共 74 条
- [1] Schulze E.-D., Climate change: managing forests after Kyoto, Science, 289, pp. 2058-2059, (2000)
- [2] Stephens S.L., Moghaddas J.J., Hartsough B.R., Moghaddas E.E.Y., Clinton N.E., Fuel treatment effects on stand-level carbon pools, treatment-related emissions, and fire risk in a Sierra Nevada mixed-conifer forest, Can J Forest Res, 39, pp. 1538-1547, (2009)
- [3] Hurteau M.D., Brooks M.L., Short- and long-term effects of fire on carbon in US dry temperate forest systems, Bioscience, 61, pp. 139-146, (2011)
- [4] Wiedinmyer C., Hurteau M.D., Prescribed fire as a means of reducing forest carbon emissions in the Western United States, Environ Sci Tech, 44, pp. 1-11, (2010)
- [5] North M.P., Hurteau M.D., High-severity wildfire effects on carbon stocks and emissions in fuels treated and untreated forest, For Ecol Manage, 261, pp. 1115-1120, (2011)
- [6] Boerner R.E.J., Huang J., Hart S.C., Fire, thinning, and the carbon economy: effects of fire and fire surrogate treatments on estimated carbon storage and sequestration rate, For Ecol Manage, 255, pp. 3081-3097, (2008)
- [7] Mitchell S.R., Harmon M.E., O'Connell K.E.B., Forest fuel reduction alters fire severity and long-term carbon storage in three Pacific Northwest ecosystems, Ecol Appl, 19, pp. 643-655, (2009)
- [8] Hurteau M.D., North M., Fuel treatment effects on tree-based forest carbon storage and emissions under modeled wildfire scenarios, Front Ecol Environ, 7, pp. 409-414, (2009)
- [9] Reinhardt E., Holsinger L., Effects of fuel treatments on carbon-disturbance relationships in forests of the northern Rocky Mountains, For Ecol Manage, 259, pp. 1427-1435, (2010)
- [10] Campbell J.L., Harmon M.E., Mitchell S.R., Can fuel-reduction treatments really increase forest carbon storage in the western US by reducing future fire emissions?, Front Ecol Environ, (2011)