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Recycling drinking water treatment sludge into eco-concrete blocks with CO_2 curing: Durability and leachability

机译:用CO_2固化回收饮用水处理污泥进入生态混凝土块:耐用性和透明性

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摘要

Drinking water treatment sludge (DWTS) can be recycled into low-strength concrete blocks for construction use. The sodium sulfate resistance and leaching behaviours of the DWTS-derived blocks are investigated in this study. The experimental results show that the addition of DWTS degrades the sodium sulfate resistance of the concrete blocks, however CO_2 curing compensates for such property, especially in the case of blocks incorporating 30% DWTS. The improvement can be attributed to the formation of crystalline CaCO_3 during CO_2 curing for micro-structure refinement evidenced by X-ray Computed Tomography and Scanning Electron Microscopy. Leaching analyses show that Cu and Al concentrations increased with increasing DWTS content, and CO_2 curing adversely increased the leachability of metals due to the decrease of pH, especially at early leaching stage. Nevertheless, the total leaching concentrations of Cu and Al after 60-day test is far below the prescribed limitations, regardless of samples subject to air curing or CO_2 curing. In summary, sludge-derived blocks exposed to CO_2 curing are safe and behave well in aggressive environments. Therefore, this study showcases a green technology that successfully recycling DWTS into value-added and durable concrete blocks with low environmental impacts.
机译:饮用水处理污泥(DWT)可再循环到低强度混凝土砌块中,用于施工。在本研究中研究了DWTS衍生的嵌段的硫酸钠抗性和浸出行为。实验结果表明,添加DWTS降低了混凝土块的硫酸钠抗性,但是CO_2固化补偿了这种性质,特别是在包含30%DWT的嵌段的情况下。改善可以归因于在CO_2固化过程中形成结晶Caco_3,用于通过X射线计算机断层扫描和扫描电子显微镜证明的微结构细化。浸出分析表明,Cu和Al浓度随着DWTS含量的增加而增加,CO_2固化由于pH的降低而导致金属的可浸出性增加,特别是在早期浸出阶段。然而,无论通过空气固化或CO_2固化的样品如何,60天测试后,Cu和Al的总浸出浓度远低于规定的限制。总之,暴露于CO_2固化的污泥衍生的块是安全的,在侵略性环境中表现得很好。因此,本研究展示了一种绿色技术,即成功地将DWT再循环到具有低环境影响的增值和耐用的混凝土块中。

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