[1] |
中华人民共和国统计局. 中国统计年鉴2021[M]. 北京: 中国统计出版社, 2022.
|
[2] |
赵斌, 李宗新, 李勇, 等. 冬小麦-夏玉米周年光温资源高效利用[J]. 中国农业科学, 2020, 53(19):3893-3899.
doi: 10.3864/j.issn.0578-1752.2020.19.004
|
[3] |
宜丽宏, 王丽, 张孟妮, 等. 不同灌溉方式对冬小麦生长发育及水分利用效率的影响[J]. 灌溉排水学报, 2017, 36(10):14-19.
|
[4] |
陈静, 王迎春, 李虎, 等. 滴灌施肥对冬小麦农田土壤NO3-N分布、累积及氮素平衡的影响[J]. 植物营养与肥料学报, 2015, 21(4):927-935.
|
[5] |
LU J, XIANG Y, FAN J, et al. Sustainable high grain yield, nitrogen use efficiency and water productivity can be achieved in wheat-maize rotation system by changing irrigation and fertilization strategy[J]. Agricultural water management, 2021, 258:107177.
|
[6] |
白由路. 高效施肥技术研究的现状与展望[J]. 中国农业科学, 2018, 51(11):2116-2125.
doi: 10.3864/j.issn.0578-1752.2018.11.009
|
[7] |
ZHANG X, XIAO G, BOL R, et al. Influences of irrigation and fertilization on soil N cycle and losses from wheat-maize cropping system in northern China[J]. Environmental pollution, 2021, 278:116852.
|
[8] |
吴洲. 机械碾压及“四密一疏”条带种植模式对小麦生长和产量的影响[D]. 北京: 中国农业大学, 2021.
|
[9] |
LI J, XU X, LIN G, et al. Micro-irrigation improves grain yield and resource use efficiency by co-locating the roots and N-fertilizer distribution of winter wheat in the north China plain[J]. Science of the total environment, 2018, 643:367-377.
|
[10] |
VALENTÍN F, NORTES P A, DOMÍNGUEZ A, et al. Comparing evapotranspiration and yield performance of maize under sprinkler, superficial and subsurface drip irrigation in a semi-arid environment[J]. Irrigation science, 2020, 38(1):105-115.
|
[11] |
GENG Y, CAO G, WANG L, et al. Can drip irrigation under mulch be replaced with shallow-buried drip irrigation in spring maize production systems in semiarid areas of northern China?[J]. Journal of the science of food and agriculture, 2021, 101(5):1926-1934.
|
[12] |
要家威, 齐永青, 李怀辉, 等. 地下滴灌技术节水潜力及机理研究进展[J]. 中国生态农业学报(中英文), 2021, 29(6):1076-1084.
|
[13] |
米国华, 张丽娟, 王寒菊, 等. DB 1304/T 417—2023,黄淮海冬小麦-夏玉米卫星导航条带种植水肥一体化技术规程[S].邯郸市市场监督管理局, 2023.
|
[14] |
郝展宏, 叶松林, 张丽娟, 等. 冬小麦条带浅埋滴灌播种机[P].中国专利,202321835110.0.2024-01-02.
|
[15] |
叶松林. 夏玉米免耕播种农机农艺结合解决方案研究[D]. 北京: 中国农业大学, 2021.
|
[16] |
OWUSU E S, BRAVO-URETA B E. Reap when you sow? The productivity impacts of early sowing in Malawi[J]. Agricultural systems, 2022, 199:103412.
|
[17] |
周宝元, 葛均筑, 孙雪芳, 等. 黄淮海麦玉两熟区周年光温资源优化配置研究进展[J]. 作物学报, 2021, 47(10):1843-1853.
doi: 10.3724/SP.J.1006.2021.13012
|
[18] |
WANG J, WANG E, YANG X, et al. Increased yield potential of wheat-maize cropping system in the north China plain by climate change adaptation[J]. Climatic change, 2012, 113(3-4):825-840.
|
[19] |
刘月娥, 谢瑞芝, 张厚宝, 等. 不同生态区玉米适时晚收增产效果[J]. 中国农业科学, 2010, 43(13):2820-2828.
doi: 10.3864/j.issn.0578-1752.2010.13.024
|
[20] |
SUN H, ZHANG X, CHEN S, et al. Effects of harvest and sowing time on the performance of the rotation of winter wheat-summer maize in the north China plain[J]. Industrial crops and products, 2007, 25(3):239-247.
|
[21] |
LIU J, ZHENG C, ZHENG L, et al. Ground water sustainability: Methodology and application to the North China Plain[J]. Ground water, 2008, 46(6):897-909.
doi: 10.1111/j.1745-6584.2008.00486.x
pmid: 18754798
|
[22] |
葛选良, 杨恒山, 张雨珊, 等. 浅埋滴灌下不同施氮量对玉米产量和花后氮代谢的影响[J]. 植物营养与肥料学报, 2022, 28(9):1603-1613.
|
[23] |
MUELLER N D, GERBER J S, JOHNSTON M, et al. Closing yield gaps through nutrient and water management[J]. Nature, 2012, 490(7419):254-257.
|
[24] |
CAYUELA M L, AGUILERA E, SANZ-COBENA A, et al. Direct nitrous oxide emissions in mediterranean climate cropping systems: Emission factors based on a meta-analysis of available measurement data[J]. Agriculture, ecosystems & environment, 2017, 238:25-35.
|