References
1. Giardino C, Bresciani M, Villa P, Martinelli A (2010) Application of remote sensing in water
resource management: the case study of Lake Trasimeno, Italy. Water Resour Manage 24(14):
3885–3899
2. Duan HT, Ma RH, Xu XF, Kong FX, Zhang SX, Kong WJ, Hao J, Shang L (2009) Two-decade
reconstruction of algal blooms in China’s Lake Taihu. Environ Sci Technol 43:3522–3528
3. Xu H, Paerl HW, Qin BQ, Zhu GW, Gao G (2010) Nitrogen and phosphorus inputs control
phytoplankton growth in eutrophic Lake Taihu, China. Limnol Oceanogr 55:420–432
4. Guo L (2007) Doing battle with the green monster of Taihu Lake. Science 317:1166
5. Qin BQ, Zhu GW, Gao G, Zhang YL, Li W, Paerl HW, Carmichael WW (2010) A drinking
water crisis in Lake Taihu, China: linkage to climatic variability and lake management.
Environ Manage 45:105–112
6. Wang M, Shi W (2008) Satellite-observed algae blooms in China’s Lake Taihu. Eos Trans Am
Geophys Union 89:201–202
7. Chorus I, Bartram J (1999) Toxic cyanobacteria in water: a guide to their public health
consequences, monitoring, and management. Spon, London
8. Paerl HW, Huisman J (2009) Climate change: a catalyst for global expansion of harmful
cyanobacterial blooms. Environ Microbiol Rep 1:27–37
9. Carpenter SR, Caraco NF, Correll DL, Howarth RW, Sharpley AN, Smith VH (1998)
Nonpoint pollution of surface waters with phosphorus and nitrogen. Ecol Appl 8:559–568
10. Huang C, Li Y, Yang H, Sun D, Yu Z, Zhang Z, Chen X, Xu L (2014) Detection of algal bloom
and factors influencing its formation in Taihu Lake from 2000 to 2011 by MODIS.
Environ Earth Sci 71:3705–3714
11. Schaeffer BA, Hagy JD, Conmy RN, Lehrter JC, Stumpf RP (2012) An approach to developing
numeric water quality criteria for coastal waters using the seaWiFS satellite data record.
Environ Sci Technol 46:916–922
12. Paerl HW, Xu H, McCarthy MJ, Zhu G, Qin B, Li Y, Gardner WS (2011) Controlling
harmful cyanobacterial blooms in a hyper-eutrophic lake (Lake Taihu, China): the need for a
dual nutrient (N & P) management strategy. Water Res 45(5):1973–1983
13. Zhang M, Duan H, Shi X, Yu Y, Kong F (2012) Contributions of meteorology to the phenology
of cyanobacterial blooms: implications for future climate change. Water Res 46:442–452
14. Xue B, Yao S, Xia W (2007) Environmental changes in Lake Taihu during the past century as
recorded in sediment cores. In: Qin B, Liu Z, Havens K (eds) Eutrophication of shallow lakes
with special reference to Lake Taihu, China. Springer, Dordrecht, pp 117–123
15. Yu G, Xue B, Lai G, Gui F, Liu X (2007) A 200-year historical modeling of catchment nutrient
changes in Taihu basin, China. Hydrobiologia 581(1):79–87
16. Chen Y, Qin B, Teubner K, Dokulil MT (2003) Long-term dynamics of phytoplankton
assemblages: Microcystis-domination in Lake Taihu, a large shallow lake in China. J Plankton
Res 25(4):445–453
17. James RT, Havens K, Zhu G, Qin B (2009) Comparative analysis of nutrients, chlorophyll and
transparency in two large shallow lakes (Lake Taihu, PR China and Lake Okeechobee, USA).
Hydrobiologia 627(1):211–231
18. Liu X, Lu X, Chen Y (2011) The effects of temperature and nutrient ratios on Microcystis
blooms in Lake Taihu, China: An 11-year investigation. Harmful Algae 10(3):337–343
19. Ke Z, Xie P, Guo L (2008) Controlling factors of spring–summer phytoplankton succession in
Lake Taihu (Meiliang Bay, China). Hydrobiologia 607(1):41–49
20. Cai LL, Zhu GW, Zhu MY, Xu H, Qin BQ (2012) Effects of temperature and nutrients on
phytoplankton biomass during bloom seasons in Taihu Lake. Water Sci Eng 5(4):361–374
21. Chen Y, Fan C, Teubner K, Dokulil M (2003) Changes of nutrients and phytoplankton
chlorophyll-a in a large shallow lake, Taihu, China: an 8-year investigation. Hydrobiologia
