Author:
Feng Shulu,Ai Zhijiu,Zheng Shimei,Gu Binhe,Li Yuncong
Publisher
Springer Science and Business Media LLC
Subject
Pollution,Water Science and Technology,Ecological Modeling,Environmental Chemistry,Environmental Engineering
Reference43 articles.
1. Ackerman, J. T., & Eagles-Smith, C. A. (2010). Agricultural wetlands as potential hotspots for mercury bioaccumulation: experimental evidence using caged fish. Environmental Science and Technology, 44, 1451–1457.
2. Aiken, G. R., Haitzer, M., Ryan, J. N., & Nagy, K. (2003). Interactions between dissolved organic matter and mercury in the Florida Everglades. Journal de Physique IV, 107, 29–32.
3. Aiken, G. R., Gilmour, C. C., Krabbenhoft, D. P., & Orem, W. (2011). Dissolved organic matter in the Florida Everglades: implications for ecosystem restoration. Critical Reviews in Environmental Science and Technology, 41, 217–248.
4. Barkay, T., Gillman, M., & Turner, R. R. (1997). Effects of dissolved organic carbon and salinity on bioavailability of mercury. Applied and Environmental Microbiology, 63, 4267–4271.
5. Barkay, T., Turner, R. R., Rasmussen, L. D., Kelly, C. A., & Rudd, J. W. M. (1998). Bioluminescence Methods and Protocols. In R. A. LaRossa (Ed.), Luminescence facilitated detection of bioavailable mercury in natural waters (pp. 231–246). Totowa, NJ: Humana Press.
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