[1] XIAO Z L, GU H Z, WU H, et al.Effects of planting density, levels, and forms of nitrogen application on the yield and nitrogen utilization of wheat following rice in East China[J]. Agronomy, 2022, 12(11): 2607. [2] 杨艳,杜丹,杨雪芳,等.等碳量配施玉米秸秆和生物炭对玉米生长及氮、磷、钾吸收的影响[J].中国土壤与肥料,2024(8):180-187,266. [3] 姚远,马泉,郑国利,等.麦/稻秸秆还田氮在后茬稻/麦植株中的分配去向探析[J].麦类作物学报,2023,43(8):1047-1055. [4] ZHANG S J, ZHANG G, WU M, et al.Straw return and low N addition modify the partitioning of dissimilatory nitrate reduction by increasing conversion to ammonium in paddy fields[J]. Soil biology and biochemistry, 2021, 162: 108425. [5] MA P, FAN P, YANG Z Y, et al.Increasing the contents of paddy soil available nutrients and crop yield via optimization of nitrogen management in a wheat-rice rotation system[J]. Plants, 2022, 11(17): 2209. [6] 王良,刘元元,钱欣,等.单季麦秸还田促进小麦-玉米周年碳效率和经济效益协同提高[J].中国农业科学,2022,55(2):350-364. [7] 谢雪,鲁艳红,廖育林,等.紫云英与稻草还田替代部分化肥对双季稻产量和土壤活性有机碳的影响[J].中国农业科学,2023,56(18):3585-3598. [8] LIU B, XIA H, JIANG C C, et al.14 year applications of chemical fertilizers and crop straw effects on soil labile organic carbon fractions, enzyme activities and microbial community in rice-wheat rotation of middle China[J]. Science of the total environment, 2022, 841: 156608. [9] 曾研华,范呈根,吴建富,等.等养分条件下稻草还田替代双季早稻氮钾肥比例的研究[J].植物营养与肥料学报,2017,23(3):658-668. [10] 吴群文,宋佩鸿,黄健华,等.基于麦-玉种植系统农田土壤碳库与作物产量的周年秸秆还田量评价[J].环境科学,2025,46(2):1016-1024. [11] 顾克军,张传辉,顾东祥,等.短期不同秸秆还田与耕作方式对土壤养分与稻麦周年产量的影响[J].西南农业学报,2017, 30(6):1408-1413. [12] 李桂花,张雪凌,周吉祥,等.长期秸秆还田下有机无机配施及微量元素和缓释肥的施用对双季稻产量和肥料利用率的影响[J].中国土壤与肥料,2021(6):149-155. [13] 倪芊芊,蔡洪梅,吴宇,等.不同季秸秆还田对冬小麦干物质积累分配及氮素利用率的影响[J].麦类作物学报,2023,43(1):75-80. [14] 车品高,陈国徽,曹国军,等.稻油轮作下秸秆还田对土壤养分和作物产量的影响[J].作物学报,2024,50(12):3118-3128. [15] 朱耀军,马牧源,郭嘉,等.排水沟渠影响下的高原泥炭地土壤氮空间分布特征[J].生态学杂志,2020,39(1):217-223. [16] 李春林,陈敏旺,王寅,等.吉林省农田耕层土壤速效磷、钾养分的时空变化特征[J].中国土壤与肥料,2019(4):16-23. [17] 刘淑军,李冬初,韩天富,等.稻草和紫云英协同还田下钾肥施用量对水稻产量及土壤供钾能力的影响[J].植物营养与肥料学报,2024,30(3):482-492. [18] ZHAO Y, GONG L Z, WANG F R, et al.Preliminary study of distribution of soil available nutrients in loquat (Eriobotrya japonica) orchards and their responses to environmental factors based on path analysis model[J]. Agronomy, 2024, 14(12): 2970. [19] 胡明明,李志欣,丁峰,等.不同水旱轮作模式下秸秆还田与精量减氮对水稻产量、氮素吸收利用及土壤氮含量的影响[J].植物营养与肥料学报,2024,30(8):1500-1514. [20] 袁伟,陈婉华,王子阳,等.双季稻秸秆还田与减施氮肥对水稻产量和品质的影响[J].江西农业大学学报,2021,43(4):711-720. [21] PARK S I, YANG H I, PARK H J, et al.Rice straw cover decreases soil erosion and sediment-bound C, N, and P losses but increases dissolved organic C export from upland maize fields as evidenced by δ13C[J]. Science of the total environment, 2021, 753: 142053. [22] YUAN G Y, HUAN W W, SONG H, et al.Effects of straw incorporation and potassium fertilizer on crop yields, soil organic carbon, and active carbon in the rice-wheat system[J]. Soil and tillage research, 2021, 209: 104958. [23] LATIFMANESH H, DENG A X, LI L, et al.How incorporation depth of corn straw affects straw decomposition rate and C&N release in the wheat-corn cropping system[J]. Agriculture, ecosystems & environment, 2020, 300: 107000. [24] 刘晶,郑利芳,王颖,等.