首页 分享 Research progress on the ecological environment effect of farmland abandonment in karst areas of Southwest China

Research progress on the ecological environment effect of farmland abandonment in karst areas of Southwest China

来源:花匠小妙招 时间:2024-11-03 10:36
[1]

Díaz G I, Nahuelhual L, Echeverría C, Marín S. Drivers of land abandonment in Southern Chile and implications for landscape planning. Landscape and Urban Planning, 2011, 99(3/4): 207-217.

[2]

Han Z, Song W. Spatiotemporal variations in cropland abandonment in the Guizhou-Guangxi Karst Mountain area, China. Journal of Cleaner Production, 2019, 238: 117888. DOI:10.1016/j.jclepro.2019.117888

[3] [4] [5] [6] [7] [8]

Zhang Y, Li X B, Song W. Determinants of cropland abandonment at the parcel, household and village levels in mountain areas of China: a multi-level analysis. Land Use Policy, 2014, 41: 186-192. DOI:10.1016/j.landusepol.2014.05.011

[9]

罗旭玲, 王世杰, 白晓永, 谭秋, 冉晨, 陈欢, 习慧鹏, 陈飞, 操玥, 吴路华, 李汇文, 钟昕. 西南喀斯特地区石漠化时空演变过程分析. 生态学报, 2021, 41(2): 680-693.

[10] [11] [12] [13]

Zeng F M, Jiang Z C, Shen L N, Chen W, Yang Q Y, Zhang C. Assessment of multiple and interacting modes of soil loss in the Karst critical zone, Southwest China (SWC). Geomorphology, 2018, 322: 97-106. DOI:10.1016/j.geomorph.2018.08.043

[14]

Ferlan M, Alberti G, Eler K, Batič F, Peressotti A, Miglietta F, Zaldei A, Simončič P, Vodnik D. Comparing carbon fluxes between different stages of secondary succession of a Karst grassland. Agriculture, Ecosystems & Environment, 2011, 140(1/2): 199-207.

[15]

Wang S J, Liu Q M, Zhang D F. Karst rocky desertification in southwestern China: geomorphology, landuse, impact and rehabilitation. Land Degradation & Development, 2004, 15(2): 115-121.

[16] [17] [18] [19] [20] [21] [22] [23]

MacDonald D, Crabtree J R, Wiesinger G, Dax T, Stamou N, Fleury P, Lazpita J G, Gibon A. Agricultural abandonment in mountain areas of Europe: environmental consequences and policy response. Journal of Environmental Management, 2000, 59(1): 47-69. DOI:10.1006/jema.1999.0335

[24]

Romero-Díaz A, Ruiz-Sinoga J D, Robledano-Aymerich F, Brevik E C, Cerdà A. Ecosystem responses to land abandonment in Western Mediterranean Mountains. CATENA, 2017, 149: 824-835. DOI:10.1016/j.catena.2016.08.013

[25]

Frei T, Derks J, Rodríguez Fernández-Blanco C, Winkel G. Narrating abandoned land: perceptions of natural forest regrowth in Southwestern Europe. Land Use Policy, 2020, 99: 105034. DOI:10.1016/j.landusepol.2020.105034

[26] [27] [28]

Li S F, Li X B. The mechanism of farmland marginalization in Chinese mountainous areas: evidence from cost and return changes. Journal of Geographical Sciences, 2019, 29(4): 531-548. DOI:10.1007/s11442-019-1613-2

[29] [30] [31] [32] [33] [34] [35] [36] [37]

Yang Q Q, Wang K L, Zhang C H, Yue Y M, Tian R C, Fan F D. Spatio-temporal evolution of rocky desertification and its driving forces in Karst areas of Northwestern Guangxi, China. Environmental Earth Sciences, 2011, 64(2): 383-393. DOI:10.1007/s12665-010-0861-3

[38]

Chen Q R, Xie H L. Research progress and discoveries related to cultivated land abandonment. Journal of Resources and Ecology, 2021, 12(2): 165-174.

