[1] GB/T30600—2022,高标准农田建设通则[S].
GB/T30600—2022,Well-facilitated Farmland Const-ruction:General Rules[S].
[2] 张应良,龚燕玲.高标准农田建设参与对农民种粮收益的影响:基于农业新质生产力的中介作用[J].南京农业大学学报(社会科学版),2024,24(3):110-124.
ZHANG Ying-liang,GONG Yan-ling.Impact of Hi-gh-standard Farmland Construction Participation on Farmer's Grain Income:Based on the Intermediary Role of Agricultural New Quality Productive Forces[J].Journal of Nanjing Agricultural University(Social Sciences Edition),2024,24(3):110-124.
[3] 梁 伟.高标准农田建设实践与粮食安全保障路径[J].华南农业大学学报(社会科学版),2024,23(2):23-32.
LIANG Wei.Construction Practice of High-standard Farmland and Supportability Route of Food Security[J].Journal of South China Agricultural University(Social Science Edition),2024,23(2):23-32.
[4] 焦杨皓,毕庆生,吕 刚,等.高标准农田建设工程措施资源环境效应评价研究[J].人民黄河,2024,46(3):114-120.
JIAO Yang-hao,BI Qing-sheng,LYU Gang,et al.Research on Resources and Environmental Effect Eva-luation of High-standard Farmland Construction Engineering Measures[J].Yellow River,2024,46(3):114-120.
[5] 陈 正,刘瀛弢,贺德俊,等.中国高标准农田建设现状与发展趋势[J].农业工程学报,2023,39(18):234-241.
CHEN Zheng,LIU Ying-tao,HE De-jun,et al.Current Situation and Development Trend of Well-facilitated Farmland Construction inChina[J].Transactions of the Chinese Society of Agricultural Engineering,2023,39(18):234-241.
[6] 肖 琴,李建平.整区域推进高标准农田建设的基本逻辑、实践困境与实现路径[J].中国农业资源与区划,2023,44(12):59-66.
XIAO Qin,LI Jian-ping.The Basic Logic,Practical Dilemmas and Implementation Paths of Region-wind Promotion of High-standard Farmland Construction[J].Chinese Journal of Agricultural and Regional Pla-nning,2023,44(12):59-66.
[7] 陈文广,张青璞,孔祥斌,等.基于“三线”统筹的省域永久基本农田布局优化规则与实证研究[J].农业工程学报,2021,37(15):248-257.
CHEN Wen-guang,ZHANG Qing-pu,KONG Xiang-bin,et al.Optimizing Rules and Empirical Research of Provincial Permanent Basic Farmland Layout Based on the “Three-line” Coordination[J].Transactions of the Chinese Society of Agricultural Engineering,2021,37(15):248-257.
[8] 薛 剑,韩 娟,张凤荣,等.高标准基本农田建设评价模型的构建及建设时序的确定[J].农业工程学报,2014,30(5):193-203.
XUE Jian,HAN Juan,ZHANG Feng-rong,et al.Development of Evaluation Model and Determination of Its Construction Sequence for Well-facilitied Capital Farmland[J].Transactions of the Chinese Society of Agricultural Engineering,2014,30(5):193-203.
[9] 朱传民,郝晋珉,陈 丽,等.基于耕地综合质量的高标准基本农田建设[J].农业工程学报,2015,31(8):233-242.
ZHU Chuan-min,HAO Jin-min,CHEN Li,et al.Well-facilitied Capital Farmland Construction Based on Cul-tivated Land Comprehensive Quality[J].Transactions of the Chinese Society of Agricultural Engineering,2015,31(8):233-242.
[10] 信桂新,杨朝现,杨庆媛,等.用熵权法和改进 TOPSIS模型评价高标准基本农田建设后效应[J].农业工程学报,2017,33(1):238-249.
XIN Gui-xin,YANG Chao-xian,YANG Qing-yuan,et al.Post-evaluation of Well-facilitied Capital Farmland Construction Based on Entropy Weight Method and Improved TOPSIS Model[J].Transactions of the Chinese Society of Agricultural Engineering,2017,33(1):238-249.
