[1] MITSCH W J,HORNE A J,NAIRN R W.Nitrogen and phosphorus retention in wetlands-ecological approaches to solving excess nutrient problems[J]. Ecological Engineering,2000,14:1-7.
[2] VERHOEVEN J T A,ARHEIMER B,YIN C Q,et al.Regional and global concerns over wetlands and water quality[J].Trends in Ecology and Evolution,2006,21(2):96-103.
[3] 王书锦,刘云根,张超,等.洱海流域入湖河口湿地沉积物氮、磷、有机质及污染风险评价[J]. 湖泊科学:2017,29(1):69-77. WANG S J, LIU Y G,ZHANG C, et al. Evaluation of nitrogen,phosphorus,organic matter and pollution risk in sediments of lake wetland in erhai lake basin[J]. Journal of Lake Science, 2017,29(1):69-77(in Chinese).
[4] WANG G X,ZHANG L M,CHUA H,et al. A mosaic community of macrophytes for the ecological remediation of eutrophic shallowlakes[J]. Ecological Engineering,2009,35:582-590.
[5] HU L M,HU W P,DENG J C,et al. Nutrient removal in wetlandwith different macrophyte structures in eastern Lake Taihu,China[J]. Ecological Engineering,2010,36:1725-1732.
[6] 胡汝骥,姜逢清,王亚俊,等.论中国干旱区湖泊研究的重要意义[J]. 干旱区研究,2007,24(2):137-140. HU R J,JIANG F Q,WANG Y J, et al. On the importance of research on the lakes in arid land of China[J]. Journal of Arid Land Research, 2007,24(2):137-140(in Chinese).
[7] 李卫平,刘建龙,鲍交琦,等.包头黄河湿地生态恢复植物类型的选择[J].湿地科学,2015,13(2):211-216. LI W P,LIU J L,BAO J Q,et al.Characteristics of ecological restoration of wetland in Baotou Yellow River wetland[J]. Wetland Science,2015,13(2):211-216(in Chinese).
[8] 王琼,卢聪,范志平,等.辽河流域太子河流域N、P和叶绿素a浓度空间分布及富营养化[J]. 湖泊科学,2017,29(2):297-307. WANG Q,LU C,FAN Z P. Spatial distribution and eutrophication of N,P and chlorophyll a concentration in the Taizi River Basin,Liaohe River Basin[J]. Journal of Lake Science,2017,29(2):297-307(in Chinese).
[9] 王敬富,陈敬安,曾艳,等.贵州百花湖沉积物氮、磷及有机碳的空间分布[J].环境化学,2012,31(5):599-603. WANG J F,CHEN J A,ZENG Y,et al.Spatial distribution of nitrogen,phosphorus and organic carbon in sediments of Baihu Lake,Guizhou[J]. Environmental Chemistry,2012,31(5):599-603(in Chinese).
[10] 孙爱玲.包头黄河湿地生态恢复与绿化建设植物选择[J].中国城市林业,2012,10(6):19-21. SUN A l. Baotou Yellow River wetland ecological restoration and greening plant selection[J]. China Urban Forestry,2012,10(6):19-21(in Chinese).
[11] 于玲红,王晓云,李卫平,等.包头南海湿地冰封期水质特征[J].湿地科学,2016,14(6):810-814. YU L H,WANG X Y,LI W P, et al. Water quality characteristics of Baotou South China Sea wetland[J]. Wetland Science,2016,14(6):810-814(in Chinese).
[12] 于玲红,王晓云,李卫平,等.包头市南海湿地水质现状分析与评价[J].环境化学,2017,36(2):390-396. YU L H,WANG X Y,LI W P et al. Analysis and evaluation of water quality of Nanhai Wetland in Baotou City[J]. Environmental Chemistry,2017,36(2):390-396(in Chinese).
[13] 王佩,卢少勇,工殿武,等.太湖湖滨带底泥氮、磷、有机质分布与污染评价[J].中国环境科学,2012,32(4):703-709. WANG P,LU S Y,WANG D W, et al. Nitrogen,phosphorous and organic matter spatial distribution characteristics and their pollution status evaluation of sediments nutrients in lakeside zones of Taihu Lake[J]. China Environmental Science,2012,32(4):703-709(in Chinese).
[14] 沪少勇,许梦爽,金相灿,等.长寿湖表层沉积物氮磷和有机质污染特征及评价[J].环境科学,2012,33(2):393-398. LU S Y,XU M S,JIN X C, et al. Pollution characteristics and evaluation of nitrogen,phosphorus and organic matter in surface sediments of Lake Changshouhu in Chongqing,China[J]. Chinese Jourrral of Environmerrtal Science,2012,33(2):393-398(in Chinese).
[15] 李辉,潘学军,史丽琼,等.湖泊内源氮磷污染分析方法及特征研究进展[J].环境化学,2011,30(11);281-292. LI H,PAN X J,SHI L Q,et al.Study on the methods and characteristics of endogenous nitrogen and phosphorus pollution in lakes[J]. Environmental Chemistry,2011,30(11); 281-292(in Chinese).
[16] CHEN X W,LI B L.Change in soil carbon and nutrient storage after human disturbance of a primary Korean pine forest in North-east China[J].Forest Ecology and Management,2003,186:197-206.
