[1]周卓丽,张卓栋,罗建勇,等.河北坝上地区坡面尺度土壤有机碳空间变异[J].水土保持研究,2021,28(01):31-36.
 ZHOU Zhuoli,ZHANG Zhuodong,LUO Jianyong,et al.Spatial Variation of Soil Organic Carbon at Slope Scale in Bashang Region of Hebei Provence[J].Research of Soil and Water Conservation,2021,28(01):31-36.
点击复制

河北坝上地区坡面尺度土壤有机碳空间变异

参考文献/References:

[1] Schlesinger W H. Evidence from chronosequence studies for a low carbon-storage potential of soils[J]. Nature, 1990,348(6298):232-234.
[2] Tiessen H, Cuevas E, Chacon P. The role of soil organic matter in sustaining soil fertility[J]. Nature, 1994,371(6500):783-785.
[3] 马渝欣,李徐生,李德成,等.皖北平原蒙城县农田土壤有机碳空间变异及影响因素[J].土壤学报,2014,51(5):1153-1159.
[4] 霍艳双,杨波,杨雪栋,等.草地土壤有机碳研究进展[J].中国草地学报,2014,36(6):90-96.
[5] Chappell A, Webb N P, Butler H J, et al. Soil organic carbon dust emission: An omitted global source of atmospheric CO2[J]. Global Change Biology, 2013,19(10):3238-3244.
[6] 栗文玉,刘小芳,赵勇钢,等.黄土丘陵区人工柠条恢复为主小流域土壤有机碳空间变异性及其影响因素[J].水土保持研究,2020,27(2):15-22.
[7] 席小康,朱仲元,郝祥云.锡林河流域土壤有机碳空间变异分析[J].水土保持研究,2017,24(6):97-104.
[8] 杨丹,项文化,方晰,等.石栎—青冈常绿阔叶林土壤有机碳和全氮空间变异特征[J].生态学报,2014,34(12):3452-3462.
[9] 冯娜娜,李廷轩,张锡洲,等.不同尺度下低山茶园土壤有机质含量的空间变异[J].生态学报,2006,26(2):349-356.
[10] 王伟,李占斌,李鹏,等.生态建设对坡面土壤有机碳分布的影响[J].水土保持研究,2020,27(2):35-41.
[11] 王明君,韩国栋,赵萌莉,等.草甸草原不同放牧强度对土壤有机碳含量的影响[J].草业科学,2007,24(10):6-10.
[12] Wiaux F, Cornelis J, Cao W, et al. Combined effect of geomorphic and pedogenic processes on the distribution of soil organic carbon quality along an eroding hillslope on loess soil[J]. Geoderma, 2014,216:36-47.
[13] Hancock G R, Murphy D, Evans K G. Hillslope and catchment scale soil organic carbon concentration: An assessment of the role of geomorphology and soil erosion in an undisturbed environment[J]. Geoderma, 2010,155(1/2):36-45.
[14] 方华军,杨学明,张晓平,等.黑土坡耕地侵蚀和沉积对物理性组分有机碳积累与损耗的影响[J].土壤学报,2007,44(3):467-474.
[15] 贾松伟,贺秀斌,陈云明,等.黄土丘陵区土壤侵蚀对土壤有机碳流失的影响研究[J].水土保持研究,2004,11(4):88-90.
[16] 周一鹏,张雨辰,罗鑫叶,等.土壤有机质空间变异性及其驱动因素研究进展[J].土壤通报,2019,50(6):1492-1499.
[17] 李龙,姚云峰,秦富仓,等.赤峰市黄花甸子流域土壤有机碳含量的空间变异特征研究[J].环境科学学报,2014,34(3):742-748.
[18] 李龙,姜丽娜,白建华.半干旱区土壤有机碳空间变异及其影响因素的多尺度相关分析[J].中国水土保持科学,2018,16(5):40-48.
[19] 傅伯杰,陈利顶,马克明.黄土丘陵区小流域土地利用变化对生态环境的影响:以延安市羊圈沟流域为例[J].地理学报,1999,54(3):51-56.
[20] 王德全,关印山,李显瑞.坝上草原生态系统建设的演变、教训与措施[J].中国草地,1992(2):78-80.
[21] 邹心雨,张卓栋,吴梦瑶,等.河北坝上地区坡面尺度土壤机械组成的空间变异[J].中国水土保持科学,2019,17(5):44-53.
[22] 张科利,王志强,高晓飞,等.土壤地理综合实践教程[M].北京:科学出版社,2014:211-214.
[23] 刘伟,程积民,陈芙蓉,等.黄土高原中部草地土壤有机碳密度特征及碳储量[J].草地学报,2011,19(3):425-431.
[24] 何燕,李廷轩,王永东.低山丘陵区不同坡位茶园土壤有机碳特征研究[J].水土保持学报,2009,23(2):122-126.
[25] 周莉,李保国,周广胜.土壤有机碳的主导影响因子及其研究进展[J].地球科学进展,2005,20(1):99-105.
[26] Kätterer T, Bolinder M A, Andrén O, et al. Roots contribute more to refractory soil organic matter than above-ground crop residues, as revealed by a long-term field experiment[J]. Agriculture, Ecosystems & Environment, 2011,141(1/2):184-192.
[27] 王雪妍,张卓栋,罗梦婷,等.河北坝上地区坡面尺度根系生物量空间变异[J].水土保持研究,2015,22(6):72-77.