[11] 刘霈珈,吴克宁,赵华甫,等.基于耕地综合质量的基本农田布局优化:以河南省温县为例[J].中国土地科学,2015,29(2):54-59.
LIU Pei-jia,WU Ke-ning,ZHAO Hua-fu,et al.Spatial Allocation Optimization of Prime Farmland Based on Cultivated Land Comprehensive Quality:A Case Study of Wen County,Henan Province[J].China Land Science,2015,29(2):54-59.
[12] GRINNELL J.Geography and Evolution[J].Ecology,1924,5(3):225-229.
[13] ELTON C S.Animal Ecology[M].London:Sidgwick and Jackson,1927.
[14] HUTCHINSON G E.Concluding Remarks[J].Cold Spring Harbor Symposia on Quantitative Biology,1957,22:415-427.
[15] WHITTAKER R H,LEVIN S A,ROOT R B.Niche,Habitat,and Ecotope[J].The American Naturalist,1973,107:321-338.
[16] ODUM E P,VALIELA I.Basic Ecology[J].Quarterly Review of Biology,1984,59(1):85.
[17] LEIBOLD M A.The Niche Concept Revisited:Mechanistic Models and Community Context[J].Ecology,1995,76(5):1371-1382.
[18] 赵振庭,孔祥斌,张雪靓,等.基于多维超体积生态位的高标准生态农田建设分区方法[J].农业工程学报,2022,38(13):253-263.
ZHAO Zhen-ting,KONG Xiang-bin,ZHANG Xue-liang,et al.Method for Zoning High-standard Ecolo-gical Farmland Construction Using Multi-dimensional Super-volume Ecological Niche[J].Transactions of the Chinese Society of Agricultural Engineering,2022,38(13):253-263.
[19] 王子迎,吴芳芳,檀根甲.生态位理论及其在植物病害研究中的应用前景[J].安徽农业大学学报,2000,27(3):250-253.
WANG Zi-ying,WU Fang-fang,TAN Gen-jia.Niche Theory and Its Application Prospects in Plant Disease[J].Journal of Anhui Agricultural University,2000,27(3):250-253.
[20] 徐小千,汪景宽,李双异,等.基于生态位理论的东北黑土区耕地整治适宜性评价:以公主岭市为例[J].中国生态农业学报,2018,26(3):432-441.
XU Xiao-qian,WANG Jing-kuan,LI Shuang-yi,et al.Evaluation of Cultivated Land Consolidation Suitability in Northeast China Black Soil Zone Using Niche-fitness Model:A Case Study of Gongzhuling City[J].Chinese Journal of Eco-agriculture,2018,26(3):432-441.
[21] ZHAO S X,NIU H P,ZHANG H B.Construction of a Niche-fitness Model for Well-facilitated Capital Farmland and Its Application[J].Polish Journal of Environmental Studies,2018,28(1):473-484.
[22] 赵素霞.高标准农田建设空间适宜性与稳定性评价及其时空布局研究[D].焦作:河南理工大学,2018.
ZHAO Su-xia.Suitability,Stability and Its Spatio-temporal Distribution of Well-facilitated Farmland Construction[D].Jiaozuo:Henan Polytechnic University,2018.
[23] 夏敏峰,余慧敏,李 爽,等.基于生态位的鄱阳湖平原区高标准农田建设障碍因子诊断[J].中国农业大学学报,2021,26(7):182-190.
XIA Min-feng,YU Hui-min,LI Shuang,et al.Obstacle Factors Diagnosis of Well-facilitated Farmland Construction Based on Ecological Niche in Poyang Lake Plain[J].Journal of China Agricultural University,2021,26(7):182-190.
[24] 刘艳芳,安 睿,曲胜秋,等.福建省耕地生态安全评价及障碍因子分析[J].中国农业资源与区划,2022,43(11):121-132.
LIU Yan-fang,AN Rui,QU Sheng-qiu,et al.Ecological Security Evaluation and Obstacle Factor Diagnosis of the Cultivated Land in Fujian Province[J].Chinese Journal of Agricultural Resources and Regional Planning,2022,43(11):121-132.