[39] [40] [41] [42] [43] [44] [45] [46] [47] [48] [49] [50]

D'Arrigo A, Franco R L, Benenti G, Paladino E, Falci G. Hidden entanglement in the presence of random telegraph dephasing noise. Physica Scripta, 2013, T153: 014014. DOI:10.1088/0031-8949/2013/T153/014014

[51] [52] [53]

Peng J, Xu Y Q, Zhang R, Xiong K N, Lan A J. Soil erosion monitoring and its implication in a limestone land suffering from rocky desertification in the Huajiang Canyon, Guizhou, Southwest China. Environmental Earth Sciences, 2013, 69(3): 831-841. DOI:10.1007/s12665-012-1968-5

[54]

Zhao H J, Ma F S, Guo J. Regularity and formation mechanism of large-scale abrupt Karst collapse in Southern China in the first half of 2010. Natural Hazards, 2012, 60(3): 1037-1054. DOI:10.1007/s11069-011-9888-3

[55] [56] [57] [58] [59] [60] [61] [62] [63] [64] [65] [66] [67]

苗建青. 西南岩溶石漠化地区土地禀赋对农户采用生态农业技术行为的影响研究——基于农户土地利用结构的视角[D]. 重庆: 西南大学, 2011.

[68] [69] [70] [71]

Rey Benayas J M. Abandonment of agricultural land: an overview of drivers and consequences. CAB Reviews: Perspectives in Agriculture, Veterinary Science, Nutrition and Natural Resources, 2007, 2(57): 1-14.

[72]

Zaragozí B, Rabasa A, Rodríguez-Sala J J, Navarro J T, Belda A, Ramón A. Modelling farmland abandonment: a study combining GIS and data mining techniques. Agriculture, Ecosystems & Environment, 2012, 155: 124-132.

[73]

Vega-García C, Chuvieco E. Applying local measures of spatial heterogeneity to landsat-TM images for predicting wildfire occurrence in Mediterranean landscapes. Landscape Ecology, 2006, 21(4): 595-605.

[74] [75] [76] [77] [78] [79] [80] [81] [82] [83] [84] [85] [86]

An Y, Gao Y, Liu X H, Tong S Z. Interactions of soil moisture and plant community properties in meadows restored from abandoned farmlands on the Sanjiang Plain, China. Community Ecology, 2019, 20(1): 20-27.

[87] [88]

Lan J C, Hu N, Fu W L. Soil carbon-nitrogen coupled accumulation following the natural vegetation restoration of abandoned farmlands in a Karst rocky desertification region. Ecological Engineering, 2020, 158: 106033.

[89] [90] [91] [92] [93] [94] [95] [96] [97] [98] [99]

Li R, Wu Q L, Zhang J J, Wen Y Q, Li Q G. Effects of land use change of sloping farmland on characteristic of soil erosion resistance in typical Karst mountainous areas of southwestern China. Polish Journal of Environmental Studies, 2019, 28(4): 2707-2716.

[100] [101] [102] [103]

Deiss L, Sall A, Demyan M S, Culman S W. Does crop rotation affect soil organic matter stratification in tillage systems?. Soil and Tillage Research, 2021, 209: 104932. DOI:10.1016/j.still.2021.104932

[104]

Hu P L, Liu S J, Ye Y Y, Zhang W, He X Y, Su Y R, Wang K L. Soil carbon and nitrogen accumulation following agricultural abandonment in a subtropical Karst region. Applied Soil Ecology, 2018, 132: 169-178. DOI:10.1016/j.apsoil.2018.09.003

[105] [106] [107]

Guo Y, Abdalla M, Espenberg M, Hastings A, Hallett P, Smith P. A systematic analysis and review of the impacts of afforestation on soil quality indicators as modified by climate zone, forest type and age. Science of the Total Environment, 2021, 757: 143824. DOI:10.1016/j.scitotenv.2020.143824

[108]

Chen H J, Peng W X, Du H, Song T Q, Zeng F P, Wang F. Effect of different grain for green approaches on soil bacterial community in a Karst region. Frontiers in Microbiology, 2020, 11: 577242. DOI:10.3389/fmicb.2020.577242

[109]

Li D D, Zhang X Y, Dungait J A J, Green S M, Wen X F, Quine T A, Wang Q B. Main controls on the denitrification rates during cropland revegetation in the southwest China Karst Critical Zone Observatory. Agriculture, Ecosystems & Environment, 2021, 308: 107228.

[110]

Guo Z M, Zhang X Y, Green S M, Dungait J A J, Wen X F, Quine T A. Soil enzyme activity and stoichiometry along a gradient of vegetation restoration at the Karst Critical Zone Observatory in Southwest China. Land Degradation & Development, 2019, 30(16): 1916-1927.

[111] [112] [113] [114]

Robledano-Aymerich F, Romero-Díaz A, Belmonte-Serrato F, Zapata-Pérez V M, Martínez-Hernández C, Martínez-López V. Ecogeomorphological consequences of land abandonment in semiarid Mediterranean areas: integrated assessment of physical evolution and biodiversity. Agriculture, Ecosystems & Environment, 2014, 197: 222-242.

