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Tracing the Uptake, Transport, and Fate of Mercury in Sawgrass (Cladium jamaicense) in the Florida Everglades Using a Multi-isotope Technique TEXT SIZE: A A A
The role of macrophytes in the biogeochemical cycle of mercury (Hg) in the Florida Everglades is poorly understood. Stable isotope tracer techniques were employed to investigate Hg uptake by sawgrass (Cladium jamaicense) from soil and atmospheric pathways and the fate of Hg after absorption. Our results suggest that soil spiked Hg-201(2+) was rapidly taken up by roots and transported to aboveground parts. The spiked Hg-201 that was transported to the aboveground parts was trapped; no release of the spiked Hg-201 from the leaf to the air was detected. Atmospheric Hg-199(0) exposure experiments revealed that the majority of the previously deposited Hg-199(0) taken into the leaf was fixed, with a very limited proportion (1.6%) available for re-emission to the atmosphere. The percentage of Hg-199(0) fixed in the leaf will help reduce the model uncertainty in estimating the Hg exchange over the air vegetation surface. We propose that sawgrass needs to be viewed as an important sink for atmospheric Hg in the regional Hg mass balance; this would have important implications for the critical loads of Hg to the Everglades. The multi-isotope tracer technique could be an effective tool to identify the role of plants in biogeochemical cycling of Hg in other ecosystems.

Publication name

 ENVIRONMENTAL SCIENCE & TECHNOLOGY, 52 (6):3384-3391; 10.1021/acs.est.7b04150 MAR 20 2018

Author(s)

 Meng, Bo; Li, Yanbin; Cui, Wenbin; Jiang, Ping; Liu, Guangliang; Wang, Yongmin; Richards, Jennifer; Feng, Xinbin; Cai, Yong

Corresponding author(s) 

 MENG Bo 
 mengbo@vip.skleg.cn
 Chinese Acad Sci, Inst Geochem, State Key Lab Environm Geochem, Guiyang 550002, Guizhou, Peoples R China
 Florida Int Univ, Dept Chem & Biochem, Miami, FL 33199 USA

 CAI Yong
 cai@fiu.edu  
 Florida Int Univ, Dept Chem & Biochem, Miami, FL 33199 USA
 Florida Int Univ, Southeast Environm Res Ctr, Miami, FL 33199 USA

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