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Assessment of the recycling potential of fresh concrete waste using a factorial design of experiments

机译:使用析因设计评估新鲜混凝土废料的回收潜力

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摘要

Recycling of industrial wastes and by-products can help reduce the cost of waste treatment prior to disposal and eventually preserve natural resources and energy. To assess the recycling potential of a given waste, it is important to select a tool capable of giving clear indications either way, with the least time and work consumption, as is the case of modelling the system properties using the results obtained from statistical design of experiments. In this work, the aggregate reclaimed from the mud that results from washout and cleaning operations of fresh concrete mixer trucks (fresh concrete waste, FCW) was recycled into new concrete with various water/cement ratios, as replacement of natural fine aggregates. A 3~2 factorial design of experiments was used to model fresh concrete consistency index and hardened concrete water absorption and 7- and 28-day compressive strength, as functions of FCW content and water/ cement ratio, and the resulting regression equations and contour plots were validated with confirmation experiments. The results showed that the fresh concrete workability worsened with the increase in FCW content but the water absorption (5-10 wt.%), 7-day compressive strength (26-36 MPa) and 28-day compressive strength (32-44 MPa) remained within the specified ranges, thus demonstrating that the aggre gate reclaimed from FCW can be recycled into new concrete mixtures with lower natural aggregate content.
机译:工业废物和副产品的回收可以帮助降低废物处理前的处理成本,并最终保护自然资源和能源。为了评估给定废物的回收潜力,重要的是选择一种能够以最少的时间和工作量,以任何一种方式给出明确指示的工具,就像使用从统计设计中获得的结果对系统属性进行建模的情况一样。实验。在这项工作中,将新鲜混凝土搅拌车的冲洗和清洁操作(新鲜的混凝土废料,FCW)从泥浆中回收的骨料再循环到具有不同水灰比的新混凝土中,以代替天然细骨料。使用3〜2个因子设计的实验来模拟新鲜混凝土的稠度指数,硬化混凝土的吸水率以及7天和28天的抗压强度,作为FCW含量和水/水泥比的函数,并得出回归方程和轮廓图通过确认实验进行了验证。结果表明,随着FCW含量的增加,新鲜混凝土的可加工性恶化,但吸水率(5-10 wt。%),7天抗压强度(26-36 MPa)和28天抗压强度(32-44 MPa) )保持在规定范围内,因此表明从FCW回收的骨料门可以循环利用到天然骨料含量较低的新混凝土混合物中。

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  • 来源
    《Waste Management》 |2009年第11期|2886-2891|共6页
  • 作者单位

    State University of Santa Catarina, Centre of Technology Sciences (UDESC/CCT), 89223-100 Joinville-SC, Brazil;

    State University of Santa Catarina, Centre of Technology Sciences (UDESC/CCT), 89223-100 Joinville-SC, Brazil;

    State University of Santa Catarina, Centre of Technology Sciences (UDESC/CCT), 89223-100 Joinville-SC, Brazil;

    University of Aveiro, Department of Ceramics and Glass Engineering (CICEC0), University Campus, 3810-193 Aveiro, Portugal;

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