[1] 张明达, 张国强, 王克如, 等. 种植密度和灌溉量对西辽河平原春玉米产量及水分利用效率的影响[J]. 玉米科学, 2023, 31(1): 116 − 125.
[2]

WU X, WANG A, GUO X, et al. Genetic characterization of maize germplasm derived from Suwan population and temperate resources[J]. Hereditas, 2019, 156: 2. doi:  10.1186/s41065-018-0077-1
[3]

SINGH B P, COWIE A L. Long-term influence of biochar on native organic carbon mineralisation in a low-carbon clayey soil[J]. Scientific Reports, 2014, 4: 3687. doi:  10.1038/srep03687
[4]

OLADELE S O, ADEYEMO A J, AWODUN M A. Influence of rice husk biochar and inorganic fertilizer on soil nutrients availability and rain-fed rice yield in two contrasting soils[J]. Geoderma, 2019, 336: 1 − 11. doi:  10.1016/j.geoderma.2018.08.025
[5]

XU R K, ZHAO A Z, YUAN J H, et al. pH buffering capacity of acid soils from tropical and subtropical regions of China as influenced by incorporation of crop straw biochars[J]. Journal of Soils and Sediments, 2012, 12(4): 494 − 502. doi:  10.1007/s11368-012-0483-3
[6]

TAKAI T, LUMANGLAS P, SIMON E V, et al. Identifying key traits in high-yielding rice cultivars for adaptability to both temperate and tropical environments[J]. The Crop Journal, 2019, 7(5): 685 − 693. doi:  10.1016/j.cj.2019.06.004
[7]

YUAN J H, XU R K, ZHANG H. The forms of alkalis in the biochar produced from crop residues at different temperatures[J]. Bioresource Technology, 2011, 102(3): 3488 − 3497. doi:  10.1016/j.biortech.2010.11.018
[8]

OMONDI M O, XIA X, NAHAYO A, et al. Quantification of biochar effects on soil hydrological properties using meta-analysis of literature data[J]. Geoderma, 2016, 274: 28 − 34. doi:  10.1016/j.geoderma.2016.03.029
[9]

BOLAN N, HOANG S A, BEIYUAN J, et al. Multifunctional applications of biochar beyond carbon storage[J]. International Materials Reviews, 2022, 67(2): 150 − 200. doi:  10.1080/09506608.2021.1922047
[10]

VAN ZWIETEN L, KIMBER S, MORRIS S, et al. Effects of biochar from slow pyrolysis of papermill waste on agronomic performance and soil fertility[J]. Plant and Soil, 2010, 327(1): 235 − 246.
[11]

MARU A, HARUNA O A, PRIMUS W C. Coapplication of chicken litter biochar and urea only to improve nutrients use efficiency and yield of oryza sativa L. cultivation on a tropical acid soil[J]. The Scientific World Journal, 2015, 2015: 943853. doi:  10.1155/2015/943853
[12] 崔佳音, 李秀芳, 吴世清, 等. 生物炭添加对苦咸水灌溉下玉米生长及产量的影响[J]. 节水灌溉, 2022(6): 1 − 9.
[13] 王志丹, 代晓华, 刘吉利, 等. 生物炭对宁夏干旱地区玉米生长及产量的影响[J]. 甘肃农业大学学报, 2022, 57(1): 74 − 82.
[14] 李玉, 汤家喜, 梁伟静, 等. 生物炭和膨润土改良风沙土理化性质及对玉米农艺性状的影响[J]. 干旱区资源与环境, 2023, 37(6): 164 − 174.
[15] 梁凯, 王祚, 郝顺. 生物炭配施条件下减氮对春玉米产量及土壤氨挥发的影响[J]. 内蒙古水利, 2023(9): 6 − 7.
[16]

AMOAKWAH E, ARTHUR E, FRIMPONG K A, et al. Soil organic carbon storage and quality are impacted by corn cob biochar application on a tropical sandy loam[J]. Journal of Soils and Sediments, 2020, 20(4): 1960 − 1969. doi:  10.1007/s11368-019-02547-5
[17]

