[1] 付伟,武慧,赵爱花,等. 陆地生态系统氮沉降的生态效应:研究进展与展望[J]. 植物生态学报,2020,44(5):475-493 [2] 郭洁芸,王雅歆,李建龙. 氮添加对中国陆地生态系统植物-土壤碳动态的影响[J]. 生态学报,2022,42(12):4823-4833 [3] BATJES N H. Total carbon and nitrogen in the soils of the world[J]. European Journal of Soil Science,1996,47(2):151-163 [4] GUO G R. Soil carbon stocks and land use change:A meta analysis[J]. Global Change Biology,2002,8(4):345-360 [5] 杨泽,嘎玛达尔基,谭星儒,等. 氮添加量和施氮频率对温带半干旱草原土壤呼吸及组分的影响[J]. 植物生态学报,2020,44(10):1059-1072 [6] CLEVELAND C C,TOWNSEND A R. Nutrient additions to a tropical rain forest drive substantial soil carbon dioxide losses to the atmosphere[J]. Proceedings of the National Academy of Sciences of the United States of America,2006,103(27):10316-10321 [7] JASSAL R S,BLACK T A,TROFYMOW J A,et al. Soil CO2 and N2O flux dynamics in a nitrogen fertilized Pacific Northwest Douglas-fir stand[J]. Geoderma,2010,157(3):118-125 [8] FANG H J,CHENG S L,YU G R,et al. Nitrogen deposition impacts on the amount and stability of soil organic matter in an alpine meadow ecosystem depend on the form and rate of applied nitrogen[J]. European Journal of Soil Science,2014,65(4):510-519 [9] ALISON H M,JOHN D A,WILLIAM S C,et al. Ecosystem response to 15 years of chronic nitrogen additions at the Harvard Forest LTER,Massachusetts,USA[J]. Forest Ecology and Management,2004,196(1):7-28 [10] JASTROW J D. Soil aggregate formation and the accrual of particulate and mineral-associated organic matter[J]. Soil Biology and Biochemistry,1996,28(4):665-676 [11] DENG A,WANG L,CHEN F,et al. Soil aggregate-associated heavy metals subjected to different types of land use in subtropical China[J]. Global Ecology and Conservation,2018,16:1-9 [12] 王福慧,周林燕,胡汗,等. 秦岭太白山不同植被带土壤团聚体碳库变化及温度敏感性[J]. 生态学报,2022,42(8):3300-3314 [13] 马文明,刘超文,周青平,等. 高寒草地灌丛化对土壤团聚体生态化学计量学及酶活性的影响[J]. 草业学报,2022,31(1):57-68 [14] 贺佩,李悦,江明兢,等. 连续氮添加14年对温带典型草原土壤碳氮组分及物理结构的影响[J]. 生态学报,2021,41(5):1808-1823 [15] 吴越,马红亮,尹云锋,等. 凋落物去除和氮添加对亚热带阔叶林土壤不同组分碳、氮的影响[J]. 应用生态学报,2019,30(9):2923-2932 [16] 秦格霞,吴静,李纯斌,等. 中国北方草地植被物候变化及其对气候变化的响应[J]. 应用生态学报,2019,30(12):4099-4107 [17] PAN Y,LIU B,CAO J,et al. Enhanced atmospheric phosphorus deposition in Asia and Europe in the past two decades[J]. Atmospheric and Oceanic Science Letters,2021,14(5):10-14 [18] 白永飞,赵玉金,王扬,等. 中国北方草地生态系统服务评估和功能区划助力生态安全屏障建设[J]. 中国科学院院刊,2020,35(6):675-689 [19] BACH E. Soil aggregate isolation method affects measures of intra-aggregate extracellular enzyme activity[J]. Soil Biology and Biochemistry,2014(69):54-62 [20] 肖烨,黄志刚,武海涛,等. 