[1] SCURLOCK J M O,JOHNSON K,OLSON R J. Estimating net primary productivity from grassland biomass dynamics measurements[J]. Global Change Biology,2002,8(8):736-753 [2] XU M G,LOU Y L,SUN X L,et al. Soil organic carbon active fractions as early indicators for total carbon change under straw incorporation[J]. Biology and Fertility of Soils,2011,47(7):745-752 [3] BLAIR G J,LEFROY R D B,LISE L. Soil carbon fractions based on their degree of oxidation,and the development of a carbon management index for agricultural systems[J]. Australian Journal of Agricultural Research,1995,46(7):1459-1466 [4] CONTEH A,BLAIR G J,MACLEOD D A,et al. Soil organic carbon changes in cracking clay soils under cotton production as studied by carbon fractionation[J]. Australian Journal of Agricultural Research,1997,48(7):1049-1058 [5] 邱莉萍,张兴昌,程积民.土地利用方式对土壤有机质及其碳库管理指数的影响[J].中国环境科学,2009,29(1):84-89 [6] 徐明岗,于荣,孙小凤,等.长期施肥对我国典型土壤活性有机质及碳库管理指数的影响[J].植物营养与肥料学报,2006(4):459-465 [7] DENG L,SHANGGUAN Z P. Carbon storage dynamics through forest restoration from 1999 to 2009 in China:A case study in Shaanxi province[J]. Journal of Food Agriculture and Environment,2013,11(2):1363-1369 [8] DENG L,LIU G B,SHANGGUAN Z P. Land-use conversion and changing soil carbon stocks in China's'Grain-for-Green'Program:a synthesis[J]. Global Change Biology,2014,20(11):3544-3556 [9] DENG L,KIM D G,LI M Y,et al. Land-use changes driven by'Grain for Green'program reduced carbon loss induced by soil erosion on the Loess Plateau of China[J]. Global and Planetary Change,2019(177):101-115 [10] 许明祥,王征,张金,等.黄土丘陵区土壤有机碳固存对退耕还林草的时空响应[J].生态学报,2012,32(17):5405-5415 [11] 安娟娟,陈少锋,赵发珠,等.不同人工植被下土壤活性有机碳及碳库管理指数变化[J].农业环境科学学报,2014,33(5):985-991 [12] 戴全厚,刘国彬,薛萐,等.不同植被恢复模式对黄土丘陵区土壤碳库及其管理指数的影响[J].水土保持研究,2008(3):61-64 [13] 通乐嘎,赵斌,吴玲敏.放牧对内蒙古荒漠草原土壤理化性质和有机碳组分的影响[J].生态环境学报,2018,27(9):1602-1609 [14] 任瑾涛,张璞进,吴英,等.不同放牧退化阶段大针茅草原土壤有机碳稳定性及其来源研究[J].中国草地学报,2021,43(7):37-44 [15] 刘珊珊,张兴华,宫渊波,等.放牧干扰对岷江上游山地森林/干旱河谷交错带土壤有机碳及其碳库管理指数的影响[J].土壤,2014,46(5):799-805 [16] 邱璇,赵建宁,李文亚,等.不同利用方式对小针茅荒漠草原土壤活性有机碳的影响[J].草业学报,2016,25(9):1-9 [17] 马秀枝,王艳芬,汪诗平,等.放牧对内蒙古锡林河流域草原土壤碳组分的影响[J].植物生态学报,2005(4):569-576 [18] 高阳,马虎,程积民,等.黄土高原半干旱区不同封育年限草地生态系统碳密度[J].草地学报,2016,24(1):28-34 [19] 陈芙蓉,程积民,刘伟,等.不同干扰对黄土高原典型草原土壤有机碳的影响[J].草地学报,2012,20(2):298-304 [20] LI X D,ZHANG C P,FU H,et al. Grazing exclusion alters soil microbial respiration,root respiration and the soil carbon balance in grasslands of the Loess Plateau,northern China[J]. Soil Science and Plant Nutrition,2013,59(6):877-887 [21] 山仑,徐炳成.新时期黄土高原退耕还林(草)有关问题探讨[J].水土保持通报,2019,39(6):295-297 [22] DENG L,SWEENEY S,SHANGGUAN Z P. Grassland responses to grazing disturbance:plant diversity changes with grazing intensity in a desert steppe[J]. Grass Forage Science,2014,69(3):524-533 [23] MARTIN F,JOHANNES K,ANDREY D. Post-Soviet shifts in grazing and fire regimes changed the functional plant community composition on the Eurasian steppe[J]. Global Change Biology,2021,27(2):388-401 [24] 鲍士旦.土壤农化分析[M].(第3版).北京:中国农业出版社,2000:33-57 [25] LEFROY R D B,BLAIR G J,STRONG W M. Changes in soil organic-matter with cropping as measured by organic-carbon fractions and C-13 natural isotope abundance[J]. Plant and Soil,1993(155):399-402 [26] 韩新辉,佟小刚,杨改河,等.黄土丘陵区不同退耕还林地土壤有机碳库差异分析[J].农业工程学报,2012,28(12):223-229 [27] 董扬红,曾全超,李娅芸,等.黄土高原不同植被类型土壤活性有机碳组分分布特征[J].草地学报,2015,23(2):277-284 [28] FU B J,MENG Q H,QIU Y,et al. Effects of land use on soil erosion and nitrogen loss in the hilly area of the Loess Plateau,China[J]. Land Degradation and Development,2004,15(1):87-96 [29] 杨新国,宋乃平,李学斌,等.短期围栏封育对荒漠草原沙化灰钙土有机碳组分及物理稳定性的影响[J].应用生态学报,2012,23(12):3325-3330 [30] ZHANG M,LI X B,WANG H,et al. Comprehensive analysis of grazing intensity impacts soil organic carbon:A case study in typical steppe of Inner Mongolia,China[J]. Applied Soil Ecology,2018,129(1):1-12 [31] 杨合龙,孙宗玖,范燕敏,等.短期放牧对昭苏草甸草原土壤活性有机碳组分的影响[J].草业科学,2013,30(12):1926-1932 [32] 张蒙,李晓兵.放牧对土壤有机碳的影响及相关过程研究进展[J].草地学报,2018,26(2):267-276 [33] 王绍强,于贵瑞.生态系统碳氮磷元素的生态化学计量学特征[J].生态学报,2008(8):3937-3947 [34] 安慧,徐坤.放牧干扰对荒漠草原土壤性状的影响[J].草业学报,2013,22(4):35-42 [35] WU G L,ZHAO L P,Wang D,et al. Effects of Time-Since-Fire on Vegetation Composition and Structures in Semi-Arid Perennial Grassland on the Loess Plateau,China[J]. CLEAN:Soil,Air,Water,2014,42(1):98-103 [36] 赵凌平,谭世图,白欣,等.封育和放牧对黄土高原典型草原繁殖更新的影响[J].西北农林科技大学学报(自然科学版),2016,44(9):27-34 [37] YU H Q,LI Y,OSHUNSANYA S O,et al. Re-introduction of light grazing reduces soil erosion and soil respiration in a converted grassland on the Loess Plateau,China[J]. Agriculture Ecosystems and Environment,2019(280):43-52 |