[17] SMALL G E,COMER J B,FINLAY J C,et al. Nitrogen transformations at the sediment-water interface across redox gradients in the Laurentian Great Lakes[J]. Hydrobiologia,2014,731(1):95-108.
[18] SCHIPPER L A,PERCIVAL H J,SPARLING G P. An approach for estimating when soils will reach maximum nitrogen storage[J].Soil Use and Management,2004,20(3):281-286.
[19] COVENEY M F,STITES D L,LOWE E F,et al. Nutrient removal from eutrophic lake water by wetland filtration[J]. Ecological Engineering,2002,19:141-159.
[20] LOST S,LANDGRAF D,MAKESCHIN F.Chemical soil properties of reclaimed marsh soil from Zhejiang Province China[J].Geo-derma,2007,142(3-4):245-250.
[21] AGREN G L.Stoichiometry and nutrition of plant growth in nature communities[J].Annu.Rev. Ecol.Syst,2008,39:153-170.
[22] CHAPMAN P M, ANDERSON J. A decision-making framework for sediment contamination[M].Integrated Environmental Assessment and Management. 2005:163-173.
[23] 白文辉, 王晓昌, 王楠,等. 北方高盐景观水体氮磷时空分布特征及富营养化评价[J]. 环境工程, 2017, 35(4):120-124. BAI W H, WANG X C, WANG N, et al.Spatial-temporal distribution characteristics of nitrogen and phosphorus and evaluation of eutrophication in the high salinity landscape waters in North China[J].Chinese Environmental Engineering, 2017,35(4):120-124(in Chinese).
[24] ELSER J J,BRACKEN M E S,CLELAND E E,et a1.Global analysis of ni-trogen and phosphorus limitation of primary producers in fresh-water, marine and terrestrial ecosystems[J].Ecology Letters,2007,10(12):1135-1142.
[25] 任奎晓,陈开宁,黄蔚,等.入湖河口湿地四种植物群落类型的土壤氮素空间分布特征[J].湖泊科学,2012,24(6):849-857. REN KX,CHEN K N,HUANG W,et al. Spatial distribution characteristic of soil nitrogen of four types of plant community in Zhucao river mouth wetland into the lake[J].Journal of Lake Sciences,2012,24(6):849-857(in Chinese).
[26] HORPPILA J,NURMINEN L. Effects of different macrophyte growth forms on sediment and P resuspension in a shallow lake[J].Hydrobiologia,2005,545(1):167-175.
[27] 李俊龙,郑丙辉,张铃松,等.中国主要河口海湾富营养化特征及差异分析[J].中国环境科学,2016,36(2):506-516. LI J L,ZHENG B H,ZHANG L S, et al.Characteristics and differences of eutrophication in main estates of China[J]. China Environmental Science,2016,36(2):506-516(in Chinese).
[28] 访宇翘,裘祖楠,马梅芳,等.河流底泥污染类型标准的制定[J].环境科学,1989,10(1):27-30. FANG YQ,QIU Z N,MA M, et al. Enactment of the standard concerning polluted sediment types in the rivers[J]. Environmeretal Science,1989,10(1):27-30(in Chinese).
[29] 耿琳瑛,卜献卫.六横大香附近海域环境质量现状评价[J].东海海洋,1991,17(1):66-71. WEI LY,BU X W. Present assessment of environmental quality in sea area near Daao,Liuheng Lsland[J]. Donghai Marine Science,1991,17(1):66-71(in Chinese).
[30] 岳维忠,黄小平,孙翠慈.珠江口表层沉积物中氮、磷的形态分布特征及污染评价[J].海洋与湖沼,2007,38(2):111-117. YUE W Z,HUANG X P,SUN C C. Distribution and pollution of nitrogen and phosphorus in surface sediments from the pearl river estuary[J]. Oceanologia et Limnologia Sinica,2007,38(2):111-117(in Chinese).
[31] 叶华香.龙湿地沉积物营养盐和重金属空间分异规律及潜在生态风险研究[D]. 哈尔滨:哈尔滨师范大学,2014. YE H X. Spatial differentiation and potential ecological risk of nutrients and heavy metals in long wetlands sediments[D]. Harbin:Harbin Normal University,2014(in Chinese).
[32] 杨洋,刘其根,胡忠军,等.太湖流域沉积物碳氮磷分布与污染评价[J].环境科学学报,2014,34(12):3057-3064. YANG Y,LIU Q G,HU Z J, et al. Spatial distribution of sediment carbon,nitrogen and phosphorus and pollution evaluation of sediment in Taihu Lake Basin[J]. Acta Scientiae Circumstantiae, 2014,34(12):3057-3064(in Chinese).
[33] 罗明科,田学达,余辉,等.长江中游湖泊柱状沉积物的垂直污染特征[J].农业环境科学学报,2016,35(5):955-962. LUO M K,TIAN X D,YU H,et al. Vertical pollution charactcristic of sediments from lakes in middle reaches of Yangtze River[J]. Jourual of Agro Environment Science,2016,35(5):955-962(in Chinese).
[34] 张岩,李畅游,高宁,等.结冰对乌梁素海水体富营养化的影响[J].湖泊科学,2017,29(4):811-818. ZANG Y,LI C Y,GAO N,et al.Effects of icing on eutrophication of Wuliangsuhai water[J]. Lakes Science,2017,29(4):811-818(in Chinese).