| [1] | 邓伟明, 唐梦天, 郭玉栋, 等. 生物炭与磷肥添加对红壤团聚体及其磷组分分布的影响[J]. 土壤通报, 2023, 54(2):352-363. | 
																													
																						| [2] | 李贞霞, 任秀娟, 祁雪娇, 等. 辣椒秸秆生物炭对酸化土壤交换性能及酶活性的影响[J]. 西北农业学报, 2019, 28(1):117-124. | 
																													
																						| [3] | 马雯琪, 蒋靖佰伦, 李典鹏, 等. 施用生物质炭5年后夏玉米土壤呼吸研究[J]. 农业资源与环境学报, 2021, 38(1):111-118. | 
																													
																						| [4] | CHU Q, XUE L, SINGH P B, et al. Sewage sludge-derived hydrochar that inhibits ammonia volatilization, improves soil nitrogen retention and rice nitrogen utilization[J]. Chemosphere, 2020,245:125558. | 
																													
																						| [5] | 沈露露, 范玉超, 张雪, 等. 水稻秸秆生物炭中铜和镉的形态分布及释放特性[J]. 环境科学研究, 2020, 33(9):2148-2155. | 
																													
																						| [6] | LU H, YAN M X, WONG M H, et al. Effects of biochar on soil microbial community and functional genes of a landfill cover three years after ecological restoration[J]. Science of the total environment, 2020,717:137133. | 
																													
																						| [7] | 刘玉学, 唐旭, 杨生茂, 等. 生物炭对土壤磷素转化的影响及其机理研究进展[J]. 植物营养与肥料学报, 2016, 22(6):1690-1695. | 
																													
																						| [8] | ANGST E T, SOHI P S. Establishing release dynamics for plant nutrients from biochar[J]. GCB Bioenergy, 2013, 5(2):221-226. | 
																													
																						| [9] | 李博洋, 叶茵, 楚睿雯, 等. 施加生物炭对谷子干物质积累、转运、分配和土壤理化性质的影响[J]. 作物学报, 2024, 50(3):695-708.  doi: 10.3724/SP.J.1006.2024.34097
 | 
																													
																						| [10] | 陈孟林, 唐华君, 陈钰祺, 等. 改性生物炭作为磷吸附剂的应用与经济效益分析[J]. 水处理技术, 2023, 49(3):1-6.  doi: 10.16796/j.cnki.1000-3770.2023.03.001
 | 
																													
																						| [11] | 占亚楠, 王智, 孟亚利. 生物炭提高土壤磷素有效性的整合分析[J]. 应用生态学报, 2020, 31(4):1185-1193.  doi: 10.13287/j.1001-9332.202004.024
 | 
																													
																						| [12] | 苏倩, 侯振安. 生物炭对新疆灰漠土壤无机磷形态的影响[J]. 新疆农业科学, 2012, 49(11):2102-2107. | 
																													
																						| [13] | 甘国渝, 金慧芳, 李燕丽, 等. 秸秆及其生物炭添加对土壤Olsen-P及磷素组分的影响[J]. 灌溉排水学报, 2023, 42(5):43-51. | 
																													
																						| [14] | 刘佳政, 牛文娟, 钟菲, 等. 不同类型秸秆生物炭的燃烧特性与动力学分析[J]. 太阳能学报, 2019, 40(6):1647-1655. | 
																													
																						| [15] | 娄洁. 蔬菜秸秆生物炭制备及其改良黄瓜连作土壤的效果研究[D]. 泰安: 山东农业大学, 2022. | 
																													
																						| [16] | 向书江, 余泺, 熊子怡, 等. 化肥和有机肥配施生物炭对紫色土壤养分及磷赋存形态的影响[J]. 环境科学, 2021, 42(12):6067-6077. | 
																													
																						| [17] | SHARPLEY A, MOYER B. Phosphorus forms in manure and compost and their release during simulated rainfall[J]. Journal of environmental quality, 2000, 29(5):1462-1469. | 
																													
																						| [18] | NEGASSA W, LEINWEBER P. How does the Hedley sequential phosphorus fractionation reflect impacts of land use and management on soil phosphorus: A review[J]. Journal of plant nutrition and soil science, 2009, 172(3):305-325. | 
																													
																						| [19] | 彭权懿, 王耀锋, 郑重, 等. 磷改性生物炭对土壤中磷溶出的影响[J]. 天津农业科学, 2023, 29(2):57-63. | 
																													
																						| [20] | 秦红益, 杨焱堃, 施雅洁, 等. 热解温度对鸡粪生物炭磷形态及磷淋失的影响[J]. 环境工程学报, 2021, 15(9):3004-3011. | 
																													
																						| [21] | MIN X, WU J, GANG Y, et al. Biochar addition to soil highly increases P retention and decreases the risk of phosphate contamination of waters[J]. Environmental chemistry letters, 2019,17:533-541. | 
																													
																						| [22] | AULAKH M S, KABBAB B S, BADDESHA H S, et al. Crop yields and phosphorus fertilizer transformations after 25 years of applications to a subtropical soil under groundnut-based cropping systems[J]. Field crops research, 2003, 83(3):283-296. | 
																													
																						| [23] | DAKORA F D, PHILLPS D A. Root exudates as mediators of mineral acquisition in low-nutrient environments[J]. Plant and soil, 2002,245:35-47. | 
																													
																						| [24] | 王昆昆, 廖世鹏, 任涛, 等. 连续秸秆还田对油菜水稻轮作土壤磷素有效性及作物磷素利用效率的影响[J]. 中国农业科学, 2020, 53(1):94-104.  doi: 10.3864/j.issn.0578-1752.2020.01.009
 | 
																													
																						| [25] | CANTRELL K B, HUNT P G, UCHIMYA M, et al. Impact of pyrolysis temperature and manure source on physicochemical characteristics of biochar[J]. Bioresource technology, 2012,107:419-428. | 
																													
																						| [26] | CHIRONE R, SALATINO P, SCALA F. The relevance of attrition to the fate of ashes during fluidized-bed combustion of a biomass[J]. Proceedings of the combustion institute, 2000, 28(2):2279-2286. | 
																													
																						| [27] | 胡龙龙. 不同磷基生物炭磷释放特征及其对污染土壤铅的钝化研究[D]. 淮南: 安徽理工大学, 2020. | 
																													
																						| [28] | QINAN T T, WANG L, LE C C, et al. Low -temperature - steam activation of phosphorus in biochar derived from enhanced biological phosphorus removal (EBPR) sludge[J]. Water research, 2019,161:202-210. | 
																													
																						| [29] | 赵卫. 不同环境条件下生物炭对磷的吸附及其内源磷的释放[D]. 曲阜: 曲阜师范大学, 2016. | 
																													
																						| [30] | 巢军委, 王建国, 戴敏, 等. 生物炭对水稻土Olsen-P的影响[J]. 土壤, 2015, 47(4):670-674. | 
																													
																						| [31] | 唐登勇, 黄越, 胥瑞晨, 等. 改性芦苇生物炭对水中低浓度磷的吸附特征[J]. 环境科学, 2016, 37(6):2195-2201. | 
																													
																						| [32] | YANG Q, WANG X L, LUO W, et al. Effectiveness and mechanisms of phosphate adsorption on iron-modified biochars derived from waste activated sludge[J]. Bioresource technology, 2018,247:537-544. | 
																													
																						| [33] | LIN J W, ZHAN Y H, WANG H, et al. Effect of calcium ion on phosphate adsorption onto hydrous zirconium oxide[J]. Chemical engineering journal, 2017,309:118-129. |