[1] 王罗春,赵由才.建筑垃圾处理与资源化[M].北京:化学工业出版社,2004:9.
[2] Townsend T G,Jang Y,Thurn L G.Simulation of construction and demolition waste leachate[J].J.Environ.Eng.,1999,125 (11):1071-1081.
[3] 刘建明,吴叔兵.碱性废水处理及回收利用研究进展[J].中国资源综合利用,2008,26(9):36-39.
[4] Koryak M,Stafford L J,Reilly R J,et al.Impacts of steel mill slag leachate on the water quality of a small Pennsylvania stream[J].J.Freshwater Ecol.,2002,17:461-465.
[5] Carlson C L,Adriano D C.Environmental impacts of coal combustion residues[J].Journal of Environmental Quality,1993,22 (2):227-247.
[6] 吴莲花.建筑环保与环境污染控制[J].国外建材科技,2007,28(6):115-118.
[7] 牛跃林,骆凤平,吴强,等.浅谈建筑施工现场的环境污染与防治措施[J].资源环境与工程,2006,20(3):268-283.
[8] 余必敏.工业废水处理与利用[M].北京:科学出版社,1979:21.
[9] Effler S W,Brooks C M,Addess J M,et al.Pollutant loadings from solvay waste beds lower Ninemile Creek,New York[J].Water,Air,Soil Pollut.,1991,55 (3/4):427-444.
[10] Forbes A M,Magnuson J J,Harrell D M.Effects of habitat modification from coal ash effluent on stream macroinvertebrates:A synthesis[M].Lawrence,KS:American Fisheries Society,Allen Press,1981:58.
[11] Schramke J A.Neutralization of alkaline coal fly ash leachates by CO2(g)[J].App.Geochem.,1992,7(5):481-492.
[12] Matthews D A,Effler S W.Decreases in pollutant loading from residual soda ash production waste[J].Water,Air,Soil Pollut.,2003,146(1/2/3/4):55-73.
[13] Dunbabin J S,Bowmer K H.Potential use of constructed wetlands for treatment of industrial wastewaters containing metal[J].Sci.Total Environ.,1992,111 (2/3):151-168.
[14] 汪俊三.植物碎石床人工湿地污水处理技术和我的工程案例[M].北京:中国环境科学出版社,2009:88.
[15] Mayes W M,Batty L C,Younger P L,et al.Wetland treatment at extremes of pH:A review[J].Sci.Total Environ.,2009,407 (13):3944-3957.
[16] Ross S M.Overview of the hydrochemistry and solute processes in British wetlands[M].UK:John Wiley,1987:133.
[17] Clark I D,Fontes J C,Fritz P.Stable isotope disequilibria in travertine from high pH waters:Laboratory investigations and field observations from Oman[J]. Geochim. Cosmochim.Acta,1992,56(5):2041-2050.
[18] Mayes W M,Younger P L,Aum(o)nier J.Buffering of alkaline steel slag leachate across a natural wetland[J]. Environ. Sci.Technol.,2006,40(4):1237-1243.
[19] Orup(o)ld K,Tenno T,Henrysson T.Biological lagooning of phenols-containing oil shale ash heaps leachate[J].Water Res.,2000,34 (18):4389-4396.
[20] Mayes W M,Large A R,Younger P L.The impact of pumped water from a de-watered Magnesian limestone quarry on an adjacent wetland:Thrislington,County Durham,UK[J]. Environ.Pollut.,2005,138(3):443-454.
[21] Tartuis W J,Stark L R,Williams F M.Sizing and performance estimation of coal mine drainage wetlands[J].Ecol.Eng.,1999,12 (3/4):353-372.
[22] Manyin T,Williams F M,Stark L R.Effects of iron concentration and flow rate on coal mine drainage in wetland mesocosms:An experimental approach to sizing of constructed wetlands[J]. Ecol.Eng.,1997,9(3/4):171-185.
[23] Mayes W M,Younger P L,Aum(o)nier J.Hydrogeochemistry of alkaline steel slag leachates in the UK[J].Water,Air,Soil Pollut.,2008,195 (1/2/3/4):35-50.
[24] Mayes W M,Aum(o)nier J,Jarvis A P.Preliminary evaluation of a constructed wetland for treating extremely alkaline (pH 12) steel slag drainage[J].Water Sci.Technol.,2009,59 (11):2253-2263.
[25] Whitehead P G,Hall G,Neal C.Chemical behaviour of the Wheal Jane bioremediation system[J].Sci.Total Environ.,2005,338:41-51.
[26] Rowell D L.Soil acidity and alkalinity[M].11th ed.England:Longman Scientific and Technical,1988:844.
[27] Bradshaw A D.The reconstruction of ecosystems[J].J.Appl.Ecol.,1983,20(1):1-17.
[28] Mayes W M.Limestone extraction and wetland environments: Hydrological,hydrochemical and ecological interactions[D].Newcastle upon Tyne:University of Newcastle upon Tyne,2003. |