参考文献/References:
[1] ZHANG W,JIN X,LIU D,et al.Temporal and spatial variation of nitrogen and phosphorus and eutrophication assessment for a typical arid river-Fuyang River in northern China[J].Journal of Environmental Sciences,2017,55:41-48.
[2] 薄涛,季民.内源污染控制技术研究进展[J].生态环境学报,2017,26(3):514-521.
[3] 刘鑫,史斌,孟晶,等.白洋淀水体富营养化和沉积物污染时空变化特征[J/OL].环境科学,2020,26(3):1-14.
[4] YIN H,KONG M,HAN M,et al.Influence of sediment resuspension on the efficacy of geoengineering materials in the control of internal phosphorous loading from shallow eutrophic lakes[J].Environmental Pollution,2016,219:568-579.
[5] MCGOLDRICK D J,MURPHY E W.Concentration and distribution of contaminants in lake trout and walleye from the Laurentian Great Lakes(2008—2012)[J].Environmental Pollution,2016,217:85-96.
[6] WU Z,LIU Y,LIANG Z,et al.Internal cycling,not external loading,decides the nutrient limitation in eutrophic lake:A dynamic model with temporal Bayesian hierarchical inference[J].Water Research,2017,116:231-240.
[7] 赵忠红,张乃明,扈学文,等.云南阳宗海表层沉积物有机质组成结构对磷赋存形态特征的影响[J].湖泊科学,2017,29(2):308-316.
[8] 吕晓霞,宋金明,袁华茂,等.南黄海表层沉积物中氮的潜在生态学功能[J].生态学报,2004(8):1635-1643.
[9] GARDNER W S,YANG L,COTNER J B,et al.Nitrogen dynamics in sandy freshwater sediments(saginaw bay,lake huron)[J].Journal of Great Lakes Research,2001,27(1):84-97.
[10] SOMES C J,SCHMITTNER A,GALBRAITH E D,et al.Simulating the global distribution of nitrogen isotopes in the ocean[J].Global Biogeochemical Cycles,2010,24(4),GB4019.
[11] LANGE G J D.Distribution of exchangeable,fixed,organic and total nitrogen in interbedded turbiditic/pelagic sediments of the Madeira Abyssal Plain,eastern North Atlantic[J].Marine Geology,1992,109(1/2):95-114.
[12] 刘波,周锋,王国祥,等.沉积物氮形态与测定方法研究进展[J].生态学报,2011,31(22):6947-6958.
[13] 戴树桂,张明顺,庄源益.底泥中氮的主要迁移转化过程及其转化模型的研究[J].环境科学学报,1990,10(1):1-9.
[14] BREMNER J M.Organic forms of nitrogen∥Black C A,ed.Methods of Soil[J].Analysis,Madison:American Society of Agronmy,1965:1148-1178.
[15] 范成新,张路,秦伯强,等.太湖沉积物—水界面生源要素迁移机制及定量化:1.铵态氮释放速率的空间差异及源—汇通量[J].湖泊科学,2004(1):10-20.
[16] WANG S R,JIN X C,NIU D,et al.Potentially mineralizable nitrogen in sediments of the shallow lakes in the middle and lower reaches of the Yangtze River area in China[J].Applied Geochemistry,2009,24(9):1788-1792.
[17] BCEH-BREZNIK,A TAJNSEK.Distribution of nitrogen in wheat plant in its late growth stages with regard to organic fertilisation and mineral nitrogen rate[J].Plant Soil & Environment,2018,51(12):553-561.
[18] 燕文明,麻林,向龙,等.沉积物-水界面中可交换态氮对不同菹草密度的响应[J].水资源保护,2016,32(2):119-122.
[19] 王圣瑞,焦立新,金相灿,等.长江中下游浅水湖泊沉积物总氮、可交换态氮与固定态铵的赋存特征[J].环境科学学报,2008(1):37-43.
[20] 许春雪,袁建,王亚平,等.沉积物中磷的赋存形态及磷形态顺序提取分析方法[J].岩矿测试,2011,30(6):785-794.
[21] 胡佩,周顺桂,刘德辉.土壤磷素分级方法研究评述[J].土壤通报,2003(3):70-73.
[22] REDDY K R,KADLEC R H,FLAIG E,et al.Phosphorus retention in streams and wetlands; A review[J].Critical Reviews in Environmental Science and Technology,1999,29:83-146.
[23] RUTTENBERG K C.Development of a sequential extraction method of different forms of phosphorus in marine sediments[J].Limnol Oceanogr,1992,37:1460-1482.
[24] 朱广伟,秦伯强.沉积物中磷形态的化学连续提取法应用研究[J].农业环境科学学报,2003(3):349-352.
[25] COWAN J L W,BOYNTON W R.Sediment-Water Oxygen and Nutrient Exchanges along the Longitudinal Axis of Chesapeake Bay:Seasonal Patterns,Controlling Factors and Ecological Significance[J].Estuaries,2019(3):562-580.
[26] RAAPHORST W V,KLOOSTERHUIS H T.Phosphate sorption in superficial intertidal sediments[J].Marine Chemistry,1994,48(1):1-16.
[27] 孟佳,姚庆祯,陈洪涛,等.北黄海表层沉积物中颗粒态磷的形态分布[J].环境科学,2012,33(10):3361-3367.
[28] 王岩,张志勇,秦红杰,等.种养凤眼莲条件下pH值对底泥中不同形态磷释放的影响[J].南京农业大学学报,2017,40(4):681-689.
