[1] Mitsch W J, Reeder B C. Modelling nutrient retention of a freshwater coastal wetland: Estimating the roles of primary productivity, sedimentation, resuspension and hydrology[J]. Ecological Engineering, 2000, 14: 1-7. [2] 王晓明, 王波, 李小明. 大明湖主要营养元素内外源负荷的分析与评价[J]. 济南大学学报: 自然科学版, 2010, 24(3): 262-267.[WANG Xiao-ming, WANG Bo, LI Xiao-ming. Analysis and assessment on main nutritious elements from inner and exterior contamination in Daming lake. Journal of University of Jinan: Sciences and Technology, 2010, 24(3): 262-267.] [3] Kelderman P, Kansiime F, Tola M A, et al. The role of sediments for phosphorus retention in the Kirinya wetland (Uganda)[J]. Wetland Ecological Management, 2007, 15: 481-488. [4] Garber K J, Hartman R T. Internal phosphorus loading to shallow Edinbro Lake in northwestern Pennsylvania[J]. Hydrobiologia, 1985, 122(1): 45-52. [5] Lambertus I. Phosphorus accumulation in sediments and internal loading[J]. Hydrobiology Bulletin, 1986, 20(1): 213-214. [6] 薛滨, 姚书春, 王苏民, 等. 长江中下游不同类型湖泊沉积物营养盐蓄积变化过程及其原因分析[J]. 第四纪研究, 2007, 27(1): 122-127.[XUE Bin, YAO Shu-chun, WANG Su-min, et al. Enrichment of nutrients and analysis of its reason in sediments of different kinds of lakes at middle and lower Yangtze river basin. Quaternary Sciences, 2007, 27 (1): 122-127.] [7] 丁建华, 王翠红, 周新春, 等. 晋阳湖底泥中氮磷特征的初步研究[J]. 安全与环境学报, 2008, 8(3): 14-17.[DING Jian-hua, WANG Cui-hong, ZHOU Xin-chun, et al. On the characteristics of nitrogen and phosphorus in the sediments of Jinyang Lake. Jorunal of Safety and Environment, 2008, 8(3): 14-17.] [8] Carl Chr, Hoffmann, Brian Kronvang, et al. Evaluation of nutrient retention in four restored Danish riparian wetlands[J]. Hydrobiologia, 2011, 674: 5-24. [9] 张修峰, 何文珊, 陆健健. 温州三垟湿地底泥氮、磷含量及其对水质的影响[J]. 湿地科学, 2004, 2(3): 192-196.[ZHANG Xiu-feng, HE Wen-shan, LU Jian-jian. Contents of nitrogen and phosphorus in the bottom mud of Wenzhou Sanyang wetland and its effects on water quality. Wetland Science, 2004, 2(3): 192-196.] [10] Atif Mustafa, Miklas Scholz. Nutrient accumulation in Typha latifolia L. and sediment of a representative integrated constructed wetland[J]. Water Air Soil Pollution, 2011, 219: 329-341. [11] JIANG Cui-hong, HU Ji-wei, HUANG Xian-fei, et al. Phosphorus speciation in sediments of Lake Hongfeng, China[J]. Chinese Journal of Oceanology and Limnology, 2011, 29(1): 53-62. [12] CHEN Jian-jun, LU Shao-yong, ZHAO Yi-kun, et al. Effects of overlying water aeration on phosphorus fractions and alkaline phosphatase activity in surface sediment[J]. Journal of Environmental Sciences, 2011, 23(2): 206-211. [13] 卢少勇, 蔡珉敏, 金相灿, 等. 滇池湖滨带沉积物氮形态的空间分布[J]. 生态环境学报, 2009, 18(4): 1351-1357.[LU Shao-yong, CAI Min-min, JIN Xiang-can, et al. Spatial distribution of nitrogen species in sediment of lakeside zone of Lake Dianchi. Ecology and Environmental Sciences, 2009, 18( 4): 1351-1357.] [14] Wang P, He M C, Lin C Y, et al. Phosphorus distribution in the estuarine sediments of the Daliao river, China[J]. Estuarine Coastal and Shelf Science, 2009, 84(2): 246-52. [15] Bostrom B, Jansson M, Forsberg C. Phosphorus release from lake sediments[J]. Archiv für Hydrobiologie-Beiheft Ergebnisse der Limnologie, 1982, 18: 5-59. [16] Biswas J K, Rana S, Bhakta J N, et al. Bioturbation potential of chironomid larvae for the sediment-water phosphorus exchange in simulated pond systems of varied nutrient enrichment[J]. Ecological Engineering, 2009, 35: 1444-1453. [17] 刘冬梅, 姜霞, 金相灿, 等. 太湖藻对水-沉积物界面磷交换过程的影响[J]. 环境科学研究, 2006, 19(4): 8-13.