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Effects of adding mineral adsorbents to porous concrete for enhancing the quality performance of urban runoff systems

机译:在多孔混凝土中添加矿物吸附剂以提高城市径流系统质量的效果

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Purpose - This study aims to use porous concrete and mineral adsorbents (additives) for reducing the quantity and improving the quality of urban runoff. Design/methodology/approach - The effects of adding mineral adsorbents and fine grains to porous concrete is tested for increasing its performance in improving the quality of urban runoff. Two levels of sand (10 and 20 per cent) and 5,10 and 15 per cent of zeolite, perlite, LECA and pumice were added to the porous concrete. Unconfined compressive strength, hydraulic conductivity (permeability) and porosity of the porous concrete specimens were measured. Some of the best specimens were selected for testing the improvement of runoff quality. A rainfall simulator was designed and the quality of the runoff was investigated for changes in electrical conductivity (EC), total suspended solids (TSS), total dissolved solids (TDS) and chemical oxygen demand (COD). Findings - The results of this study showed that compressive strength of the porous concrete was increased by adding fine grains to the concrete mixture. Fine grains decreased the permeability and porosity of the samples. Zeolite had the highest compressive strength. Samples having pumice own maximum permeability. Samples which had perlite, had the least compressive strength and permeability. Because of the fast flow of runoff water in the porous slab and its low thickness, sufficient time was not provided for effective functioning of the additives, and the removal percentage of the pollution parameters was low. Originality/value - Porous concrete can ameliorate both quantity and quality of the urban runoff.
机译:目的-本研究旨在使用多孔混凝土和矿物吸附剂(添加剂)来减少数量并提高城市径流的质量。设计/方法/方法-测试了向多孔混凝土中添加矿物吸附剂和细颗粒的效果,以提高其在改善城市径流质量方面的性能。向多孔混凝土中添加了两级砂(分别为10%和20%),5,10%和15%的沸石,珍珠岩,LECA和浮石。测量了多孔混凝土试样的无侧限抗压强度,水导率(渗透率)和孔隙率。选择了一些最佳样本来测试径流质量的改善。设计了降雨模拟器,并对径流质量进行了电导率(EC),总悬浮固体(TSS),总溶解固体(TDS)和化学需氧量(COD)变化的研究。发现-这项研究的结果表明,通过向混凝土混合物中添加细粒来提高多孔混凝土的抗压强度。细晶粒降低了样品的渗透性和孔隙率。沸石具有最高的抗压强度。具有浮石的样品具有最大的渗透性。具有珍珠岩的样品具有最小的抗压强度和渗透性。由于径流水在多孔板中流动快且厚度薄,因此没有为添加剂的有效作用提供足够的时间,污染参数的去除率也很低。原创性/价值-多孔混凝土可以改善城市径流的数量和质量。

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