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自制填料与常用湿地填料除磷能力的比较
引用本文:刘汤勋,尤朝阳,万玉龙. 自制填料与常用湿地填料除磷能力的比较[J]. 环境工程学报, 2012, 6(3): 873-877
作者姓名:刘汤勋  尤朝阳  万玉龙
作者单位:南京工业大学环境学院,南京,210009
基金项目:江苏省自然科学基金资助项目(BK2008380);南京工业大学青年教师学术基金重点资助项目;江苏省环境工程重点实验室开放基金资助项目(KF2010001))
摘    要:用石英砂、石灰、水泥和铝粉等材料制作人工湿地填料,并对自制填料、粉煤灰块和钢渣等6种填料的等温吸附特性进行研究,发现自制填料在较低与较高浓度P溶液中吸附率都最高,在P浓度为(10~50 mg/L)时,平均吸附率达96.8%,其次是粉煤灰和钢渣,分别为87.6%和85.4%;填料对P的理论饱和吸附量分别为:自制填料(2 413.6 mg/kg)>粉煤灰块(1 605.8 mg/kg)>钢渣(1 277.5 mg/kg)>碎砖(451.6 mg/kg)>碎石(182.5 mg/kg)>砾石(18.4 mg/kg);填料中金属矿物成分含量高、比表面积大,是除P效果好的原因。

关 键 词:人工湿地  自制填料  吸附磷

Comparison of phosphorus adsorption capacity of homemade substrate and common constructed wetland substrates
Liu Tangxun,You Zhaoyang and Wan Yulong. Comparison of phosphorus adsorption capacity of homemade substrate and common constructed wetland substrates[J]. Techniques and Equipment for Environmental Pollution Control, 2012, 6(3): 873-877
Authors:Liu Tangxun  You Zhaoyang  Wan Yulong
Affiliation:Liu Tangxun You Zhaoyang Wan Yulong(College of Environmental Science and Engineering,Nanjing University of Technology,Nanjing 210009,China)
Abstract:A bench scale experiment was conducted to investigate the phosphorus adsorption characteristics of six substrates(homemade substrate,fly ash blocks,slag,et al) in constructed wetland.The results showed that the highest absorption rate of homemade substrate which was made of sand,lime,cement and aluminum appeared in both the lower and higher concentration phosphorus solution.For example,the average absorption rate reached 96.8% when the concentration of phosphorus was at the level of 10~50 mg/L,followed by fly ash and slag,87.6 and 85.4%,respectively.The phosphorus adsorption capacity of six substrates was homemade substrate(2 413.6 mg/kg)>fly ash block(1 605.8 mg/kg)> slag(1 277.5 mg/kg)> broken bricks(451.6 mg/kg)> broken stone(182.5 mg/kg)>gravel(18.4 mg/kg),respectively.The reasons for good effect of phosphorus removal were high concentration of metal mineral and large surface area of substrate.
Keywords:constructed wetland  homemade substrate  adsorption phosphorus
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