[115]

闫伟. 亚热带白云岩喀斯特区不同土地利用下成土速率与土壤侵蚀特征模拟研究[D]. 贵阳: 贵州师范大学, 2021.

[116]

李瑞, 刘瑞禄, 吕涛, 李勇, 刘云芳, 杜迪. 贵州省喀斯特地区典型小流域不同种植模式坡面径流产沙研究. 水土保持通报, 2012, 32(5): 132-135.

[117] [118] [119] [120] [121]

杨龙. 喀斯特石漠化治理生态修复模式下的碳汇效益监测评价[D]. 贵阳: 贵州师范大学, 2016.

[122]

Wang Y W, Luo W J, Zeng G N, Peng H J, Cheng A Y, Zhang L, Cai X L, Chen J, Lyu Y N, Yang H L, Wang S J. Characteristics of carbon, water, and energy fluxes on abandoned farmland revealed by critical zone observation in the Karst region of southwest China. Agriculture, Ecosystems & Environment, 2020, 292: 106821.

[123]

Wang M M, Chen H S, Zhang W, Wang K L. Soil organic carbon stock and its changes in a typical Karst area from 1983 to 2015. Journal of Soils and Sediments, 2021, 21(1): 42-51.

[124] [125] [126]

Chen H S, Zhang W, Wang K L, Hou Y. Soil organic carbon and total nitrogen as affected by land use types in Karst and non-Karst areas of northwest Guangxi, China. Journal of the Science of Food and Agriculture, 2012, 92(5): 1086-1093.

[127]

林立文. 喀斯特区植被恢复对土壤有机质组分及团聚体稳定性的影响: 广西大学, 2021.

[128]

Li Y X, Yu P J, Shen L C. Changes in soil aggregate stability and aggregate-associated organic carbon during old-field succession in Karst valley. Environmental Monitoring and Assessment, 2021, 194(1): 15.

[129]

Liu M, Han G L, Zhang Q. Effects of soil aggregate stability on soil organic carbon and nitrogen under land use change in an erodible region in southwest China. International Journal of Environmental Research and Public Health, 2019, 16(20): 3809.

[130]

何宇, 盛茂银, 王轲, 王霖娇. 土地利用变化对西南喀斯特土壤团聚体组成、稳定性以及C、N、P化学计量特征的影响. 环境科学, 2021, 1-16.

[131]

Liu M, Han G L, Zhang Q. Effects of agricultural abandonment on soil aggregation, soil organic carbon storage and stabilization: results from observation in a small Karst catchment, Southwest China. Agriculture, Ecosystems & Environment, 2020, 288: 106719.

[132]

张岚峰. 鄂西南喀斯特地区植被恢复后土壤性质变化及其影响因素研究[D]. 恩施: 湖北民族大学, 2021.

[133] [134]

李汇文, 王世杰, 白晓永, 操玥, 田义超, 罗光杰, 陈飞, 李琴, 吴路华, 王金凤, 王明明, 田诗琪, 邓元红, 胡泽银, 杨钰杰, 李朝君, 路茜, 习慧鹏, 陈欢, 冉晨, 罗旭玲. 气候变化及生态恢复对喀斯特槽谷碳酸盐岩风化碳汇的影响评估. 生态学报, 2019, 39(16): 6158-6172.

[135] [136] [137]

曾发明. 岩溶石漠化治理对碳汇的影响研究[D]. 武汉: 中国地质大学, 2018.

相关知识

不同林龄顶坛花椒人工林土壤肥力变化规律
李志国
Effects of climate change and ecological restoration on carbonate rock weathering carbon sequestration in the karst valley of Southwest China
Research Progress of Terrestrial Plants N/P Ecological Stoichiometry under Global Change
Research progress on the ecohydrological mechanisms of Spartina alterniflora invasion in coastal wetlands
我国黑土地农田土壤除草剂残留特征研究及展望
Research Progress and Prospects of Flowering Induction for Seagrass Sexual Reproduction
LA专题 | 乡村生物多样性——变化、维持机制及保护策略
农田土壤固碳潜力的影响因素及其调控(综述)
春玉米不同生育期土壤湿润层深度调控的稳产节水效应

网址: Research progress on the ecological environment effect of farmland abandonment in karst areas of Southwest China https://www.huajiangbk.com/newsview341649.html

所属分类:花卉
上一篇: 镜中花(昆明)鲜花礼品有限公司
下一篇: 基于轮作过程的农田碳源/汇效应研

推荐分享