[1] 曹晓风,孙波,陈化榜,等.我国边际土地产能扩增和生态效益提升的途径与研究进展[J].中国科学院院刊,2021,36(3):336-348 [2] 侯维,肖亮,易自力,等. 7种能源草在酸性红壤中的性状比较及适应性评价[J].草业学报,2015,24(12):237-244 [3] XUE S,LEWANDOWSKI I,WANG X,et al. Assessment of the production potentials of Miscanthus on marginal land in China[J]. Renewable and Sustainable Energy Reviews,2016,(54):932-943 [4] MI J,LIU W,YANG W,et al. Carbon sequestration by Miscanthus energy crops plantations in a broad range semi-arid marginal land in China[J]. Science of the Total Environment,2014,(496):373-380 [5] CLIFTON-BROWN J C,BREUER J,JONES M B. Carbon mitigation by the energy crop Miscanthus[J]. Global Change Biology,2007,13(11),2296-2307 [6] ZHAO C,FAN X,LI X,et al. Miscanthus sacchriflorus exhibits sustainable yields and ameliorates soil properties but potassium stocks without any input over a 12-year period in China[J]. GCB Bioenergy,2020,12(8),556-570 [7] ZHAO Q,BAI J,GAO Y,et al. Shifts in the soil bacterial community along a salinity gradient in the Yellow River Delta[J]. Land Degradation&Development,2020,31(16),2255-2267 [8] LIU Y,LUDEWIG U. Nitrogen-dependent bacterial community shifts in root,rhizome and rhizosphere of nutrient-efficient Miscanthus×giganteus from long-term field trials[J]. GCB Bioenergy,2019,11(11),1334-1347 [9] 孙丹.利用汽爆预处理及表面活性剂提高芒草生物质降解效率分子机理研究[D].武汉:华中农业大学,2017:2-3 [10] 陈宇飞,吴强,徐光密,等.五节芒纤维素纳米晶体制备工艺的正交分析[J].浙江农林大学学报,2014,31(3):399-403 [11] BARBASH V A,YASHCHENKO O V,VASYLIEVA O A,et al. Preparation and Properties of Nanocellulose from Miscanthus×giganteus[J]. Journal of Nanomaterials,2019,2019(4):1-8 [12] XU Y,ZHENG C,LIANG L,et al. Quantitative assessment of the potential for soil improvement by planting Miscanthus on saline-alkaline soil and the underlying microbial mechanism[J]. GCB Bioenergy,2021,13(7):1191-1205 [13] ABER J D,MELILLO J M,MCCLAUGHERTY C A. Predicting long-term patterns of mass loss,nitrogen dynamics,and soil organic matter formation from initial fine litter chemistry in temperate forest ecosystems[J]. NRC Research Press Ottawa,Canada,1990,68(10):2201-2208 [14] ZANG H,WANG J,KUZYAKOV Y. N fertilization decreases soil organic matter decomposition in the rhizosphere[J]. Applied Soil Ecology,2016,(108):47-53 [15] 李洁冰,闰文德,马秀红.亚热带樟树林凋落物量及其养分动态特征[J].中南林业科技大学学报,2011,31(5):223-228 [16] TIAN P,ZHANG J,CAI Z,et al. Different response of CO2 and N2O fluxes to N deposition with seasons in a temperate forest in Northeastern China[J]. Journal of Soil&Sediments,2018,18(5):1821-1831 [17] 袁吉有,苏以荣.大气氮沉降对森林土壤碳输入输出过程的影响[J].云南大学学报(自然科学版),2021,43(3):577-586 [18] 孙洪仁,张吉萍,冮丽华,等.中国水稻土壤氮素丰缺指标与适宜施氮量[J].中国农学通报,2019,35(11):82-87 [19] MICHEL K,MATZNER E,DIGNAC M,et al. Properties of dissolved organic matter related to soil organic matter quality and nitrogen additions in Norway spruce forest floors[J]. Geoderma,2006,130(3/4):250-264 [20] HAGEDORN F,BLASER P,SIEGWOLF R. Elevated atmospheric CO2 and increased N deposition effects on dissolved organic carbon:clues from δ13 signature[J]. Soil Biology Biochemistry,2002,34(3):355-366 [21] 隋心,张荣涛,刘赢男,等.模拟氮沉降对三江平原小叶章湿地土壤微生物功能多样性的影响[J].草地学报,2016,24(6):1226-1233 [22] TRESEDER K K. Nitrogen additions and microbial biomass:A meta-analysis of ecosystem studies[J]. Ecology Letters,2008,11(10):1111-1120 [23] 宋桂云,王云,范富,等.有机无机肥配施对科尔沁沙地衬膜稻田沙土理化特性的影响[J].干旱地区农业研究,2018,36(2):44-48 [24] 苏洁琼,李新荣,鲍婧婷.施氮对荒漠化草原土壤理化性质及酶活性的影响[J].应用生态学报,2014,25(3):664-670 [25] 张丹丹,李婧,郭琪,等.氮添加对杉木人工林土壤氮有效性、溶解性有机氮和酸化的影响[J].西北农林科技大学学报(自然科学版),2019,47(12):77-85,114 [26] 李才才.水分和养分对退化荒漠草原植被恢复及碳储量的影响[D].呼和浩特:内蒙古农业大学,2012:28 [27] 朱灵,张梦瑶,高永恒.高寒草原土壤有机碳矿化对水氮添加的响应[J].水土保持通报,2020,40(1):30-37 [28] 徐阳春,沈其荣,冉炜.长期免耕与施用有机肥对土壤微生物生物量碳、氮、磷的影响[J].土壤学报,2002,39(1):83-90 [29] 裴雯,陈清,张洛梓,等.放牧、水分和氮素对内蒙古草原土壤团聚体的影响[J].草地学报,2021,29(7):14 |