[1] 王学霞,董世魁,李媛媛,等. 三江源区草地退化与人工恢复对土壤理化性状的影响[J]. 水土保持学报,2012(04):113-117
[2] 刘洪来,鲁为华,陈超.草地退化演替过程及诊断研究进展[J].草地学报,2011,19(05):865-871
[3] Mueller-Stoever D,Hauggaard-Nielsen H,Eriksen J,et al. Microbial biomass, microbial diversity, soil carbon storage, and stability after incubation of soil from grass-clover pastures of different age[J]. Biology and Fertility of Soils,2012,48(4):371-383
[4] Marini L,Scotton M,Klimek S,et al. Effects of local factors on plant species richness and composition of Alpine meadows[J]. Agericulture ecosystems & environment,2007,119(3-4):281-288
[5] Burkart S E,Leon R J C,Conde M C,et al. Plant species diversity in remnant grasslands on arable soils in the cropping Pampa[J]. Plant ecology,2011,212(6):1009-1024
[6] Biederbeck V O,Janzen H H,Campbell C A,et al. Lablle soil organic-matter as influenced by cropping practices in an arid environment[J]. Soil Biology & Biochemistry,1994,26(12):1647-1656
[7] 马莉,张娜. 草地退化的研究进展[J]. 上海畜牧兽医通讯,2014(04):23-25
[8] 马志广,赛音巴图. 松土改良草原的研究[J]. 中国草原,1982(02):31-34
[9] 刘庆德.河北张家口坝上草原草场退化的原因及防治对策[J].安徽农业科学,2010(15):8037-8038
[10] Li Y,Dong S,Wen L,et al. Soil carbon and nitrogen pools and their relationship to plant and soil dynamics of degraded and artificially restored grasslands of the Qinghai-Tibetan Plateau[J]. Geoderma,2014,213:178-184
[11] 张文军,张英俊,孙娟娟,等. 退化羊草草原改良研究进展[J]. 草地学报,2012(04):603-608
[12] Liu G,Tian K,Sun J,et al. Evaluating the effects of wetland restoration at the watershed scale in Northwest Yunnan Plateau,China[J]. Wetlands,2016,36(1):169-183
[13] Peralta R M,Ahn C,Gillevet P M. Characterization of soil bacterial community structure and physicochemical properties in created and natural wetlands[J]. Science of the Total Environment,2013,443:725-732
[14] 赵慧,刘伟龙,王小丹,等. 不同水分条件下藏北盐化沼泽湿地土壤碳氮的分布[J]. 山地学报,2014,32(4):431-437
[15] 刘萍萍,高原,吕卢凯,等. 红碱淖流域不同土地覆盖类型土壤理化性质特征[J]. 环境科学与技术,2015(09):7-12
[16] Zmihorski M,Part T,Gustafson T,et al. Effects of water level and grassland management on alpha and beta diversity of birds in restored wetlands[J]. Journal of Applied Ecology,2016,53(2):587-595
[17] 陈静,李玉霖,冯静,等. 温度和水分对科尔沁沙质草地土壤氮矿化的影响[J]. 中国沙漠,2016(01):103-110
[18] 柳维扬,高艳红,王家强,等. 水分因素对绿洲荒漠过渡带土壤氮矿化的影响[J]. 水土保持学报,2015(05):89-94
[19] 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(20):6436-6443
[20] 张晓建,李兆君,何俊瑜,等. 土壤水分对玉米根际磷素组分的影响[J]. 西南农业学报,2011(02):654-657
[21] 刘萍萍,高原,吕卢凯,等. 红碱淖流域不同土地覆盖类型土壤理化性质特征[J]. 环境科学与技术,2015(09):7-12
[22] Qin Y,Xin Z,Wang D. Comparison of top soil organic carbon and total nitrogen in different flood-risk riparian zones in a Chinese Karst area[J]. Environmental Earth Sciences,2016,75
[23] 路远,张万祥,孙榕江,等.天祝高寒草甸土壤容重与孔隙度时空变化研究[J].草原与草坪,2009(03):48-51
[24] 刘文静,张平究,董国政,等. 不同退耕年限下菜子湖湿地土壤磷素组分特征变化[J]. 生态学报,2014(10):2654-2662
[25] Su Y Z,Li Y L,Zhao H L. Soil properties and their spatial pattern in a degraded sandy grassland under post-grazing restoration, inner Mongolia, northern China[J]. Biogeochemistry,2006,79(3):297-314
[26] 于成德. 中国北方半干旱草原土壤微生物对全球变化的响应[D]. 开封:河南大学,2016:84-89 |