环境科学
大气(单位)
二氧化碳
大气科学
生态系统
焊剂(冶金)
营养水平
生态学
水文学(农业)
气象学
生物
化学
物理
地质学
有机化学
岩土工程
作者
Hilary A. Dugan,R. Iestyn Woolway,Arianto Budi Santoso,Jessica R. Corman,Aline Jaimes,Emily R. Nodine,Vijay P. Patil,Jacob A. Zwart,Jennifer A. Brentrup,Amy L. Hetherington,Samantha Oliver,Jordan S. Read,Kirsten M. Winters,Paul C. Hanson,Emily K. Read,Luke Winslow,Kathleen C. Weathers
出处
期刊:Inland Waters
[Taylor & Francis]
日期:2016-02-11
卷期号:6 (4): 581-592
被引量:7
摘要
Ecosystem metabolism and the contribution of carbon dioxide from lakes to the atmosphere can be estimated from free-water gas measurements through the use of mass balance models, which rely on a gas transfer coefficient ( k ) to model gas exchange with the atmosphere. Theoretical and empirically based models of k range in complexity from wind-driven power functions to complex surface renewal models; however, model choice is rarely considered in most studies of lake metabolism. This study used high-frequency data from 15 lakes provided by the Global Lake Ecological Observatory Network (GLEON) to study how model choice of k influenced estimates of lake metabolism and gas exchange with the atmosphere. We tested 6 models of k on lakes chosen to span broad gradients in surface area and trophic states; a metabolism model was then fit to all 6 outputs of k data. We found that hourly values for k were substantially different between models and, at an annual scale, resulted in significantly different estimates of lake metabolism and gas exchange with the atmosphere.
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