JIEN S H, CHEN W C, OK Y S, et al. Short-term biochar application induced variations in C and N mineralization in a compost-amended tropical soil[J]. Environmental Science and Pollution Research, 2018, 25(26): 25715 − 25725. doi:  10.1007/s11356-017-9234-8
[18]

AGEGNEHU G, BIRD M I, NELSON P N, et al. The ameliorating effects of biochar and compost on soil quality and plant growth on a Ferralsol[J]. Soil Research, 2015, 53: 1 − 12. doi:  10.1071/SR14118
[19]

GWENZI W, MUZAVA M, MAPANDA F, et al. Comparative short-term effects of sewage sludge and its biochar on soil properties, maize growth and uptake of nutrients on a tropical clay soil in Zimbabwe[J]. Journal of Integrative Agriculture, 2016, 15(6): 1395 − 1406. doi:  10.1016/S2095-3119(15)61154-6
[20]

ABIVEN S, HUND A, MARTINSEN V, et al. Biochar amendment increases maize root surface areas and branching: a shovelomics study in Zambia[J]. Plant and Soil, 2015, 395(1): 45 − 55.
[21] 鲍士旦. 土壤农化分析 [M]. 3 版. 北京: 中国农业出版社, 2000: 25-109.
[22]

GUL S, WHALEN J K. Biochemical cycling of nitrogen and phosphorus in biochar-amended soils[J]. Soil Biology and Biochemistry, 2016, 103: 1 − 15. doi:  10.1016/j.soilbio.2016.08.001
[23]

YU H, ZOU W, CHEN J, et al. Biochar amendment improves crop production in problem soils: A review[J]. Journal of Environmental Management, 2019, 232: 8 − 21.
[24]

UAN J H, XU R K. The amelioration effects of low temperature biochar generated from nine crop residues on an acidic Ultisol[J]. Soil Use and Management, 2011, 27(1): 110 − 115. doi:  10.1111/j.1475-2743.2010.00317.x
[25]

ZHANG C, HUANG X, ZHANG X, et al. Effects of biochar application on soil nitrogen and phosphorous leaching loss and oil peony growth[J]. Agricultural Water Management, 2021, 255: 107022. doi:  10.1016/j.agwat.2021.107022
[26]

NIELSEN S, JOSEPH S, YE J, et al. Crop-season and residual effects of sequentially applied mineral enhanced biochar and N fertiliser on crop yield, soil chemistry and microbial communities [J]. Agriculture, Ecosystems & Environment, 2018, 255: 52-61.
[27]

WOJEWóDZKI P, LEMANOWICZ J, DEBSKA B, et al. Soil enzyme activity response under the amendment of different types of biochar[J]. Agronomy, 2022, 12(3): 569. doi:  10.3390/agronomy12030569
[28]

SMITH J L, COLLINS H P, BAILEY V L. The effect of young biochar on soil respiration[J]. Soil Biology and Biochemistry, 2010, 42(12): 2345 − 2347. doi:  10.1016/j.soilbio.2010.09.013
[29] 何绪生, 张树清, 佘雕, 等. 生物炭对土壤肥料的作用及未来研究[J]. 中国农学通报, 2011, 27(15): 16 − 25.
[30]

CHINTALA R, SCHUMACHER T E, MCDONALD L M, et al. Phosphorus sorption and availability from biochars and soil/biochar mixtures[J]. CLEAN-Soil, Air, Water, 2014, 42(5): 626 − 634. doi:  10.1002/clen.201300089
[31]

WANG D, ZHANG W, HAO X, et al. Transport of biochar particles in saturated granular media: effects of pyrolysis temperature and particle size[J]. Environmental Science & Technology, 2013, 47(2): 821 − 828.
[32] 刘国玲. 生物炭和秸秆还田对玉米生长发育和氮素吸收与利用的影响 [D]. 沈阳: 沈阳农业大学, 2016.
[33]

CYBULAK M, SOKOŁOWSKA Z, BOGUTA P. Impact of biochar on physicochemical properties of haplic luvisol soil under different land use: a plot experiment[J]. Agronomy-Basel, 2019, 9(9): 531. doi:  10.3390/agronomy9090531
[34]

