Oxidation, efflux, and isotopic fractionation of methane during autumnal turnover in a polyhumic, boreal lake

被引:94
作者
Kankaala, Paula [1 ]
Taipale, Sami
Nykaenen, Hannu
Jones, Roger I.
机构
[1] Univ Helsinki, Lammi Biol Stn, FIN-16900 Lammi, Finland
[2] Univ Jyvaskyla, Dept Biol & Environm Sci, FIN-40014 Jyvaskyla, Finland
[3] Univ Kuopio, Dept Environm Sci, FIN-70211 Kuopio, Finland
关键词
D O I
10.1029/2006JG000336
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We studied the oxidation and efflux of methane (CH4) in a small, polyhumic lake, Mekkojarvi (southern Finland), during 6 weeks in autumn when the stability of the water mass first weakened, temporarily restabilized, and finally mixed completely. During the summer stratification period, CH4 had accumulated in the anoxic hypolimnion to high concentrations (>150 mmol m(-3)). Gradual mixing of the water column during the autumn allowed access to both oxygen and CH4 by aerobic methane-oxidizing bacteria (MOB) deeper in the water column. Thus the bulk (similar to 83-88%) of the CH4 accumulated in the hypolimnion was subsequently consumed by MOB while only 12-17% was lost from the lake to the atmosphere at a rate varying between 0.05 and 8.8 mmol m(-2) d(-1). Phospholipid fatty acid (PLFA) analyses revealed that type I methanotrophs (MOB I) were responsible for this CH4 oxidation. The stable carbon isotope ratio of CH4 in the water column (delta C-13-CH4) ranged from -81.2% close to the bottom to -45.1% at the surface. At CH4 concentrations >1 mmol m(-3) the delta C-13-CH4 isotopic value was linearly related to the specific oxidation rate. The carbon isotopic fractionation factor a for aerobic CH4 oxidation calculated from the results (1.037) is within the range of maximum values reported in literature. Our results show that in stratified boreal lakes the greatest MOB activity and effluxes of CH4 both occur during autumnal mixing. Owing to their great abundance and areal cover, small water bodies should not be neglected in global analyses of the CH4 cycle.
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共 42 条
[1]   VERTICAL DISTRIBUTIONS OF BACTERIA AND ALGAE IN A STEEPLY STRATIFIED HUMIC LAKE UNDER HIGH GRAZING PRESSURE FROM DAPHNIA-LONGISPINA [J].
ARVOLA, L ;
SALONEN, K ;
KANKAALA, P ;
LEHTOVAARA, A .
HYDROBIOLOGIA, 1992, 229 :253-269
[2]   Methane emissions from lakes: Dependence of lake characteristics, two regional assessments, and a global estimate [J].
Bastviken, D ;
Cole, J ;
Pace, M ;
Tranvik, L .
GLOBAL BIOGEOCHEMICAL CYCLES, 2004, 18 (04) :1-12
[3]   KINETICS OF CH4 OXIDATION IN OXIC SOILS EXPOSED TO AMBIENT AIR OR HIGH CH4 MIXING RATIOS [J].
BENDER, M ;
CONRAD, R .
FEMS MICROBIOLOGY ECOLOGY, 1992, 101 (04) :261-270
[4]  
BLIGH EG, 1959, CAN J BIOCHEM PHYS, V37, P911
[5]  
BOWMAN JP, 1991, FEMS MICROBIOL ECOL, V85, P15, DOI 10.1016/0378-1097(91)90627-M
[6]   PRECON: A FULLY AUTOMATED INTERFACE FOR THE PRE-GC CONCENTRATION OF TRACE GASES IN AIR FOR ISOTOPIC ANALYSIS [J].
Brand, W. A. .
ISOTOPES IN ENVIRONMENTAL AND HEALTH STUDIES, 1995, 31 (3-4) :277-284
[7]   COMPARISON OF MICROBIAL DYNAMICS IN MARINE AND FRESH-WATER SEDIMENTS - CONTRASTS IN ANAEROBIC CARBON CATABOLISM [J].
CAPONE, DG ;
KIENE, RP .
LIMNOLOGY AND OCEANOGRAPHY, 1988, 33 (04) :725-749
[8]   Seasonal variation in methane oxidation in a landfill cover soil as determined by an in situ stable isotope technique [J].
Chanton, J ;
Liptay, K .
GLOBAL BIOGEOCHEMICAL CYCLES, 2000, 14 (01) :51-60
[9]   The effect of gas transport on the isotope signature of methane in wetlands [J].
Chanton, JP .
ORGANIC GEOCHEMISTRY, 2005, 36 (05) :753-768
[10]   Contribution of hydrogen to methane production and control of hydrogen concentrations in methanogenic soils and sediments [J].
Conrad, R .
FEMS MICROBIOLOGY ECOLOGY, 1999, 28 (03) :193-202