Do freeze-thaw events enhance C and N losses from soils of different ecosystems? A review

被引:407
作者
Matzner, E. [1 ]
Borken, W. [1 ]
机构
[1] Univ Bayreuth, D-95440 Bayreuth, Germany
关键词
D O I
10.1111/j.1365-2389.2007.00992.x
中图分类号
S15 [土壤学];
学科分类号
0903 ; 090301 ;
摘要
Freezing and thawing of soils may affect the turnover of soil organic matter and thus the losses of C and N from soils. Here we review the literature with special focus on: (i) the mechanisms involved, (ii) the effects of freezing temperature and frequency, (iii) the differences between arable soils and soils under natural vegetation, and (iv) the hypothesis that freeze-thaw events lead to significant C and N losses from soils at the annual scale. Changes in microbial biomass and populations, root turnover and soil structure might explain increased gaseous and solute fluxes of C and N following freeze-thaw events, but these mechanisms have seldom been addressed in detail. Effects of freeze-thaw events appear to increase with colder frost temperatures below 0 degrees C, but a threshold value for specific soils and processes cannot be defined. The pool of C and N susceptible to freeze-thaw events is rather limited, as indicated by decreasing losses with short-term repeated events. Elevated nitrate losses from soils under alpine and/or arctic and forest vegetation occurred only in the year following exceptional soil frost, with greatest reported losses of about 13 kg N ha(-1). Nitrate losses are more likely caused by reduced root uptake rather than by increased N net mineralization. N2O emissions from forest soils often increased after thawing, but this lasted only for a relatively short time (days to 1-2 months), with the greatest reported cumulative N2O emissions of about 2 kg N2O-N ha(-1). The emissions of N2O after freeze-thaw events were in some cases substantially greater from arable soils than from forest soils. Thus, freeze-thaw events might induce gaseous and/or solute losses of N from soils that are relevant at the annual time scale. While a burst of CO2 after thawing of frozen soils is often found, there is strong evidence that, at the annual time scale, freeze-thaw cycles either have little effect or will even reduce soil C losses as compared with unfrozen conditions. On the contrary, a milder winter climate with fewer periods of soil frost may result in greater losses of C from soils that are presently influenced by extended frost periods.
引用
收藏
页码:274 / 284
页数:11
相关论文
共 72 条
[21]   Simulating soil freeze/thaw cycles typical of winter alpine conditions: Implications for N and P availability [J].
Freppaz, Michele ;
Williams, Berwyn L. ;
Edwards, Anthony C. ;
Scalenghe, Riccardo ;
Zanini, Ermanno .
APPLIED SOIL ECOLOGY, 2007, 35 (01) :247-255
[22]  
GOLDBERG S, IN PRESS J PLANT NUT
[23]   NITROUS-OXIDE EMISSIONS FROM SOILS DURING THAWING [J].
GOODROAD, LL ;
KEENEY, DR .
CANADIAN JOURNAL OF SOIL SCIENCE, 1984, 64 (02) :187-194
[24]   Snow depth, soil freezing, and fluxes of carbon dioxide, nitrous oxide and methane in a northern hardwood forest [J].
Groffman, Peter M. ;
Hardy, Janet P. ;
Driscoll, Charles T. ;
Fahey, Timothy J. .
GLOBAL CHANGE BIOLOGY, 2006, 12 (09) :1748-1760
[25]   Effects of mild winter freezing on soil nitrogen and carbon dynamics in a northern hardwood forest [J].
Groffman, PM ;
Driscoll, CT ;
Fahey, TJ ;
Hardy, JP ;
Fitzhugh, RD ;
Tierney, GL .
BIOGEOCHEMISTRY, 2001, 56 (02) :191-213
[26]   Freeze-thaw regime effects on carbon and nitrogen dynamics in sub-arctic heath tundra mesocosms [J].
Grogan, P ;
Michelsen, A ;
Ambus, P ;
Jonasson, S .
SOIL BIOLOGY & BIOCHEMISTRY, 2004, 36 (04) :641-654
[27]   Snow depth manipulation and its influence on soil frost and water dynamics in a northern hardwood forest [J].
Hardy, JP ;
Groffman, PM ;
Fitzhugh, RD ;
Henry, KS ;
Welman, AT ;
Demers, JD ;
Fahey, TJ ;
Driscoll, CT ;
Tierney, GL ;
Nolan, S .
BIOGEOCHEMISTRY, 2001, 56 (02) :151-174
[28]   Soil freeze-thaw cycle experiments: Trends, methodological weaknesses and suggested improvements [J].
Henry, Hugh A. L. .
SOIL BIOLOGY & BIOCHEMISTRY, 2007, 39 (05) :977-986
[29]  
HENTSCHEL K, 2008, IN PRESS J PLANT NUT
[30]   Sources of C and N contributing to the flush in mineralization upon freeze-thaw cycles in soils [J].
Herrmann, A ;
Witter, E .
SOIL BIOLOGY & BIOCHEMISTRY, 2002, 34 (10) :1495-1505