[1] COSTANZAR,D'ARGER,GROOTRD,et al. The value of the world's ecosystem services and natural capital[J]. Ecological Economics,1997,25(1):3-15 [2] ZHANGWJ,LUQF,SONGKC,et al. Remotely sensing the ecological influences of ditches in ZoigePeatland,eastern Tibetan Plateau[J]. International Journalof Remote Sensing,2014,35(13):5186-5197 [3] MAK,LIUJG,BALKOVI J,et al. Changes in soil organic carbon stocks of wetlands on China's Zoige plateau from 1980 to 2010[J]. Ecological Modelling,2016,327:18-28 [4] 苑跃,张亮,崔林林.若尔盖高原生态系统水源涵养功能时空变化特征[J].生态学杂志,2020,39(08):2713-2723 [5] 鲁瀚友,李志威,胡旭跃,等.若尔盖高原径流量变化与储水量计算[J].水资源与水工程学报,2019,30(06):12-19 [6] 白军红,欧阳华,崔保山,等.近40年来若尔盖高原高寒湿地景观格局变化[J].生态学报,2008,28(5):2245-2252 [7] DAILC,GUOXW,KEX,et al. Moderate grazing promotes the root biomass in Kobresia meadow on the northern Qinghai-Tibet Plateau[J]. Ecological and Evolution,2019,9(1):9395-9406 [8] 朴世龙,张宪洲,汪涛,等.青藏高原生态系统对气候变化的响应及其反馈[J].科学通报,2019,64(27):2842-2855 [9] WUGL LIUZH,LEIZ,et al. Long-term fencing improved soil properties and soil organic carbon storage in an alpine swamp meadow of western China[J]. Plant and Soil,2010,332(1-2):331-337 [10] WENGES,LUOYQ. Soil hydrological properties regulate grassland ecosystem responses to multifactor global change:A modeling analysis[J]. Journal of Geophysical Research,2008,113(G3):1-16 [11] 周择福,李昌哲.北京九龙山不同植被土壤水分特征的研究[J].林业科学研究,1994,7(01):48-53 [12] FARLEYKA,KELLYEF,HOFSTEDERGM. Soil organic carbon and water retention after conversion of grasslands to pine plantations in the Ecuadorian Andes[J]. Ecosystems,2004,7(7):729-739 [13] YANGF,ZHANGGL,YANGJL,et al. Organic matter controls of soil water retention in an alpine grassland and its significance for hydrological processes[J]. Journal of Hydrology,2014,519:3086-3093 [14] MANNSHR,PARKINGW,MARTINRC. Evidence of a union between organic carbon and water content in soil[J]. Canadian Journal of Soil Science,2016,96(3):305-316 [15] MANNSHR,BERGAA,BULLOCKPR,et al. Importance of soil organic carbon in near-surface soil water content estimation:A simple model comparison in dry-end Canadian Prairie soils[J]. Canadian Water Resources Journal,2017,42(4):364-377 [16] DAILC,GUOXW,KEX,et al. The variation in soil water retention of alpine shrub meadow under different degrees of degradation on northeastern Qinghai-Tibetan plateau[J]. Plant and Soil,2020,458(1-2):231-244 [17] 何露露,强薇,张燕,等.川西亚高山针叶林次生演替对土壤持水量的影响[J].应用与环境生物学报,2021,27(03):639-647 [18] 符晴,阳坤,郑东海,等.青藏高原中部土壤有机质含量对不同深度土壤温湿度的影响研究[J/OL]. http://kns.cnki.net/kcms/detail/62.1061.p.20210520.1012.008.html,2022-01-05 [19] 张玉琪,梁婷,张德罡,等.祁连山东段退化高寒草甸土壤水分入渗的变化及团聚体对水分入渗的影响[J].草地学报,2020,28(02):500-508 [20] 李红琴,吴夏璐,张法伟,等.高寒草甸冬季牧场土壤持水能力对草地封育的响应[J].中国草地学报,2021,43(08):1-8 [21] 李瑶,刘冬冬,车陆禄.喀斯特山地森林土壤入渗特征对人为踩踏的响应规律[J].水土保持学报,2021,35(04):96-105 [22] 王丹,吕瑜良,徐丽,等.水分和温度对若尔盖湿地和草甸土壤碳矿化的影响[J].生态学报,2013,33(20):6436-6443 [23] HUOL,CHENZ,ZOUY,et al. Effect of Zoige alpine wetland degradation on the density and fractions of soil organic carbon[J]. Ecological Engineeriong,2013,51(1):287-295 [24] 吴建国,艾丽,朱高,等.祁连山北坡云杉林和草甸土壤有机碳矿化及其影响因素[J].草地学报,2007(01):20-28 [25] 吴启华,毛绍娟,刘晓琴,等.牧压梯度下高寒杂草类草甸土壤持水能力及影响因素分析[J].冰川冻土,2014,36(03):590-598 [26] 祝景彬,贺慧丹,李红琴,等.牧压梯度下高寒草甸土壤容重及持水能力的变化特征[J].水土保持研究,2018,25(05):66-71 [27] HAGHIGHIF,GORJIM,SHORAFAM. A study of the effects of land use changes on soil physical properties and organic matter[J]. Land Degradation and Development,2010,21(5):496-502 [28] LUSG,SUNFF,ZONGYT. Effect of rice husk biochar and coal fly ash on some physical properties of expansive clayey soil (Vertisol)[J]. Catena,2014,114:37-44 [29] YISS,CHANGNY,IMHOFFPT. Predicting water retention of biochar-amended soil from independent measurements of biochar and soil properties[J]. Advances in Water Resources,2020,142:1-17 [30] GOULDMC. Compost increases the water holding capacity of droughty soils[EB/OL]. https://www.canr.msu.edu/news/compost_increases_the_waterholding_capacity_of_droughty_soils,2015-10-16 [31] DEBLASE,RODRIGUEZ-ALLERESM,ALMENDROSG. Speciation of lipid and humic fractions in soils under pine and eucalyptus forest in northwest Spain and its effect on water repellency[J]. Geoderma,2010,155(3):242-248 [32] 赵利坤,秦纪洪,孙辉.土壤疏水性研究进展[J].世界科技研究与发展,2011,33(01):58-64 |