506:273–279
108
P. Villa et al.
1. Giardino C, Bresciani M, Villa P, Martinelli A (2010) Application of remote sensing in water
resource management: the case study of Lake Trasimeno, Italy. Water Resour Manage 24(14):
3885–3899
2. Duan HT, Ma RH, Xu XF, Kong FX, Zhang SX, Kong WJ, Hao J, Shang L (2009) Two-decade
reconstruction of algal blooms in China’s Lake Taihu. Environ Sci Technol 43:3522–3528
3. Xu H, Paerl HW, Qin BQ, Zhu GW, Gao G (2010) Nitrogen and phosphorus inputs control
phytoplankton growth in eutrophic Lake Taihu, China. Limnol Oceanogr 55:420–432
4. Guo L (2007) Doing battle with the green monster of Taihu Lake. Science 317:1166
5. Qin BQ, Zhu GW, Gao G, Zhang YL, Li W, Paerl HW, Carmichael WW (2010) A drinking
water crisis in Lake Taihu, China: linkage to climatic variability and lake management.
Environ Manage 45:105–112
6. Wang M, Shi W (2008) Satellite-observed algae blooms in China’s Lake Taihu. Eos Trans Am
Geophys Union 89:201–202
7. Chorus I, Bartram J (1999) Toxic cyanobacteria in water: a guide to their public health
consequences, monitoring, and management. Spon, London
8. Paerl HW, Huisman J (2009) Climate change: a catalyst for global expansion of harmful
cyanobacterial blooms. Environ Microbiol Rep 1:27–37
9. Carpenter SR, Caraco NF, Correll DL, Howarth RW, Sharpley AN, Smith VH (1998)
Nonpoint pollution of surface waters with phosphorus and nitrogen. Ecol Appl 8:559–568
10. Huang C, Li Y, Yang H, Sun D, Yu Z, Zhang Z, Chen X, Xu L (2014) Detection of algal bloom
and factors influencing its formation in Taihu Lake from 2000 to 2011 by MODIS.
Environ Earth Sci 71:3705–3714
11. Schaeffer BA, Hagy JD, Conmy RN, Lehrter JC, Stumpf RP (2012) An approach to developing
numeric water quality criteria for coastal waters using the seaWiFS satellite data record.
Environ Sci Technol 46:916–922
12. Paerl HW, Xu H, McCarthy MJ, Zhu G, Qin B, Li Y, Gardner WS (2011) Controlling
harmful cyanobacterial blooms in a hyper-eutrophic lake (Lake Taihu, China): the need for a
dual nutrient (N & P) management strategy. Water Res 45(5):1973–1983
13. Zhang M, Duan H, Shi X, Yu Y, Kong F (2012) Contributions of meteorology to the phenology
of cyanobacterial blooms: implications for future climate change. Water Res 46:442–452
14. Xue B, Yao S, Xia W (2007) Environmental changes in Lake Taihu during the past century as
recorded in sediment cores. In: Qin B, Liu Z, Havens K (eds) Eutrophication of shallow lakes
with special reference to Lake Taihu, China. Springer, Dordrecht, pp 117–123
15. Yu G, Xue B, Lai G, Gui F, Liu X (2007) A 200-year historical modeling of catchment nutrient
changes in Taihu basin, China. Hydrobiologia 581(1):79–87
16. Chen Y, Qin B, Teubner K, Dokulil MT (2003) Long-term dynamics of phytoplankton
assemblages: Microcystis-domination in Lake Taihu, a large shallow lake in China. J Plankton
Res 25(4):445–453
17. James RT, Havens K, Zhu G, Qin B (2009) Comparative analysis of nutrients, chlorophyll and
transparency in two large shallow lakes (Lake Taihu, PR China and Lake Okeechobee, USA).
Hydrobiologia 627(1):211–231
18. Liu X, Lu X, Chen Y (2011) The effects of temperature and nutrient ratios on Microcystis
blooms in Lake Taihu, China: An 11-year investigation. Harmful Algae 10(3):337–343
19. Ke Z, Xie P, Guo L (2008) Controlling factors of spring–summer phytoplankton succession in
Lake Taihu (Meiliang Bay, China). Hydrobiologia 607(1):41–49
20. Cai LL, Zhu GW, Zhu MY, Xu H, Qin BQ (2012) Effects of temperature and nutrients on
phytoplankton biomass during bloom seasons in Taihu Lake. Water Sci Eng 5(4):361–374
21. Chen Y, Fan C, Teubner K, Dokulil M (2003) Changes of nutrients and phytoplankton
chlorophyll-a in a large shallow lake, Taihu, China: an 8-year investigation. Hydrobiologia
506:273–279
108
P. Villa et al.