相似文献/References:

[1]沈艳,傅瓦利,蓝家程,等.岩溶山地不同土地利用方式土壤颗粒有机碳和矿物结合态有机碳的分布特征[J].水土保持研究,2012,19(06):1.
 SHEN Yan,FU Wa-li,LAN Jia-cheng,et al.Distribution Characteristics of Soil Particulate Organic Carbon and Mineral-associated Organic Carbon of Different Land Use in Karst Mountain[J].Research of Soil and Water Conservation,2012,19(01):1.
[2]陈媛媛,周运超.灰质白云岩土壤有机碳的团聚体保护[J].水土保持研究,2012,19(06):82.
 CHEN Yuan-yuan,ZHOU Yun-chao.Protection of Soil Organic Carbon in the Calcite Dolomite Aggregate[J].Research of Soil and Water Conservation,2012,19(01):82.
[3]裴会敏,许明祥,李强,等.侵蚀条件下土壤有机碳流失研究进展[J].水土保持研究,2012,19(06):269.
 PEI Hui-min,XU Ming-xiang,LI Qiang,et al.Advances in Soil Organic Carbon Losses under Erosion[J].Research of Soil and Water Conservation,2012,19(01):269.
[4]李玉进,王百群.施用柳枝稷茎和叶对土壤有机碳与微生物量碳的影响及其分解特征[J].水土保持研究,2012,19(05):78.
 LI Yu-jin,WANG Bai-qun.Effect of Amendment of Leaf and Stem of Switchgrass(Panicum virgatum) on Soil Organic Carbon and Microbial Biomass Carbon as well as the Decomposition Characteristic of the Leaf and Stem[J].Research of Soil and Water Conservation,2012,19(01):78.
[5]赵发珠,韩新辉,杨改河,等.黄土丘陵区不同退耕还林地土壤有机碳、氮密度变化特征[J].水土保持研究,2012,19(04):43.
 ZHAO Fa-zhu,HAN Xin-hui,YANG Gai-he,et al.Change Characteristics of Density of Soil Organic Carbon and Nitrogen under Land Shifted into Forestland in Hilly Loess Region[J].Research of Soil and Water Conservation,2012,19(01):43.
[6]杨洋,王百群,李玉进.苜蓿对旱地土壤有机碳氮变化的驱动作用[J].水土保持研究,2012,19(03):78.
 YANG Yang,WANG Bai-qun,LI Yu-jin.Driving Effect of Alfalfa (Medicago sativa L.) on Dynamics of Soil Organic Carbon and Nitrogen in Dryland[J].Research of Soil and Water Conservation,2012,19(01):78.
[7]沙晋明,陈鹏程,陈松林.土壤有机质光谱响应特性研究[J].水土保持研究,2003,10(02):21.
 SHA Jinming,CHEN Pengcheng,CHEN Songlin.Characteristics Analysis of Soil Spectrum Response Resulted From Organic Material[J].Research of Soil and Water Conservation,2003,10(01):21.
[8]贾松伟,贺秀斌,陈云明,等.黄土丘陵区土壤侵蚀对土壤有机碳流失的影响研究[J].水土保持研究,2004,11(04):88.
 JIA Song-wei,HE Xiu-bin,CHEN Yun-ming,et al.Effect of Soil Erosion on Soil Organic Carbon Loss on the Loess Hilly Areas[J].Research of Soil and Water Conservation,2004,11(01):88.
[9]徐华君.阿尔泰山区土壤有机碳氧化稳定性的初步比较分析[J].水土保持研究,2007,14(06):27.
 XU Hua-jun.Comparative Analysis of the Soil Organic Carbon Oxidation Stability in Altai Mountain, Xinjiang[J].Research of Soil and Water Conservation,2007,14(01):27.
[10]范胜龙,黄炎和,林金石.表征土壤有机碳区域分布的优化空间插值模型研究——以福建省龙海市为例[J].水土保持研究,2011,18(06):1.
 FAN Sheng-long,HUANG Yan-he,LIN Jin-shi.The Optimized Interpolation Models and Its Relationship with Soil Sampling Density on Detecting Spatial Variability of Farmland Soil Organic Carbon —A Case Study in Longhai City, Fujian Province[J].Research of Soil and Water Conservation,2011,18(01):1.

备注/Memo

收稿日期:2020-04-06 修回日期:2020-04-28
资助项目:国家重点研发计划课题(2017YFA0604704); 国家自然科学基金(41730748,41301282)
第一作者:周卓丽(1996—),女,四川乐山人,硕士研究生,研究方向为土壤资源利用与保护。E-mail:zzhou@mail.bnu.edu.cn 通信作者:张卓栋(1984—),男,湖南湘潭人,博士,副教授,主要从事土壤侵蚀研究。E-mail:zzhang@bnu.edu.cn

更新日期/Last Update: 2021-01-15