[1] 闵炬, 纪荣婷, 王霞, 等. 太湖地区种植结构及农田氮磷流失负荷变化[J]. 中国生态农业学报, 2020, 28(8): 1230 − 1238.

MIN Ju, JI Rongting, WANG Xia, et al. Changes in planting structure and nitrogen and phosphorus loss loads of farmland in Taihu Lake region [J]. Chin J Eco-Agric, 2020, 28(8): 1230 − 1238.
[2] 高超, 张桃林, 吴蔚东. 不同利用方式下农田土壤对磷的吸持与解吸特征[J]. 环境科学, 2001, 22(4): 67 − 72.

GAO Chao, ZHANG Taolin, WU Weidong. Phosphorus sorption and desorption of agricultural soils under different land uses [J]. Environ Sci, 2001, 22(4): 67 − 72.
[3] 金洁, 杨京平, 施洪鑫, 等. 水稻田面水中氮磷素的动态特征研究[J]. 农业环境科学学报, 2001, 22(4): 67 − 72.

JIN Jie, YANG Jingping, SHI Hongxin, et al. Variations of nitrogen and phosphorus in surface water body of a paddy field [J]. J Agro-Environ Sci, 2001, 22(4): 67 − 72.
[4] 王季丰. 稻田养分流失和经济林水土流失控制技术的研究[D]. 杭州: 浙江大学, 2017.

WANG Jifeng. Studies on the Techniques for Controlling Nutrient Runoff Losses from Rice Fields and Soil Erosion from Nonwood Forests [D]. Hangzhou: Zhejiang University, 2017.
[5] 郭智, 周炜, 陈留根, 等. 施用猪粪有机肥对稻麦两熟农田稻季养分径流流失的影响[J]. 水土保持学报, 2013, 27(6): 21 − 25, 61.

GUO Zhi, ZHOU Wei, CHEN Liugen, et al. Effect of pig manure application on surface runoff losses of soil nitrogen and phosphorus during the paddy season in intensive rice-wheat rotation field [J]. J Soil Water Conserv, 2013, 27(6): 21 − 25, 61.
[6] 郭智, 刘红江, 张岳芳, 等. 不同施肥模式对菜-稻轮作农田土壤磷素径流损失与表观平衡的影响[J]. 水土保持学报, 2019, 33(4): 102 − 109.

GUO Zhi, LIU Hongjiang, ZHANG Yuefang, et al. Effects of different fertilization modes on phosphorus (P) loss by surface runoffand apparent P balance in the vegetable-rice rotation fields of Taihu Lake Region, China [J]. J Soil Water Conserv, 2019, 33(4): 102 − 109.
[7] 吴蔚君. 生物炭对水稻产量及稻田氮磷流失影响[D]. 合肥: 安徽农业大学, 2018.

WU Weijun. Effect of Biochar on Rice Yield and Loss of Nitrogen and Phosphorus in Rice Field [D]. Hefei: Anhui Agricultural University, 2018.
[8] 蔡媛媛, 王瑞琪, 王丽丽, 等. 华北平原不同施氮量与施肥模式对作物产量与氮肥利用率的影响[J]. 农业资源与环境学报, 2020, 37(4): 503 − 510.

CAI Yuanyuan, WANG Ruiqi, WANG Lili, et al. Effects of nitrogen amount and fertilization patterns on crop yield and nitrogen useefficiency on the North China Plain [J]. J Agric Resour Environ, 2020, 37(4): 503 − 510.
[9] 高海英, 何绪生, 陈心想, 等. 生物炭及炭基硝酸铵肥料对土壤化学性质及作物产量的影响[J]. 农业环境科学学报, 2012, 31(10): 1948 − 1955.

GAO Haiying, HE Xusheng, CHEN Xinxiang, et al. Effect of biochar and biochar-based ammonium nitrate fertilizers on soil chemical properties and crop yield [J]. J Agro-Environ Sci, 2012, 31(10): 1948 − 1955.
[10] 臧清波, 马玺, 张静峰, 等. 生物质炭基肥对玉米和水稻产量性状的影响[J]. 北方农业学报, 2019, 47(4): 61 − 65.

ZANG Qingbo, MA Xi, ZHANG Jingfeng, et al. Effect of biochar fertilizer on the yield traits of maize and rice [J]. J Northern Agric, 2019, 47(4): 61 − 65.
[11] 陈香碧, 胡亚军, 秦红灵, 等. 稻作系统有机肥替代部分化肥的土壤氮循环特征及增产机制[J]. 应用生态学报, 2020, 31(3): 1033 − 1042.

CHEN Xiangbi, HU Yajun, QIN Hongling, et al. Characteristics of soil nitrogen cycle and mechanisms underlying the increase in rice yield with partial substitution of mineral fertilizers with organic manure in a paddy ecosystem: a review [J]. Chin J Appl Ecol, 2020, 31(3): 1033 − 1042.
[12] 乔志刚, 陈琳, 李恋卿, 等. 生物质炭基肥对水稻生长及氮素利用率的影响[J]. 中国农学通报, 2014, 30(5): 175 − 180.

QIAO Zhigang, CHEN Lin, LI Lianqing, et al. Effects of biochar fertilizer on growth and nitrogen utilizing rate of rice [J]. Chin Agric Sci Bull, 2014, 30(5): 175 − 180.
[13] 徐孟泽, 梁敏, 李苗苗, 等. 炭基肥与化肥配施对生菜产量与品质的影响[J]. 农学学报, 2020, 10(7): 45 − 49.

