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Removal effect on stormwater runoff pollution of porous concrete treated with nanometer titanium dioxide

机译:纳米二氧化钛对多孔混凝土雨水径流污染的去除作用

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Development of the cities is facing many problems; one of them is runoff water pollution. On the other hand, some technologies have been applied to remove water pollution such as the photocatalytic effect method using nano-titanium dioxide (nTiO(2)). That technology exhibited a significant effect to remove various pollutants from runoff water. The use of nTiO(2) on porous concrete (TPC) considers a new technology, which is effective and clean technology to deal with the non-point source pollution. In this paper, the permeability, mechanical properties and water purification capacity of using that technology have been investigated to analyze the environmental effect of TPC. In addition, this study tested the environmental impact using zebrafish aquatic toxicity and alkali dissolution experimentally. Moreover, the photocatalytic oxidation reaction of TPC is exploited to detect the purification effects of three typical pollutants, i.e., methylene blue, total phosphorus, and ammonia nitrogen. At the same time, three different application methods with three different concentrations of nTiO(2) have been utilized in the porous concrete to obtain the optimum value. The removal effectiveness in pollutants is also measured, moreover the purification durability effectiveness is tested. After culturing the zebrafish embryos in the leachate of porous concrete with nTiO(2), the hatching rate was 91.7%, which proved that this technology has little aquatic toxicity to organism and environment. The capacity of pollutants removing was effective and reached up to 60%-90%. Besides, porous concrete treated by nTiO(2) that was placed in actual weather for a month showed a half reduction in water purification effect.
机译:城市发展面临许多问题。其中之一是径流水污染。另一方面,一些技术已应用于消除水污染,例如使用纳米二氧化钛(nTiO(2))的光催化效应方法。该技术显示出从径流水中去除各种污染物的显着效果。在多孔混凝土(TPC)上使用nTiO(2)考虑了一项新技术,该技术有效且清洁,可以处理面源污染。本文研究了使用该技术的渗透性,机械性能和净水能力,以分析TPC的环境影响。此外,本研究还使用斑马鱼的水生毒性和碱溶解度试验性地测试了环境影响。此外,利用TPC的光催化氧化反应来检测三种典型污染物,即亚甲基蓝,总磷和氨氮的净化效果。同时,在多孔混凝土中使用了三种具有三种不同浓度的nTiO(2)的不同施加方法,以获得最佳值。还测量了污染物的去除效果,此外还测试了净化持久性效果。用nTiO(2)在多孔混凝土渗滤液中培养斑马鱼胚胎后,孵化率为91.7%,证明该技术对生物和环境几乎没有水生毒性。去除污染物的能力是有效的,达到了60%-90%。此外,在实际天气中放置一个月的nTiO(2)处理的多孔混凝土的净水效果降低了一半。

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