首页> 外文期刊>Water Research >Phosphorus retention capacity of filter media for estimating the longevity of constructed wetland
【24h】

Phosphorus retention capacity of filter media for estimating the longevity of constructed wetland

机译:估算人工湿地寿命的过滤介质的磷保持能力

获取原文
获取原文并翻译 | 示例
           

摘要

The filter medium could be selected and the longevity of the filter medium by the phosphorus saturation could be predicted in the constructed wetland system, accordingly proposing the scheme to remove the phosphorus for a long period. The phosphorus adsorption capacities of various filter media were investigated in relation to the size and types of filter media to screen the optimal condition. The objective of this study was to evaluate the constructed wetland longevity by improving P adsorption capacity. The maximum P adsorption capacities of filter media A (4-10 mm), B (2-4mm), and C (0.1-2mm) were 7.7, 11.6, and 22.5mg/kg, respectively, showing that they increased as the filter media size decreased. Among the experimental media, the optimal filter media size was 0.1-2 mm. When Ca, Mg, Al and Fe were added to the filter medium C, which is the optimal filter medium, the addition of Ca improved mostly the P adsorption capacity. In the alternative proposal to use these facts, the oyster shell was added to the filter medium and the P adsorption capacity was examined: adding 2% oyster shell increased the P adsorption capacity from 23 to 36mg/ kg. In the column where the oyster shell was mixed, when the oyster shell content was 5%, 10%, 20%, 40%, 60%, 80%, and 100% in the filter medium C, the respective saturation times of the P adsorption were about 6, 9, 17, 30, 43, 56, and 70 days. When the oyster shell content was 0%, 5%, 10%, 20%, 40%, 60%, 80%, and 100% after 1 month in the column, the P adsorption amount was about 180, 600, 1560, 4280, 6157, 7089, 7519, and 7925 mg/kg, respectively. The increment of the P adsorption amount was small if the oyster shell content was 60% or more, because the filter medium with more than 60% oyster shell content did not approach the saturation time by the P adsorption yet. The P adsorption amount for 60%, 80%, and 100% could be predicted as about 9702, 12,879, and 16,056 mg/kg, respectively. The largest amount of extracted P in the filter media with oyster shell after 30 days of P solution application was bound to Ca, followed by water soluble-P, Al-P, and Fe-P. Therefore, it was concluded that the adsorption amount of the phosphorus could be increased by adding the oyster shell to the filter medium. Also, it was concluded that adding the oyster shell to the filter medium in the constructed wetland was the scheme to extend the longevity of the constructed wetland by the phosphorus saturation, and using the oyster shell would be useful in aspect of economical efficiency and easiness. Especially, it would be the alternative proposal to reduce the environmental pollution in aspect of recycling wastes.
机译:在人工湿地系统中,可以选择过滤介质,并通过磷饱和度来预测过滤介质的寿命,因此提出了长期去除磷的方案。根据滤料的尺寸和类型,研究了各种滤料对磷的吸附能力,以筛选最佳条件。这项研究的目的是通过提高磷的吸附能力来评估人工湿地的寿命。过滤介质A(4-10 mm),B(2-4mm)和C(0.1-2mm)的最大P吸附容量分别为7.7、11.6和22.5mg / kg,表明它们随着过滤器的增加而增加介质尺寸减小。在实验介质中,最佳过滤介质尺寸为0.1-2 mm。当将Ca,Mg,Al和Fe添加到作为最佳过滤介质的过滤介质C中时,Ca的添加大部分地提高了P的吸附能力。在利用这些事实的替代建议中,将牡蛎壳添加到过滤介质中并检查了P的吸附能力:添加2%的牡蛎壳将P的吸附能力从23mg / kg增加到36mg / kg。在混合牡蛎壳的塔中,当过滤介质C中的牡蛎壳含量为5%,10%,20%,40%,60%,80%和100%时,P的各自饱和时间吸附时间约为6、9、17、30、43、56和70天。 1个月后,当牡蛎壳含量为0%,5%,10%,20%,40%,60%,80%和100%时,P的吸附量约为180、600、1560、4280。分别为6157、7089、7519和7925 mg / kg。如果牡蛎壳含量为60%以上,则P吸附量的增量小,这是因为牡蛎壳含量超过60%的过滤介质还没有达到通过P吸附的饱和时间。可以预测60%,80%和100%的P吸附量分别约为9702、12879和16056 mg / kg。施用磷溶液30天后,在带有牡蛎壳的过滤介质中提取的大量磷与钙结合,然后与水溶性磷,铝磷和铁磷结合。因此,可以得出结论,通过将牡蛎壳添加到过滤介质中可以增加磷的吸附量。另外,可以得出结论,将牡蛎壳添加到人工湿地的过滤介质中是通过磷饱和度延长人工湿地的寿命的方案,并且使用牡蛎壳在经济效率和便利性方面将是有用的。特别是减少回收废物方面的环境污染将是另一种建议。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号