[1] 赵哈林,周瑞莲,张铜会,等. 我国北方农牧交错带的草地植被类型、特征及其生态问题[J]. 中国草地,2003,25(3):1-8 [2] 郑圆圆,郭思彤,苏筠. 我国北方农牧交错带的气候界线及其变迁[J]. 中国农业资源与区划,2014,35(03):6-13 [3] 邹亚丽,牛得草,杨益,等. 氮素添加对黄土高原典型草原土壤氮矿化的影响[J]. 草地学报,2014,22(03):461-468 [4] Mooney H A,Vitousek P M,Matson P A. Exchange of Materials Between Terrestrial Ecosystems and the Atmosphere[J]. Science,1987,238(4829):926-932 [5] Xu Y,Li L,Wang Q,et al. The pattern between nitrogen mineralization and grazing intensities in an Inner Mongolian typical steppe[J]. Plant and Soil,2007,300(1-2):289-300 [6] Xing-Ren L,Yun-She D,Yu-Chun Q,et al. Soil net nitrogen mineralization in the typical temperate grassland[J]. Environmental Science,2007,28(3):633 [7] 苏波,韩兴国,渠春梅,等. 森林土壤氮素可利用性的影响因素研究综述[J]. 生态学杂志,2002,21(02):40-46 [8] 王常慧,邢雪荣,韩兴国. 草地生态系统中土壤氮素矿化影响因素的研究进展[J]. 应用生态学报,2004,15(11):2184-2188 [9] 韩梦琪,潘占磊,靳宇曦,等. 短花针茅荒漠草原土壤氮素矿化对载畜率的响应[J]. 草业学报,2017,26(09):27-35 [10] 杨小红,董云社,齐玉春,等. 锡林河流域羊草草原暗栗钙土矿质氮动态变化[J]. 地理研究,2005,24(3):387-393 [11] Liu T,Nan Z,Hou F. Grazing intensity effects on soil nitrogen mineralization in semi-arid grassland on the Loess Plateau of northern China[J]. Nutrient Cycling in Agroecosystems,2011,91(1):67-75 [12] 闫钟清,齐玉春,董云社,等. 草地生态系统氮循环关键过程对全球变化及人类活动的响应与机制[J]. 草业学报,2014,23(06):279-292 [13] C J Hoogendoorn,P C D Newton,B P Devantier,et al. Grazing intensity and micro-topographical effects on some nitrogen and carbon pools and fluxes in sheep-grazed hill country in New Zealand[J]. Agriculture,Ecosystems and Environment,2016,217:22-32 [14] 刘晓妮,李刚,赵祥,等. 放牧对赖草群落生物量及植物多样性的影响[J]. 草地学报,2014,22(05):942-948 [15] 任国华,张宾宾,张智袁,等. 放牧和围封对赖草草地群落空间分布特征的影响[J]. 山西农业大学学报(自然科学版),2015,35(05):504-508 [16] 申颜,孙建平,罗玉坤,等. 短期放牧对半干旱草地生态系统CO2和N2O排放的影响[J]. 环境科学,2018,39(11):5237-5245 [17] 蒯晓妍,邢鹏飞,张晓琳,等. 短期放牧强度对半干旱草地植物群落多样性和生产力的影响[J]. 草地学报,2018,26(06):1283-1289 [18] 王常慧. 内蒙古温带典型草原土壤净氮矿化作用[D]. 北京:中国科学院研究生院(植物研究所),2005:31-32 [19] Li G,Han X,Huang J. N mineralization and nitrification in a primary Lithocarpus xylocarpus forest and degraded vegetation in the Ailao Mountain,Yunnan Province[J]. 植物学报(英文版),2004,46(2):194-201 [20] 孙满利,付菲,沈云霞. 土的含水率测定方法综述[J]. 西北大学学报(自然科学版),2019,49(02):219-229 [21] 袁久坤,周英. 利用取土钻改进环刀法准确测定土壤容重和孔隙度[J]. 中国园艺文摘,2014,30(03):25-26 [22] 米智勇. 不同放牧强度和管理方式下短花针茅荒漠草原土壤的氮矿化作用[D]. 呼和浩特:内蒙古农业大学,2011:33 [23] 张学林. 北方农牧交错区土地利用(管理)方式对土壤氮素转化的影响[D]. 北京:中国科学院研究生院(植物研究所),2007:27 [24] 徐雨晴. 家畜放牧对典型草原土壤—植被系统氮素转化的影响[D]. 北京:中国科学院研究生院(植物研究所),2008:43 [25] 胡俊奇. 滩羊轮牧和氮添加对陇东典型草原氮素矿化和温室气体排放的影响[D]. 兰州:兰州大学,2017:27 [26] 赵宁,张洪轩,王若梦,等. 放牧对若尔盖高寒草甸土壤氮矿化及其温度敏感性的影响[J]. 生态学报,2014,34(15):4234-4241 [27] 陈书信,王国兵,阮宏华,等. 苏北沿海不同土地利用方式冬季土壤氮矿化速率比较[J]. 南京林业大学学报(自然科学版),2014,38(01):41-46 [28] 莫江明,郁梦德. 鼎湖山马尾松人工林土壤硝态氮和铵态氮动态研究[J]. 植物生态学报,1997(4):40-42,44-46 [29] Wu H,Dannenmann M,Fanselow N,et al. Feedback of grazing on gross rates of N mineralization and inorganic N partitioning in steppe soils of Inner Mongolia[J]. Plant and Soil,2011,340(1-2):127-139 [30] 陈懂懂,孙大帅,张世虎,等. 青藏高原东缘高寒草甸土壤氮矿化初探[J]. 