Hudnell HK,Jones C,Labisi B et al. Freshwater harmful algal bloom (FHAB) suppression with solar powered circulation (SPC). Harmful Algae,2010,9(2):208-217.
[7]
Prepas EE,Burke JM. Effects of hypolimnetic oxygenation on water quality in Amisk Lake,Alberta,a deep,eutrophic lake with high internal phosphorus loading rates. Can J Fish Aquat Sci,1997,54(9):2111-2120.
[8]
Van Hullebusch E,Deluchat V,Chazal PM et al. Environmental impact of two successive chemical treatments in a small shallow eutrophied lake:Part I. Case of aluminium sulphate. Environ Pollut,2002,120(3):617-626.
[9]
Ma J,Liu W. Effectiveness and mechanism of potassium ferrate(VI) preoxidation for algae removal by coagulation. Water Res,2002,36(4):871-878.
[10]
Ji RP,Lu XW,Li XN et al. Biological degradation of algae and microcystins by microbial enrichment on artificial media. Ecol Eng,2009, 35(11):1584-1588.
[11]
更多...
[12]
Gulati RD,van Donk E. Lakes in the Netherlands,their origin,eutrophication and restoration:state-of-the-art review. Hydrobiologia,2002,478(1/2/3):73-106.
Pan G,Yang B,Wang D et al. In-lake algal bloom removal and submerged vegetation restoration using modified local soils. Ecol Eng,2011, 37(2):302-308.
[15]
Pan G,Chen J,Anderson DM. Modified local sands for the mitigation of harmful algal blooms. Harmful Algae,2011, 10(4):381-387.
[16]
Zou H,Pan G,Chen H et al. Removal of cyanobacterial blooms in Taihu Lake using local soils. Ⅱ. Effective removal of Microcystis aeruginosa using local soils and sediments modified by chitosan. Environ Pollut,2006, 141(2):201-205.
[17]
Pan G,Zou H,Chen H et al. Removal of harmful cyanobacterial blooms in Taihu Lake using local soils. Ⅲ. Factors affecting the removal efficiency and an in situ field experiment using chitosan-modified local soils. Environ Pollut,2006,141(2):206-212.
Yan H,Pan G,Zou H et al. Effective removal of microcystins using carbon nanotubes embedded with bacteria. Chinese Sci Bull,2004,49(16):1694-1698.
[25]
Gilbert N. The disappearing nutrient. Nature,2009,461(7265):716-718.
[26]
Guo L. Doing battle with the green monster of Taihu Lake. Science,2007,317(5842):1166.
[27]
Elser J,Bennet E. A broken biogeochemical cycle. Nature,2011, 478(7367):29-31.
[28]
Pan G,Dai L,Li L et al. Reducing the recruitment of sedimented algae and nutrient release into the overlying water using modified soil/sand flocculation-capping in eutrophic lakes. Environ Sci Technol,2012,46(9):5077-5084.
Yuan XZ,Pan G,Chen H et al. Phosphorus fixation in lake sediments using LaCl3-modified clays. Ecol Eng,2009, 35(11):1599-1602.
[31]
Robb M,Greenop B,Goss Z et al. Application of Phoslock (TM),an innovative phosphorus binding clay,to two Western Australian waterways:preliminary findings. Hydrobiologia,2003,294(1/2/3):237-243.
[32]
Gibbs MM,Hickey CW,Ozkundakci D. Sustainability assessment and comparison of efficacy of four P-inactivation agents for managing internal phosphorus loads in lakes:sediment incubations. Hydrobiologia,2011,658(1):253-275.
[33]
Wu YH,Liu JT,Yang LZ et al. Allelopathic control of cyanobacterial blooms by periphyton biofilms. Environ Microbiol, 2011, 13(3):604-615.
[34]
Prepas EE,Pinel-Alloul B,Chambers PA et al. Lime treatment and its effects on the chemistry and biota of hardwater eutrophic lakes. Freshwater Biol,2001, 46(8):1049-1060.
[35]
Hu W,Zhai S,Zhu Z et al. Impacts of the Yangtze River water transfer on the restoration of Lake Taihu. Ecol Eng, 2008, 34(1):30-49.
[36]
Chen J,Pan G. Harmful algal blooms mitigation using clay/soil/sand modified with xanthan and calcium hydroxide. J Appl Phycol,2011(DOI:10. 1007/s10811-011-9751-7).
[37]
Pan G,Zhang MM,Chen H et al. Removal of cyanobacterial blooms in Taihu Lake using local soils. I. Equilibrium and kinetic screening on the flocculation of Microcystis aeruginosa using commercially available clays and minerals. Environ Pollut,2006, 141(2):195-200.
Yan QY,Yu YH,Feng WS et al. Plankton community succession in artificial systems subjected to cyanobacterial blooms removal using chitosan-modified soils. Microbial Ecology,2009,58(1):47-55.
[42]
Ni J,Yu Y,Feng W et al. Impacts of algal blooms removal by chitosan-modified soils on zooplankton community in Taihu Lake,China. J Environ Sci-China,2010,22(10):1500-1507.