1Jenkinson D S, AdamS D E, Wild A. Model estimates of CO2 emissions from soil in response to global warming[J]. Nature, 1991, 351: 304-306.
2Davidson E A, Janssens I A. Temperature sensitivity of soil carbon decomposition and feedbacks to climate change[J]. Nature, 2006, 440: 165-173.
3Urban N R, Bayley S E, Eisenreich S J. Export of dissolved organic carbon and acidity from peatlands[J]. Water Resources Research, 1989, 25(7): 1619-1628.
4Williamson C E, Morris D P, Pace M L, et al. Dissolved organic carbon and nutrients as regulators of lake ecosystems.. Resurrection of a more integrated paradigm[J].Limnology and Oceanography, 1999, 44(3):795-803.
5Chow A T, Tanji K K, Gao S D. Production of dissolved organic carbon (DOC) and trihalomethane (THM) precursor from peat soils[J]. Water Research, 2003, 37(18): 4475- 4485.
6Hejzlar J, Dubrovsky M, Buchtele J, et al. The apparent and potential effects of climate change on the inferred concentration of dissolved organic matter in a temperate stream (Malse River, South Bohemia)[J]. Science of the Total Environment, 2003, 310(1): 143-152.
7Evans C D, Chapman P J, Clark J M, et al. Alternative explanations for rising dissolved organic carbon export from organic soils[J]. Global Change Biology, 2006, 12(11): 2044- 2053.
8Monteith D T, Stoddard J L, Evans C D, et al. Dissolved organic carbon trends resulting from changes in atmospheric deposition chemistry[J]. Nature, 2007, 450(22): 537-540.
9Roulet N, Moor T R. Browning the waters[J]. Nature, 2006, 444: 283-284.