草地学报,2011,19(03):420-424 [31] 张秀敏. 陇东典型草原土壤和植被对滩羊轮牧和氮素添加的响应[D]. 兰州:兰州大学,2015:24-25 [32] Tracy B F,Frank D A. Herbivore influence on soil microbial biomass and nitrogen mineralization in a northern grassland ecosystem:Yellowstone National Park[J]. Oecologia (Berlin),1998,114(4):556-562 [33] Olsen Y S,Dausse A,Garbutt A,et al. Cattle grazing drives nitrogen and carbon cycling in a temperate salt marsh[J]. Soil Biology & Biochemistry,2011,43(3):531-541 [34] 单玉梅. 放牧强度和草地利用方式对内蒙古典型草原土壤氮矿化和凋落物分解的影响[D]. 呼和浩特:内蒙古农业大学,2011:16 [35] Guntiñas M E,M C Leirós,Trasar-Cepeda C,et al. Effects of moisture and temperature on net soil nitrogen mineralization:A laboratory study[J]. European Journal of Soil Biology,2012,48(05):0-80 [36] Zhang X,Wang Q,Li L,et al. Seasonal variations in nitrogen mineralization under three land use types in a grassland landscape[J]. Acta Oecologica,2008,34(3):322-330 [37] 杜薇,孙楠,周古月,等. 温湿度对不同管理方式高寒草甸土壤氮矿化的影响[J]. 草原与草坪,2018,38(04):1-11 [38] 周才平,欧阳华. 温度和湿度对暖温带落叶阔叶林土壤氮矿化的影响[J]. 植物生态学报,2001,25(02):204-209 [39] 吴建国,韩梅,苌伟,等. 祁连山中部高寒草甸土壤氮矿化及其影响因素研究[J]. 草业学报,2007,16(06):39-46 [40] Owen J S,Ming K W,Wang C H,et al. Net N mineralization and nitrification rates in a forested ecosystem in northeastern Taiwan[J]. Forest Ecology and Management,2010,176(1):519-530 [41] Francisco J. Calderón,Louise E. Jackson,Kate M. Scow,et al. Microbial responses to simulated tillage in cultivated and uncultivated soils[J]. Soil Biology & Biochemistry,2000,32(11-12):1547-1559 [42] 朱剑兴,王秋凤,何念鹏,等. 内蒙古不同类型草地土壤氮矿化及其温度敏感性[J]. 生态学报,2013,33(19):6320-6327 [43] Hagedorn F,Steiner K G,Sekayange L,et al. Effect of rainfall pattern on nitrogen mineralization and leaching in a green manure experiment in South Rwanda[J]. Plant and Soil,1997,195(2):365-375 [44] Jamieson N,Barraclough D,Monaghan R. Seasonal trends of gross N mineralization in a natural calcareous grassland[J]. Global change biology,1999,5(4):423-431 [45] 单玉梅,温超,常虹,等. 不同放牧强度下荒漠草原土壤氮矿化季节性动态研究[J]. 生态环境学报,2019,28(04):723-731 [46] Abbasi M K,Adams W A. Gaseous N emission during simultaneous nitrification-denitrification associated with mineral N fertilization to a grassland soil under field conditions[J]. Soil Biology&Biochemistry,2000,32(8):1251-1259 [47] Paterson E,Sim A. Rhizodeposition and C-partitioning of Lolium perenne in axenic culture affected by nitrogen supply and defoliation[J]. Plant and Soil,1999,216(1-2):155-164 [48] 王镜植. 大型草食动物采食与粪便对大针茅草原植被特征及氮矿化的作用[D]. 长春:东北师范大学,2017:36 [49] 李绍良,陈有君. 锡林河流域栗钙土及其物理性状与水分动态的研究[J]. 中国草地,1999,21(03):72-77 [50] Iii E W H,Frank D A. Can plants stimulate soil microbes and their own nutrient supply? Evidence from a grazing tolerant grass[J]. Ecology,2001,82(9):2397-2402 [51] Schrama M,Veen G F,Bakker E S,et al. An integrated perspective to explain nitrogen mineralization in grazed ecosystems[J]. Perspectives in Plant Ecology,Evolution and Systematics,2013,15(1):32-44 [52] 白云晓. 放牧对内蒙古草原土壤氮转化过程的影响[D]. 北京:北京师范大学,2018:58 |