[25] 钟紫玲,王占岐,李伟松.基于Voronoi 图与景观指数法的山区农村居民点空间分布特征及其影响因素[J].水土保持研究,2014,21(2):211-216.
ZHONG Zi-ling,WANG Zhan-qi,LI Wei-song.Spatial Distribution Characteristics and Affecting Factors of Rural Residential Land in the Mountainous Area Based on Voronoi and Landscape Indices [J].Research of Soil and Water Conservation,2014,21(2):211-216.
[26] 李义龙,廖和平,张亚飞,等.乡村振兴背景下镇域高标准农田建设条件及发展模式研究[J].西南大学学报(自然科学版),2019,41(2):90-99.
LI Yi-long,LIAO He-ping,ZHANG Ya-fei,et al.Construction Conditions and Development Pattern of Well-facilitated Farmland in Town Area Based on Rural Vitalization[J].Journal of Southwest University(Natural Science Edition),2019,41(2):90-99.
[27] 杜国明,孙嘉曼,李玉恒.东北黑土地产能时空演变及其提升对策[J].地球科学与环境学报,2023,45(2):338-349.
DU Guo-ming,SUN Jia-man,LI Yu-heng.Spatio-temporal Evolution of Black Cropland Productivity in Northeast China and Its Promotion Countermeasures[J].Journal of Earth Sciences and Environment,2023,45(2):338-349.
[28] 丰思捷,贾 强,陈宝雄,等.基于非参数乘法回归模型的农业景观步甲空间分布模拟[J].地球科学与环境学报,2021,43(5):897-907.
FENG Si-jie,JIA Qiang,CHEN Bao-xiong,et al.Simulation on the Spatial-distribution of Ground Beetles in Agro-landscape Based on Non-parametric Multiplicative Regression Model[J].Journal of Earth Sciences and Environment,2021,43(5):897-907.
[29] 杜国明,盖兆雪,王洪彦.中国耕地细碎化的理论解析与研究框架[J].地球科学与环境学报,2021,43(6):997-1008.
DU Guo-ming,GAI Zhao-xue,WANG Hong-yan.Theoretical Explanation and Research Framework of Cultivated-land Fragmentation in China[J].Journal of Ear-th Sciences and Environment,2021,43(6):997-1008.
[30] 王晓峰,曹建农,卫新东,等.基于农用地分等成果的耕地产能核算研究:以陕西省扶风县为例[J].陕西师范大学学报(自然科学版),2010,38(6):89-93.
WANG Xiao-feng,CAO Jian-nong,WEI Xin-dong,et al.Study on Cultivated Land Productivity Calculation Based on Agricultural Land Classification:A Case Study of Fufeng County,Shaanxi Province[J].Journal of Shaanxi Normal University(Natural Science Edition),2010,38(6):89-93.
[31] 王晓峰,傅伯杰,苏常红,等.西安市城乡建设用地时空扩展及驱动因素[J].生态学报,2015,35(21):7139-7149.
WANG Xiao-feng,FU Bo-jie,SU Chang-hong,et al.Spatio-temporal Characteristics and Driving Forces of Built-up Land in Xi'an,China[J].Acta Ecologica Sinica,2015,35(21):7139-7149.
[32] 王秀丽,李程秀,刘瑜歆,等.基于宜耕性评价的耕地利用效率分区与提升路径[J].农业机械学报,2021,52(5):212-218.
WANG Xiu-li,LI Cheng-xiu,LIU Yu-xin,et al.Zoning and Improving Path of Cultivated Land Use Efficiency Based on Evaluation of Cultivated Land Suitability[J].Transactions of the Chinese Society for Agricultural Machinery,2021,52(5):212-218.
[33] 杨建宇,张 欣,徐 凡,等.基于TOPSIS 和局部空间自相关的永久基本农田划定方法[J].农业机械学报,2018,49(4):172-180.
YANG Jian-yu,ZHANG Xin,XU Fan,et al.Designation Method of Permanent Basic Farmland Based on TOPSIS and Local Spatial Auto-correlation[J].Transactions of the Chinese Society for Agricultural Machinery,2018,49(4):172-180.