能得到改善的环保砖。 (C)2019 Elsevier Ltd.保留所有权利。

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