| [1] |
何凡能, 杨帆, 王亚非. 过去千年中国森林和草地面积及空间格局重建[J]. 中国科学:地球科学, 2025, 55(1):95-110.
|
| [2] |
孙华方, 李希来, 金立群, 等. 高寒沼泽湿地植被特征和土壤养分对自然野火的响应[J]. 草地学报, 2024, 32(8):2557-2566.
doi: 10.11733/j.issn.1007-0435.2024.08.023
|
| [3] |
Wieting C, Ebel B A, Singha K. Quantifying the effects of wildfire on changes in soil properties by surface burning of soils from the Boulder Creek Critical Zone Observatory[J]. Journal of Hydrology:Regional Studies, 2017, 13:43-57.
doi: 10.1016/j.ejrh.2017.07.006
|
| [4] |
Song Zhaopeng, Li Zhaolei, Luo Yiqi, et al. Allocation strategies of carbon,nitrogen and phosphorus following a gradient of wildfire severities[J]. Journal of Plant Ecology, 2022, 15(2):347-358.
doi: 10.1093/jpe/rtab099
|
| [5] |
杨光, 王欣宇, 马运佳, 等. 火烈度对落叶松林土壤微生物量和群落组成的影响[J]. 林草资源研究, 2024(6):35-44.
|
| [6] |
Williams-Jara G M, Espinoza-Tenorio A, Monzón-Alvarado C, et al. Fires in coastal wetlands:a review of research trends and management opportunities[J]. Wetlands, 2022, 42:56.
doi: 10.1007/s13157-022-01576-0
|
| [7] |
王娟, 陈文业, 谈嫣蓉, 等. 火干扰对内陆荒漠湿地芦苇群落特征的影响[J]. 干旱区地理, 2020, 43(3):770-776.
|
| [8] |
Kouki J, Hyvärinen E, Lappalainen H, et al. Landscape context affects the success of habitat restoration:large-scale colonization patterns of saproxylic and fire-associated species in boreal forests[J]. Diversity and Distributions, 2012, 18(4):348-355.
doi: 10.1111/ddi.2012.18.issue-4
|
| [9] |
Wang C, Wang G, Wang Y, et al. Fire alters vegetation and soil microbial community in alpine meadow[J]. Land Degradation & Development, 2016, 27(5):1379-1390.
doi: 10.1002/ldr.v27.5
|
| [10] |
李宏林, 周浪敏, 薛静, 等. 高寒沼泽化草甸群落常见种对土壤水分条件的响应研究[J]. 生态科学, 2023, 42(4):1-8.
|
| [11] |
黄永生, 夏兴生, 周强, 等. 青海省草原火灾时空格局及成因调查研究[J]. 地理科学进展, 2023, 42(10):1973-1983.
doi: 10.18306/dlkxjz.2023.10.009
|
| [12] |
McColl-Gausden S, Bennett L, Clarke H, et al. The fuel-climate-fire conundrum:how will fire regimes change in temperate eucalypt forests under climate change?[J]. Global Change Biology, 2022, 28(17):5211-5226.
doi: 10.1111/gcb.16283
pmid: 35711097
|
| [13] |
周怡志, 李希来, 姚文治, 等. 自然野火对高寒沼泽湿地土壤有机碳组分的影响[J]. 草地学报, 2025, 33(6):1771-1781.
doi: 10.11733/j.issn.1007-0435.2025.06.007
|
| [14] |
周怡志. 高寒湿地自然火灾对植被和土壤特征的影响及其成因分析[D]. 西宁: 青海大学, 2025.
|
| [15] |
Detsis V, Efthimiou G, Theodoropoulou O, et al. Determination of the environmental factors that affect the growth and survival of Greek fir seedlings[J]. Land, 2020, 9(4):100.
doi: 10.3390/land9040100
|
| [16] |
Beverly J L, Leverkus S E R, Cameron H, et al. Stand-level fuel reduction treatments and fire behaviour in Canadian boreal conifer forests[J]. Fire, 2020, 3(3):35.
doi: 10.3390/fire3030035
|
| [17] |
Schmidt I B, Fidelis A, Miranda H S, et al. How do the wets burn?Fire behavior and intensity in wet grasslands in the Brazilian savanna[J]. Brazilian Journal of Botany, 2017, 40(1):167-175.
doi: 10.1007/s40415-016-0330-7
|
| [18] |
Chiono L A, Fry D L, Collins B M, et al. Landscape-scale fuel treatment and wildfire impacts on carbon stocks and fire hazard in California spotted owl habitat[J]. Ecosphere, 2017, 8(1):e01648.
doi: 10.1002/ecs2.2017.8.issue-1
|
| [19] |
Just M G, Hohmann M G, Hoffmann W A. Where fire stops:vegetation structure and microclimate influence fire spread along an ecotonal gradient[J]. Plant Ecology, 2016, 217(6):631-644.
doi: 10.1007/s11258-015-0545-x
|
| [20] |
赵平欣, 马远帆, 李哲瀚, 等. 土壤微量元素、细菌群落及生物酶对林火烟气沉降的响应[J]. 生态学报, 2025, 45(14):6973-6984.
|
| [21] |
Colombo C, Palumbo G, Sellitto V M, et al. Stability of coprecipitated natural humic acid and ferrous iron under oxidative conditions[J]. Journal of Geochemical Exploration, 2015, 151:50-56.
doi: 10.1016/j.gexplo.2015.01.003
|
| [22] |
周宏光. 载纳米水合氧化铁复合半焦的研制及其除磷性能研究[D]. 重庆: 西南大学, 2014.
|
| [23] |
江家彬, 祝贞科, 林森, 等. 针铁矿吸附态和包裹态有机碳在稻田土壤中的矿化及其激发效应[J]. 土壤学报, 2021, 58(6):1530-1539.
|
| [24] |
Chang Ting, Sun Jing, Li Shiwen, et al. Oxygen adsorption and activation control the photochemical activity of common iron oxyhydroxide polymorphs in mediating oxytetracycline degradation under visible light[J]. Journal of Colloid and Interface Science, 2025, 683(2):565-577.
doi: 10.1016/j.jcis.2024.12.199
|
| [25] |
McGranahan D A, Zopfi M E, Yurkonis K A. Weather and fuel as modulators of grassland fire behavior in the Northern Great Plains[J]. Environmental Management, 2023, 71(5):940-949.
doi: 10.1007/s00267-022-01767-9
|
| [26] |
Kong Jianjian, Yang Jian, Cai Wenhua. Topography controls post-fire changes in soil properties in a Chinese boreal forest[J]. Science of the Total Environment, 2019, 651(Pt 2):2662-2670.
doi: 10.1016/j.scitotenv.2018.10.164
|
| [27] |
Fultz L M, Moore-Kucera J, Dathe J, et al. Forest wildfire and grassland prescribed fire effects on soil biogeochemical processes and microbial communities:two case studies in the semi-arid Southwest[J]. Applied Soil Ecology, 2016, 99:118-128.
doi: 10.1016/j.apsoil.2015.10.023
|
| [28] |
Owiti D A, Tazisong I A, Senwo Z N. Microbial and organic matter patterns in a prescribed burned and thinned managed forest ecosystem[J]. Ecosphere, 2017, 8(12):e01962.
doi: 10.1002/ecs2.2017.8.issue-12
|