减氮和秸秆还田对旱地土壤微生物和硝化潜势的影响[J].水土保持学报,2022,36(4):309-315. [25] 周斯豪,王美琦,宋瑶,等.长期秸秆还田对下茬还田秸秆的降解及土壤微生物群落的影响[J].环境科学,2025,46(1):532-542. [26] LI X L, FANG J C, SHAGAHALEH H, et al.Impacts of partial substitution of chemical fertilizer with organic fertilizer on soil organic carbon composition, enzyme activity, and grain yield in wheat-maize rotation[J]. Life, 2023, 13(9): 1929. [27] LIANG F, LI B Z, VOGT R D, et al.Straw return exacerbates soil acidification in major Chinese croplands[J]. Resources, conservation and recycling, 2023, 198: 107176. [28] CHE Y X,ZHANG B Y,LIU B Y,et al.Effects of straw return rate on soil physicochemical properties and yield in paddy fields[J]. Agronomy, 2024, 14(8): 1668. [29] DONG L L, WANG H H, SHEN Y, et al.Straw type and returning amount affects SOC fractions and Fe/Al oxides in a rice-wheat rotation system[J]. Applied soil ecology, 2023, 183: 104736. [30] CHEN P, XU J Z, ZHANG Z X, et al.Where the straw-derived nitrogen gone in paddy field subjected to different irrigation regimes and straw placement depths?Evidence from 15N labeling[J]. Agricultural water management, 2022, 273: 107921. [31] 陈佩,李士伟,程宇,等.秸秆还田对水稻土固氮微生物群落结构与功能活性的影响[J].土壤学报,2025,62(4):1149-1161. [32] SUN H F, ZHANG X X, ZHANG J N, et al.Long term comparison of GHG emissions and crop yields in response to direct straw or biochar incorporation in rice-wheat rotation systems: A 10-year field observation[J]. Agriculture, ecosystems & environment, 2024, 374: 109188. [33] 张志毅,何剑,范先鹏,等.稻麦轮作制还田秸秆腐解和养分释放特征[J].中国土壤与肥料,2022(8):221-230. [34] DANG K, RAN C, TIAN H, et al.Combined effects of straw return with nitrogen fertilizer on leaf ion balance, photosynthetic capacity, and rice yield in saline-sodic paddy fields[J]. Agronomy, 2023, 13(9): 2274. [35] LIAO P, HUANG S, VAN GESTEL N C, et al. Liming and straw retention interact to increase nitrogen uptake and grain yield in a double rice-cropping system[J]. Field crops research, 2018, 216: 217-224. [36] MINHAS W A, MEHBOOB N, YAHYA M, et al.The influence of different crop mulches on weed infestation, soil properties and productivity of wheat under conventional and conservation production systems[J]. Plants, 2022, 12(1): 9. [37] ISLAM M U, GUO Z C, JIANG F H, et al.Does straw return increase crop yield in the wheat-maize cropping system in China? A meta-analysis[J]. Field crops research, 2022, 279: 108447. |