[1] 刘景双. 湿地生物地球化学研究[J].湿地科学,2005,3(4):302-309. [2] 杨永兴,王世岩,何太蓉.三江平原湿地生态系统P、K分布特征及季节动态研究[J].应用生态学报,2001,12(4):522-526. [3] ANTIZAR-LADISLAO B, SARKAR S K, ANDERSON P, et al.Baseline of butyltin contamination in sediments of Sundarban mangrove wetland and adjacent coastal regions, India[J]. Ecotoxicology, 2011,20(8):1975-1983. [4] RIVERA-MONROY V H, TWILLEY R R, DAVIS S E, et al. The role of the Everglades Mangrove Ecotone Region (EMER) in regulating nutrient cycling and wetland productivity in South Florida[J]. Critical reviews in environmental science and technology, 2012, 41:633-669. [5] 张紫霞,刘鹏,王妍,等.典型岩溶湿地表层沉积物中磷的形态及分布特征研究[J].西南林业大学学报(自然科学),2021,41(3):78-86. [6] 姜晓霞,孙玥,储茵,等.巢湖典型流域河道沉积物磷赋存形态研究[J].安徽农业大学学报,2021,48(6):960-967. [7] 徐进,张奇,王世和,等.湖滨湿地基质-水界面磷释放特性研究[J].中国给水排水,2007,23(1):43-47. [8] 李卫东,刘云根,田昆,等.滇西北高原剑湖茭草湿地湖滨带对农业面源N·P污染净化效果研究[J].安徽农业科学,2010,38(32):18294-18296,18350. [9] 田娟,刘凌.淹水土壤土-水界面磷素迁移转化研究[J].环境科学,2008,29(7):1818-1823. [10] DUNNE E J, CLARK M W, MITCHELL J, et al.Soil phosphorus flux from emergent marsh wetlands and surrounding grazed pasture uplands[J]. Ecological engineering,2012,36(10):1392-1400. [11] MHAMDI B A, AZZOUZI A, ELLOUMI J, et al.Exchange potentials of phosphorus between sediments and water coupled to alkaline phosphate activity and environmental factors in an oligo-mesotrophic reservoir[J].Comptes rendus biologies, 2007,330(5):419-428. [12] 金相灿,王圣瑞,赵海超,等.磷形态对磷在水-沉水植物-底质中分配的影响[J].生态环境,2005,14(5):631-635. [13] 李宝,王志奇,王千锁,等.山东省南四湖夏冬季沉积物及间隙水中磷分布特征及其相关性[J].应用生态学报,2013,24(6):1699-1706. [14] 聂丽娟,田文龙,管锡东,等.武汉市湖泊表层沉积物磷形态组成特征[J].生态与农村环境学报,2020,36(12):1540-1548. [15] HUPFER M, GÄCHTER R, GIOVANOLI R. Transformation of phosphorus species in settling seston and during early sediment diagenesis[J]. Aquatic sciences,1995,57(4):305-324. [16] 拜亚红,钱晨歌,袁思静,等. 包头南海湿地磷形态及污染源定量识别[J]. 环境科学,2021,42(9):4275-4286. [17] 程俊杰,杨文斌,黄蓉,等. 菖蒲对沉积物中各形态磷垂直分布的影响[J]. 环境污染与防治,2019,41(9):1011-1017. [18] 周楠楠,王赢,高顺峰,等. 两种不同根系特征沉水植物对沉积物剖面不同形态磷的影响[J]. 环境科学学报,2021,41(6): 2222-2228. |