XU Mengze, LIANG Min, LI Miaomiao, et al. Effect of combined application of biochar-based fertilizer and chemical fertilizer on yield and quality of lettuce [J]. J Agric, 2020, 10(7): 45 − 49.
[14] 李玥, 余亚琳, 张欣, 等. 连续施用炭基肥及生物炭对棕壤有机氮组分的影响[J]. 生态学杂志, 2017, 36(10): 2903 − 2909.

LI Yue, YU Yalin, ZHANG Xin, et al. Effects of continuous application of biochar-based fertilizer and biocharon organic nitrogen fractions in brown soil [J]. Chin J Ecol, 2017, 36(10): 2903 − 2909.
[15] 刘琪琪. 秸秆生物质炭基肥对水稻和玉米生长及产量的影响[D]. 南京: 南京农业大学, 2017.

LIU Qiqi. Effect of Straw Biochar based Fertilizer on Rice and Maize Growth and Grain Yield [D]. Nanjing: Nanjing Agricultural University, 2017.
[16] 王新霞, 左婷, 王肖君, 等. 稻-麦轮作条件下2种施肥模式作物产量和农田氮磷径流流失比较[J]. 水土保持学报, 2020, 34(3): 20 − 27.

WANG Xinxia, ZUO Ting, WANG Xiaojun, et al. Comparative of two fertilization modes on crop yields and nitrogen/phosphorus runoff losses under rice-wheat rotation [J]. J Soil Water Conserv, 2020, 34(3): 20 − 27.
[17] 杜加银, 茹美, 倪吾钟. 减氮控磷稳钾施肥对水稻产量及养分积累的影响[J]. 植物营养与肥料学报, 2013, 19(3): 523 − 533.

DU Jiayin, RU Mei, NI Wuzhong. Effects of fertilization with reducing nitrogen, controlling phosphorus and stabilizing potassium on rice yield and nutrient accumulation [J]. J Plant Nutr Fert, 2013, 19(3): 523 − 533.
[18] 范星露, 易自力, 刘福来, 等. 炭基复混肥料对水稻氮磷钾吸收及产量的影响[J]. 中国农学通报, 2016, 32(24): 11 − 17.

FAN Xinglu, YI Zili, LIU Fulai, et al. Effects of carbon-based compound fertilizer on nitrogen, phosphorus andpotassium absorption and yield of Oryza sativa L. [J]. Chin Agric Sci Bull, 2016, 32(24): 11 − 17.
[19] 张萌, 魏全全, 肖厚军, 等. 不同用量专用生物炭基肥对贵州朝天椒提质增效的影响[J]. 核农学报, 2019, 33(7): 1457 − 1464.

ZHANG Meng, WEI Quanquan, XIAO Houjun, et al. Effects of different dosage of biochar-based fertilizer on quality and efficiency of hot pepper in Guizhou [J]. J Nucl Agric Sci, 2019, 33(7): 1457 − 1464.
[20] 马谦, 蒋恩臣, 王明峰, 等. 生物质炭基缓释肥的成型特性研究[J]. 农机化研究, 2015(4): 242 − 246.

MA Qian, JIANG Enchen, WANG Mingfeng, et al. Molding characteristics study of carbon-based biomass release fertilizer [J]. J Agric Mech Res, 2015(4): 242 − 246.
[21] 李艳梅, 张兴昌, 廖上强, 等. 生物炭基肥增效技术与制备工艺研究进展分析[J]. 农业机械学报, 2017, 48(10): 1 − 14.

LI Yanmei, ZHANG Xingchang, LIAO Shangqiang, et al. Research progress on synergy technologies of carbon-based fertilizer and its application [J]. Trans Chin Soc Agric Mach, 2017, 48(10): 1 − 14.
[22] 刘红江, 陈虞雯, 孙国峰, 等. 有机肥-无机肥不同配施比例对水稻产量和农田养分流失的影响[J]. 生态学杂志, 2017, 36(2): 405 − 412.

LIU Hongjiang, CHEN Yuwen, SUN Guofeng, et al. Effects of different organic-inorganic fertilizer combination ratios onrice yield and nutrient loss with surface runoff [J]. Chin J Ecol, 2017, 36(2): 405 − 412.
[23] 郭智, 肖敏, 陈留根, 等. 稻麦两熟农田稻季养分径流流失特征[J]. 生态环境学报, 2010, 19(7): 1622 − 1627.

GUO Zhi, XIAO Min, CHEN Liugen, et al. The characteristics of surface runoff losses of soil nitrogenand phosphorusduring rice season in intensiverice-wheat rotation field [J]. Ecol Environ Sci, 2010, 19(7): 1622 − 1627.
[24] 马欢欢, 周建斌, 王刘江, 等. 秸秆炭基肥料挤压造粒成型优化及主要性能[J]. 农业工程学报, 2014, 30(5): 270 − 276.

MA Huanhuan, ZHOU Jianbin, WANG Liujiang, et al. Straw carbon based fertilizer granulation molding optimization and its main properties [J]. Trans Chin Soc Agric Eng, 2014, 30(5): 270 − 276.
[25] 刘辉, 胡梦甜, 韩永伟, 等. 8种面源污染防治种植模式对土壤温度、湿度和氮磷流失风险的影响[J]. 环境生态学, 2019, 1(8): 28 − 34.

LIU Hui, HU Mengtian, HAN Yongwei, et al. Effects of eight planting models on soil temperature, moisture and risk of nitrogen and phosphate by integrating non-point source pollution control [J]. Environ Ecol, 2019, 1(8): 28 − 34.