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Development of eco-efficient self-compacting concrete with waste marble powder using the response surface method

机译:利用响应面法开发废弃大理石粉的生态高效自密实混凝土

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摘要

Marble sludge is a significant environmental problem for all countries that have a marble stone industry. The problem primarily originates from the impossibility of storing marble sludge. Absorbing, eliminating and recycling waste marble sludge are of great importance in terms of the environmental health, environmental pollution and economic loss of countries. This research study aimed at developing an eco-efficient, eco-friendly and workable self-compacting concrete with the maximum amount of marble powder using the Response Surface Methodology. First, the relationships were determined among the water-to-cement and marble powder-to-cement ratios and the responses, such as slump flow, T-50, V-funnel and compressive strength. Next, a multi-objective optimization technique was used to achieve an eco-efficient self-compacting mixture design with the maximum possible amount of marble powder. As a result, an eco-efficient SCC was obtained with the water-to-cement-ratios less than 0.55 and the marble powder-to-cement-ratios of up to 0.6. (C) 2016 Elsevier Ltd. All rights reserved.
机译:对于所有拥有大理石石材工业的国家来说,大理石污泥都是一个严重的环境问题。该问题主要源于无法储存大理石污泥。从国家的环境健康,环境污染和经济损失的角度来看,吸收,消除和回收废弃大理石污泥非常重要。这项研究旨在使用响应表面方法开发一种生态高效,生态友好且可使用的自密实混凝土,其中使用的大理石粉量最大。首先,确定水灰比和大理石粉灰比和响应(例如坍落度,T-50,V型漏斗和抗压强度)之间的关系。接下来,使用多目标优化技术以最大可能量的大理石粉实现生态高效的自密实混合物设计。结果,获得了生态效率高的SCC,其中水与水泥的比小于0.55,大理石粉与水泥的比高达0.6。 (C)2016 Elsevier Ltd.保留所有权利。

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