LATARE A M, KUMAR O, SINGH S K, et al. Direct and residual effect of sewage sludge on yield, heavy metals content and soil fertility under rice-wheat system[J]. Ecological Engineering, 2014, 69: 17 − 24. doi:  10.1016/j.ecoleng.2014.03.066
[35]

FAGBENRO J A, OSHUNSANYA S O, OYELEYE B A. Effects of Gliricidia biochar and inorganic fertilizer on Moringa plant grown in an oxisol[J]. Communications in Soil Science and Plant Analysis, 2015, 46(5): 619 − 626. doi:  10.1080/00103624.2015.1005222
[36] 王高飞, 刘鸿雁, 邢丹, 等. 育苗基质添加辣椒秆生物炭对辣椒幼苗生长与养分的影响[J]. 西南农业学报, 2022, 35(3): 543 − 549.
[37] 孙海妮, 王仕稳, 李雨霖, 等. 生物炭施用量对冬小麦产量及水分利用效率的影响研究[J]. 干旱地区农业研究, 2018, 36(6): 159 − 167. doi:  10.7606/j.issn.1000-7601.2018.06.24
[38]

LI C, XIONG Y, QU Z, et al. Impact of biochar addition on soil properties and water-fertilizer productivity of tomato in semi-arid region of Inner Mongolia, China[J]. Geoderma, 2018, 331: 100 − 108. doi:  10.1016/j.geoderma.2018.06.014
[39] 王智慧, 李焮玉, 李金哲, 等. 生物炭对松嫩平原盐碱土玉米生长、养分积累及产量的影响[J]. 黑龙江农业科学, 2024(1): 12 − 17. doi:  10.11942/j.issn1002-2767.2024.01.0012
[40] 张晗芝, 黄云, 刘钢, 等. 生物炭对玉米苗期生长、养分吸收及土壤化学性状的影响[J]. 生态环境学报, 2010, 19(11): 2713 − 2717. doi:  10.3969/j.issn.1674-5906.2010.11.034
[41] 唐春双, 杨克军, 李佐同, 等. 生物炭对玉米茎秆性状及产量的影响[J]. 中国土壤与肥料, 2016(3): 93 − 97. doi:  10.11838/sfsc.20160315
[42]

LAIRD D A, NOVAK J M, COLLINS H P, et al. Multi-year and multi-location soil quality and crop biomass yield responses to hardwood fast pyrolysis biochar[J]. Geoderma, 2017, 289: 46 − 53. doi:  10.1016/j.geoderma.2016.11.025
[43]

HAIDER G, STEFFENS D, MOSER G, et al. Biochar reduced nitrate leaching and improved soil moisture content without yield improvements in a four-year field study [J]. Agriculture, Ecosystems & Environment, 2017, 237: 80-94.
[44] 刘卉, 周清明, 黎娟, 等. 生物炭施用量对土壤改良及烤烟生长的影响[J]. 核农学报, 2016, 30(7): 1411 − 1419. doi:  10.11869/j.issn.100-8551.2016.07.1411
[45] 周劲松, 闫平, 张伟明, 等. 生物炭对水稻苗期生长、养分吸收及土壤矿质元素含量的影响[J]. 生态学杂志, 2016, 35(11): 2952 − 2959.
[46]

FARHANGI-ABRIZ S, TORABIAN S, QIN R, et al. Biochar effects on yield of cereal and legume crops using meta-analysis[J]. Science of the Total Environment, 2021, 775: 145869. doi:  10.1016/j.scitotenv.2021.145869
[47] 王友华, 许波, 许海涛. 生物炭对夏玉米形态指标、生理特性和产量性状的影响[J]. 河南科技学院学报(自然科学版), 2017, 45(5): 1 − 7.
[48] 张娜, 李佳, 刘学欢, 等. 生物炭对夏玉米生长和产量的影响[J]. 农业环境科学学报, 2014, 33(8): 1569 − 1574. doi:  10.11654/jaes.2014.08.015
[49]

YANG J, PENG S, ZHANG Z, et al. Grain and dry matter yields and partitioning of assimilates in Japonica/indica hybrid rice[J]. Crop Science, 2002, 42(3): 766 − 772. doi:  10.2135/cropsci2002.7660