[29] 刘峰,高云芳,王立欣,等.水域沉积物氮磷赋存形态和分布的研究进展[J].水生态学杂志,2011,32(4):137-144.
[30] 张小勇,杨茜,孙耀,等.黄东海陆架区沉积物中磷的形态分布及生物可利用性[J].生态学报,2013,33(11):3509-3519.
[31] 吴丰昌.云贵高原湖泊沉积物和水体氮、磷和硫的生物地球化学作用和生态环境效应(摘要)[J].地质地球化学,1996(6):88-89.
[32] QUAN Z,HUANG B,LU C,et al.Formation of extractable organic nitrogen in an agricultural soil:A,15N labeling study[J].Soil Biology & Biochemistry,2018,118:161-165.
[33] ROCHA C.Rhythmic ammonium regeneration and flushing in intertidal sediments of the Sado Estuary[J].Limnology and Oceanography,1998,43:823-831.
[34] 韩超南.大辽河河口区水体及悬浮颗粒物氮、磷的形态分布与变化特征研究
[D].北京:中国环境科学研究院,2014.
[35] 周子柯,牛晓音,王永平,等.百年来滇南双龙水库沉积物中氮的赋存特征变化
[J/OL].环境科学研究2020,27(4):1-10.
[36] BURESH R J,PATRICK W H J.Nitrate reduction to ammonium and organic nitrogen in an estuarine sediment[J].Soil Biology Biochemistry,1981,13:279-283.
[37]DO-HEE K,OSAMU S M.Nutrification.denitrification and nitrate resuction rates in the sediment of hiroshima bay,Japan[J] Oceanogrphy,1997,53:317-324.
[38] 张华俊.广东省典型供水水库沉积物氮盐及重金属研究[D].广州:暨南大学,2010.
[39] 邓莎.环境因素对滇池外海中心沉积物磷释放的影响[D].昆明:昆明理工大学,2013.
[40] ZHANG Y,GAO X,WANG C,et al.Geochemistry of phosphorus in sediment cores from Sishili Bay,China[J].Marine pollution bulletin,2016,113(1/2):552-558.
[41] 郑刘根,刘响响,程桦,等.非稳沉采煤沉陷区沉积物-水体界面的氮、磷分布及迁移转化特征[J].湖泊科学,2016,28(1):86-93.
[42] REN Y,DONG S,WANG F,et al.Sedi-mentation and sediment charact eristics in sea cucumber Apostichopus japonicus(Selenka)culture ponds[J].Aquaculture Research,2010:1-8.
[43] 范成新,张路,秦伯强,等.太湖沉积物-水界面生源要素迁移机制及定量化.铵态氮释放速率的空间差异及源-汇通量[J].湖泊科学,2004(1):10-20.
[44] 周子柯,牛晓音,王永平,等.百年来滇南双龙水库沉积物中氮的赋存特征变化[J].环境科学研究,2020(3):1-10.
[45] 付春平,钟成华,邓春光.pH与三峡库区底泥氮磷释放关系的试验[J].重庆大学学报(自然科学版),2004(10):125-127.
[46] 刘培芳,陈振楼,刘杰.盐度和pH对崇明东滩沉积物中NH4+释放的影响研究[J].上海环境科学,2002(5):271-273.
[47] 卢俊平,刘廷玺,马太玲,等.不同环境要素条件下大河口水库底泥氮磷释放特征研究[J].内蒙古农业大学学报(自然科学版),2015,36(1):109-113.
[48] 潘涛,齐珺,吴琼,等.北运河流域河流沉积物中氮磷污染物释放规律[J].中国环境监测,2019,35(1):51-58.
[49] 张学青,夏星辉,杨志峰.水体颗粒物对有机氮转化的影响[J].环境科学,2007,28(9):1954-1959.
[50] 杨艳,邓伟明,何佳,等.溶解氧对滇池沉积物氮磷释放特征影响研究[J].环境保护科学,2018,44(5):36-41.
[51] 林建伟,朱志良,赵建夫.曝气复氧对富营养化水体底泥氮磷释放的影响[J].生态环境.2005,14(6):812-815.
[52] 张茜,冯民权,郝晓燕.上覆水环境条件对底泥氮磷释放的影响研究[J].环境污染与防治,2020,42(1):7-11.
[53] 徐轶群,熊慧欣,赵秀兰.底泥磷的吸附与释放研究进展[J].重庆环境科学,2003,25(11):147-149.
[54] 卢俊平,马太玲,刘廷玺,等.大河口水库底泥释磷强度环境影响机理研究[J].环境科学与技术,2017,40(7):72-78.
[55] 华祖林,王苑.水动力作用下河湖沉积物污染物释放研究进展[J].河海大学学报(自然科学版),2018,46(2):95-105.
[56] HOLMROOS H,HIETANEN S,NIEMISTö J,et al.Sediment resuspension and denitrification affect the nitrogen to phosphorus ratio of shallow lake waters[J].Fundamental & Applied Limnology,2012,180(3):193-205.
[57] LI T,WANG D,ZHANG B,et al.Characterization of the phosphate adsorption and morphology of sedimentparticles under simulative disturbing conditions[J].Journal of Hazardous Materials,2006,137(3):1624-1630.
[58] 张文斌,董昭皆,徐书童,等.微生物和藻类分解对荣成天鹅湖沉积物氮磷释放的影响[J].海洋环境科学,2019,38(4):561-567