[1]郝瑞军,魏伟,刘春芳,等. 中国能源消费碳排放的空间化与时空动态[J]. 环境科学,2022,43(11):5305-5314.
[2]Sadorsky P.The impact of financial development on energy consumption in emerging economies[J]. Energy Policy,2010,38(5):2528-2535.
[3]赵军,刘春艳,李琛. 金融发展对碳排放的影响:“促进效应” 还是 “抑制效应”?:基于技术进步异质性的中介效应模型[J]. 新疆大学学报(哲学·人文社会科学版),2020,48(4):1-10.
[4]严成樑,李涛,兰伟. 金融发展、创新与二氧化碳排放[J]. 金融研究,2016(1):14-30.
[5]Hui C H,Wong A. Do countries adjust the carbon intensity of energy towards targets?The role of financial development on the adjustment[J]. SN Business & Economics,2021,1(10):136.
[6]Abbasi F,Riaz K. CO2 emissions and financial development in an emerging economy:an augmented VAR approach[J]. Energy Policy,2016,90:102-114.
[7]项目综合报告编写组. 《中国长期低碳发展战略与转型路径研究》综合报告[J]. 中国人口·资源与环境,2020,30(11):1-25.
[8]高原,申珍珍. 绿色金融改革政策的碳减排效应[J]. 中国环境科学,2022,42(10):4849-4859.
[9]王金涛,黄恒. 绿色信贷对碳排放的影响研究:基于PSTR模型和SDM模型的实证分析[J]. 当代经济管理,2022,44(9):80-90.
[10]施懿宸,朱彦幸娃,任玉洁. 绿色金融助力农业农村减排固碳的路径与对策[J]. 金融纵横,2021(5):17-22.
[11]徐文成,毛彦军,屈小爽. 农村金融发展对农业碳排放影响研:以河南省17个省辖市为例[J]. 征信,2022,40(7):86-92.
[12]刘莉,陈卓. 农业碳排放效率与绿色金融发展水平的耦合协调分析[J]. 阜阳师范大学学报(自然科学版),2023,40(2):87-98.
[13]李青原,肖泽华. 异质性环境规制工具与企业绿色创新激励:来自上市企业绿色专利的证据[J]. 经济研究,2020,55(9):192-208.
[14]田云,尹忞昊. 中国农业碳排放再测算:基本现状、动态演进及空间溢出效应[J]. 中国农村经济,2022(3):104-127.
[15]田成诗,陈雨. 中国省际农业碳排放测算及低碳化水平评价:基于衍生指标与TOPSIS法的运用[J]. 自然资源学报,2021,36(2):395-410.
[1]宋雯雯,陆学文,周华.国库集中支付制度下农业科研经费管理存在的问题及对策[J].江苏农业科学,2014,42(11):485.
Song Wenwen,et al(8).Problems and countermeasures for management of agricultural scientific research fund under treasury centralization payment system[J].Jiangsu Agricultural Sciences,2014,42(13):485.
[2]汤爱萍,万金保,李爽,等.环境系统工程在农业非点源污染控制中的应用[J].江苏农业科学,2013,41(06):353.
Tang Aiping,et al.Application of environment system engineering in controlling agricultural non-point source pollution[J].Jiangsu Agricultural Sciences,2013,41(13):353.
[3]李万青.中国农业国际竞争力的优势、劣势及提升路径——基于金砖国家农业基本状况的比较[J].江苏农业科学,2014,42(09):437.
Li Wanqing.Strength, weakness and enhance path of Chinas agricultural international competitiveness—Based on comparative study on basic situation of agriculture in BRIC countries[J].Jiangsu Agricultural Sciences,2014,42(13):437.
[4]鄢姣,赵军.中国农业风险评估——基于H-P滤波分析与非平衡面板数据的实证研究[J].江苏农业科学,2014,42(09):409.
Yan Jiao,et al.Risk assessment of Chinas agriculture-Based on empirical study of H-P filter and the unbalanced panel data[J].Jiangsu Agricultural Sciences,2014,42(13):409.
[5]张晓莉,逄春蕾,尹作华.基于修正钻石模型的新疆生产建设兵团农业竞争力研究——与黑龙江农垦的比较[J].江苏农业科学,2014,42(09):413.
Zhang Xiaoli,et al.Study on agricultural competitiveness of Xinjiang Production and Construction Corps based on modified diamond model—Comparative analysis with Heilongjiang land reclamation[J].Jiangsu Agricultural Sciences,2014,42(13):413.
[6]鲍荣龙.设施草莓的安全高效栽培集成技术及产业化趋势[J].江苏农业科学,2013,41(08):166.
Bao Ronglong.Safe and efficient cultivation integrated technology and industrialization trends for strawberry in greenhouse[J].Jiangsu Agricultural Sciences,2013,41(13):166.
[7]何榕,盖玉芳,焦隽,等.江苏省扬州市发展农业适度规模经营的探索[J].江苏农业科学,2016,44(05):550.
He Rong,et al.Exploration of appropriate agriculture scale management development in Yangzhou,Jiangsu Province[J].Jiangsu Agricultural Sciences,2016,44(13):550.
[8]潘薇,练霞.面向农业领域的可重用学习对象模型[J].江苏农业科学,2014,42(03):357.
Pan Wei,et al.A reusable learning object model for agriculture domain[J].Jiangsu Agricultural Sciences,2014,42(13):357.
[9]李国锋,张振华,邹轶.农业生产标准化存在的问题及对策建议[J].江苏农业科学,2016,44(02):468.
Li Guofeng,et al.Problems and countermeasures for standardization of agricultural production[J].Jiangsu Agricultural Sciences,2016,44(13):468.
[10]倪圣亚,薛民琪,陆胜龙,等.盐城市农业面源污染现状与防治对策[J].江苏农业科学,2015,43(12):413.
Ni Shengya,et al.Present situation and countermeasures of agricultural non-point source pollution in Yancheng City[J].Jiangsu Agricultural Sciences,2015,43(13):413.