[1]张 斌,夏秋月.武汉城市圈碳储量的地形梯度效应及脆弱性[J].水土保持研究,2023,30(05):443-452.[doi:10.13869/j.cnki.rswc.2023.05.002.]
 ZHANG Bin,XIA Qiuyue.Topographic Gradient Effect and Vulnerability Analysis of Carbon Storage in Wuhan Urban Circle[J].Research of Soil and Water Conservation,2023,30(05):443-452.[doi:10.13869/j.cnki.rswc.2023.05.002.]
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武汉城市圈碳储量的地形梯度效应及脆弱性

参考文献/References:

[1] Guo X, Fang C. Integrated land use change related carbon source/sink examination in Jiangsu Province[J]. Land, 2021,10(12):1310-1328.
[2] Gu S, Li S, Santos I R. Anthropogenic land use substantially increases riverine CO2 emissions[J]. Journal of Environmental Sciences, 2022,118(8):158-170.
[3] Sha Z, Bai Y, Li R, et al. The global carbon sink potential of terrestrial vegetation can be increased substantially by optimal land management[J]. Communications Earth & Environment, 2022,3(1):1-10.
[4] Gao R, Chuai X, Ge J, et al. An integrated tele-coupling analysis for requisition-compensation balance and its influence on carbon storage in China[J]. Land Use Policy, 2022,116(5):106-117.
[5] 张平平,李艳红,殷浩然,等.中国南北过渡带生态系统碳储量时空变化及动态模拟[J].自然资源学报,2022,37(5):1183-1197.
[6] 李姣,汪杰,李朗,等.洞庭湖生态经济区土地利用变化对碳储量的影响[J].生态学杂志,2022,41(6):1156-1165.
[7] 张凯琪,陈建军,侯建坤,等.耦合InVEST与GeoSOS-FLUS模型的桂林市碳储量可持续发展研究[J].中国环境科学,2022,42(6):2799-2809.
[8] 王天福,龚直文,邓元杰.基于土地利用变化的陕西省植被碳汇提质增效优先区识别[J].自然资源学报,2022,37(5):1214-1232.
[9] 张立,金晶泽,姜侠,等.1986—2019年黑龙江省松嫩平原表层土壤有机碳变化及固碳潜力估算[J].现代地质,2021,35(4):914-922.
[10] 陈美景,王庆日,白中科,等.碳中和愿景下“三生空间”转型及其碳储量效应:以贵州省为例[J].中国土地科学,2021,35(11):101-111.
[11] Rijal S, Rimal B, Acharya R P, et al. Land use/land cover change and ecosystem services in the Bagmati River Basin, Nepal[J]. Environmental Monitoring and Assessment, 2021,193(10):1-17.
[12] 王晓萌,潘佩佩,王晓旭,等.基于土地利用的河北省生态系统服务权衡/协同关系研究[J].地理与地理信息科学,2021,37(1):80-88.
[13] 刘国栋,戴慧敏,杨泽,等.三江平原土壤碳库时空变化和影响因素研究[J].现代地质,2021,35(2):443-454.
[14] Li Z, Cheng X, Han H. Future impacts of land use change on ecosystem services under different scenarios in the ecological conservation area, Beijing, China[J]. Forests, 2020,11(5):58-70.
[15] 刘洋,张军,周冬梅,等.基于InVEST模型的疏勒河流域碳储量时空变化研究[J].生态学报,2021,41(10):4052-4065.
[16] 李瑾璞,于秀波,夏少霞,等.白洋淀湿地区土壤有机碳密度及储量的空间分布特征[J].生态学报,2020,40(24):8928-8935.
[17] 隋玉正,孙大鹏,李淑娟,等.碳储存变化背景下东营市海岸带生态系统保护修复[J].生态学报,2021,41(20):8112-8123.
[18] Ahmadi Mirghaed F, Souri B. Effect of landscape fragmentation on soil quality and ecosystem services in land use and landform types[J]. Environmental Earth Sciences, 2022,81(12):1-13.
[19] 李妙宇,上官周平,邓蕾.黄土高原地区生态系统碳储量空间分布及其影响因素[J].生态学报,2021,41(17):6786-6799.
[20] 徐彩仙,巩杰,李焱,等.基于地形梯度的甘肃白龙江流域典型生态系统服务分布特征[J].生态学报,2020,40(13):4291-4301.
[21] Xu X, Wang L, Sun M, et al. Climate change vulnerability assessment for smallholder farmers in China:An extended framework[J]. Journal of Environmental Management, 2020,276(12):111-123.
[22] Sekhri S, Kumar P, Fürst C, et al. Mountain specific multi-hazard risk management framework(MSMRMF):Assessment and mitigation of multi-hazard and climate change risk in the Indian Himalayan Region[J]. Ecological Indicators, 2020,118(12):106700-106713.
[23] Liu L, Liang Y, Hashimoto S. Integrated assessment of land-use/coverage changes and their impacts on ecosystem services in Gansu Province, northwest China:Implications for sustainable development goals[J]. Sustainability Science, 2020,15(1):297-314.
[24] 闫啸,李录堂,李晗.宅基地退出降低了农户的贫困脆弱性吗:来自安徽金寨的证据[J].中国土地科学,2022,36(4):38-48.
[25] 牛志君,周亚鹏,王树涛,等.县域土地利用变化对碳储量的影响与评价:以黑龙港流域巨鹿县为例[J].水土保持研究,2018,25(3):292-297,304.
[26] 向书江,张骞,王丹,等.近20年重庆市主城区碳储量对土地利用/覆被变化的响应及脆弱性分析[J].自然资源学报,2022,37(5):1198-1213.
[27] 李若玮,叶冲冲,王毅,等.基于InVEST模型的青藏高原碳储量估算及其驱动力分析[J].草地学报,2021,29(S1):43-51.
[28] 张斌,李璐,夏秋月,等.“三线”约束下土地利用变化及其对碳储量的影响:以武汉城市圈为例[J].生态学报,2022,42(6):2265-2280.
[29] 张玉,张道军.地形位指数模型改进及其在植被覆盖评价中的应用[J].地理学报,2022,77(11):2757-2772.
[30] 危小建,赵莉,程朋根,等.中国土地利用与生态服务价值空间动态研究:以地级及以上城市为例[J].水土保持研究,2022,29(4):370-376.
[31] Li L, Tang H, Lei J, et al. Spatial autocorrelation in land use type and ecosystem service value in Hainan Tropical Rain Forest National Park[J]. Ecological Indicators, 2022,137(4):108-120.
[32] 陈万旭,曾杰.中国土地利用程度与生态系统服务强度脱钩分析[J].自然资源学报,2021,36(11):2853-2864.
[33] Schröter D, Cramer W, Leemans R, et al. Ecosystem service supply and vulnerability to global change in Europe[J]. Science, 2005,310(5752):1333-1337.
[34] Metzger M J, Rounsevell M D A, Acosta-Michlik L, et al. The vulnerability of ecosystem services to land use change[J]. Agriculture, Ecosystems & Environment, 2006,114(1):69-85.

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备注/Memo

收稿日期:2022-07-11 修回日期:2022-08-06
资助项目:国家自然科学基金面上项目“土地发展空间异质性与跨区域碳排放权交易及补偿机制研究:以武汉城市圈为例”(71774064)
第一作者:张斌(1997—),男,湖北武汉人,博士研究生,主要研究方向为土地资源与经济。E-mail:1480992336@qq.com
夏秋月(1993—),女,河南新乡人,博士研究生,主要研究方向为区域经济与低碳土地利用。E-mail:xiaqiuyue231231@163.com

更新日期/Last Update: 2023-08-10