三江平原不同湿地类型土壤活性有机碳组分及含量差异[J]. 生态学报,2015,35(23):7625-7633 [21] 张方方,岳善超,李世清.土壤有机碳组分化学测定方法及碳指数研究进展[J]. 农业环境科学学报,2021,40(2):252-259 [22] 张燕,强薇,罗如熠,等. 氮磷添加对土壤微生物生长、周转及碳利用效率的影响研究进展[J]. 应用与环境生物学报,2022,28(2):526-534 [23] 韩冰,耿依仪,邓艳芳,等. 氮添加对青藏高原高寒草甸土壤磷组分的影响[J]. 草地学报,2022,30(10):2721-2728 [24] 邓健,张丹,张伟,等. 黄土丘陵区刺槐叶片-土壤-微生物碳氮磷化学计量学及其稳态性特征[J]. 生态学报,2019,39(15):5527-5535 [25] 张乾,汪依妮,柳鑫,等. 不同石漠化草地根系对土壤有机碳的贡献[J]. 生态科学,2022,41(6):26-32 [26] ZOU X,RUAN H,FU Y,et al. Estimating soil labile organic carbon and potential turnover rates using a sequential fumigation-incubation procedure[J]. Soil Biology and Biochemistry,2005,37(10):1923-1928 [27] SONG L. Soil carbon fractions in grasslands respond differently to various levels of nitrogen enrichments[J]. Plant and Soil,2014,384(1a2):401-412 [28] 夏露,张苏人,刘培培,等. 增温和增/减水及氮沉降对中国草地植物多样性影响的研究进展[J]. 草原与草坪,2022,42(4):158-165 [29] 赵芳草,陈鸿飞,王一昊,等. 盐渍化草地根际土壤理化性质对降水改变和氮添加的响应[J]. 草地学报,2022,30(9):2430-2437 [30] KAISER K,GUGGENBERGER G. Mineral surfaces and soil organic matter[J]. European Journal of Soil Science,2003,54(2):1-18 [31] 吕思扬,宋思意,黎蕴洁,等. 氮添加和凋落物增减对华西雨屏区常绿阔叶林土壤团聚体及其碳氮的影响[J]. 水土保持学报,2022,36(1):277-287 [32] SIX J,PAUSTIAN K,ELLIOTT E T,et al. Soil structure and organic matter I. Distribution of aggregate-size classes and aggregate-associated carbon[J]. Soil Science Society of America Journal,2000,64(2):681-689 [33] 秦倩倩,邱聪,郑大柽,等. 油松人工林火烧迹地早期土壤入渗动态[J]. 植物生态学报,2021,45(8):903-917 [34] 武运涛,杨森,王欣,等. 草地土壤有机质不同组分氮库对长期氮添加的响应[J]. 植物生态学报,2021,45(7):790-798 [35] 裴志福,红梅,武振丹,等. 草甸草原土壤不同组分有机碳含量及化学结构对长期氮输入的响应[J].土壤,2022,54(3):481-489 [36] 张泽慧. 有机物料添加对退化黑土无机氮及腐殖酸组分的模拟研究[D]. 哈尔滨:东北农业大学,2020:50-51 [37] 刁婵. 氮磷添加对中国东部不同纬度森林土壤微生物群落多样性及其活性的影响[D]. 太原:山西师范大学,2019:53-55 [38] 凌小莉,史宝库,崔海莹,等. 氮磷添加对松嫩草地土壤团聚体结构及其碳含量的影响[J]. 中国草地学报,2021,43(2):54-63 [39] 郭洁芸,王雅歆,李建龙. 氮添加对中国陆地生态系统植物-土壤碳动态的影响[J]. 生态学报,2022,42(12):4823-4833 [40] 史佳梅,许冬梅,刘万龙,等. 沙化草地土壤有机碳及碳库管理指数的分异特征研究[J]. 草地学报,2022,30(7):1630-1640 [41] 简俊楠,刘伟超,朱玉帆,等. 短期氮添加对黄土高原人工刺槐林土壤有机碳组分的影响[J/OL]. 环境科学,1-12[2023-04-18].DOI:10.13227/j.hjkx.202205078 [42] XU M,LI W,WANG J,et al. Soil ecoenzymatic stoichiometry reveals microbial phosphorus limitation after vegetation restoration on the Loess Plateau,China[J]. Science of The Total Environment,2022(815):152918 [43] 李明. 氮素添加对贝加尔针茅草原土壤团聚体碳氮磷和微生物特性的影响[D]. 呼和浩特:内蒙古师范大学,2020:41-43 |