[LIU Dong-mei, JIANG Xia, JIN Xiang-can, et al. Effects of algae on the phosphorus exchange at water-sediment interface in Taihu Lake. Research of Environmental Sciences, 2006, 19(4): 8-13.] [18] Frankowski L, BolaLek J, Szostek A. Phosphorus in bottom sediments of Pomeranian Bay (Southern Baltic-Poland)[J]. Estuarine, Coastal and Shelf Science, 2002, 54: 1027-1038. [19] 袁和忠, 沈吉, 刘恩峰, 等. 太湖水体及表层沉积物磷空间分布特征及差异性分析[J]. 环境科学, 2010, 31(4): 954-960.[YUAN He-zhong, SHEN Ji, LIU En-feng, et al. Space distribution characteristics and diversity analysis of phosphorus from overlying water and surface sediments in Taihu Lake. Environmental Science, 2010, 31(4): 954-960.] [20] 王永华, 刘振宇, 刘伟, 等. 巢湖合肥区底泥污染物分布评价与相关特征研究[J]. 北京大学学报: 自然科学版, 2003, 39(4): 501-506.[WANG Yong-hua, LIU Zhen-yu, LIU Wei, et al. Distribution and correlation characteristics between pollutants in sediment in Chaohu Lake, China. Universitatis Pekinensis: Acta Scientiarum Naturalium, 2003, 39(4): 501-506.] [21] 余辉, 张文斌, 卢少勇, 等. 洪泽湖表层底质营养盐的形态分布特征与评价[J]. 环境科学, 2010, 31(4): 961-968.[YU Hui, ZHANG Wen-bin, LU Shao-yong, et al. Spatial distribution characteristics of surface sediments nutrients in Lake Hongze and their pollution status evaluation. Environmental Science, 2010, 31(4): 961-968.] [22] 张晓晶, 李畅游, 张生, 等. 乌梁素海表层沉积物营养盐的分布特征及环境意义[J]. 农业环境科学学报, 2010, 29(9): 1770-1776.[ZHANG Xiao-jing, LI Chang-you, ZHANG Sheng, et al. Distribution analysis of nutrient salt in the sediment of Lake Wulangsuhai with respect to its effects on the environment. Journal of Agro-Environment Science, 2010, 29(9): 1770-1776.] [23] 卢少勇, 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 Shao-yong, XU Meng-shuang, JIN Xiang-can, et al. Pollution characteristics and evaluation of nitrogen, phosphorus and organic matter in surface sediments of Lake Changshouhu in Chongqing, China. Environment Science, 2012, 33(2): 393-398.] [24] 贺冉冉, 高永霞, 王芳, 等. 天目湖水体与沉积物中营养盐时空分布及成因[J]. 农业环境科学学报, 2009, 28(2): 353-360.[HE Ran-ran, GAO Yong-xia, WANG Fang, et al. Spatial-temporal distribution of nutrients and its causation in Tianmu Lake, China. Journal of Agro-Environment Science, 2009, 28(2): 353-360.] [25] 李青芹, 霍守亮, 昝逢宇, 等. 我国湖泊沉积物营养盐和粒度分布及其关系研究[J]. 农业环境科学学报, 2010, 29 (12): 2390-2397.[LI Qing-qin, HUO Shou-liang, ZAN Femg-yu, et al. The distribution of nutrients and particle size, their correlations in surface sediments of different lakes, China. Journal of Agro-Environment Science, 2010, 29(12): 2390-2397.] [26] 高丽, 宋鹏鹏, 史衍玺, 等. 天鹅湖沉积物中营养盐和重金属的分布特征[J]. 水土保持学报, 2010, 24(4): 99-102.[GAO Li, SONG Peng-peng, SHI Yan-xi, et al. Distribution characteristics of nutrients and heavy metal in sediments from Swan Lake. Journal of Soil and Water Conservation, 2010, 24(4): 99-102.] [27] Regalado C M, Ritter A. Geostatistical tools for characterizing the spatial variability of soil water repellency parameters in a laurel forest watershed[J]. Soil Science Society of America, 2006, 70(4): 1071-1081. [28] 董张玉, 刘殿伟, 王宗明, 等. 基于空间分析的东北地区湿地优先恢复[J]. 应用生态学报, 2013, 24(1): 170-175.[DONG Zhang-yu, LIU Dian-wei, WANG Zong-ming, et al. Wetlands of priority restoration in Northeast China based on spatial analysis. Chinese Journal of Applied Ecology, 2013, 24(1): 170-175.] [29] 王俊杰, 朱德清, 臧淑英. 松嫩平原中西部湖泊底泥营养盐的空间变异特征[J]. 地理与地理信息科学, 2011, 27(2): 92-95.[WANG Jun-jie, ZHU De-qing, ZANG Shu-yin. Spatial variability characteristics of lake sediments nutrients in the Mid-west of Songnen Plain, Geography and Geo-Information Science, 2011, 27(2): 92-95.] [30] Mudroch A, Azcue J. Manual of Aquatic Sediment Sampling[M]. Boca Raton, Florida: Lewis Publishers, 1995. [31] 李延生. 黑龙江省扎龙湿地土壤地球化学特征及生态环境意义[J]. 物探与化探, 2010, 34(4): 512-516.[LI Yan-shen. Soil geochemical characteristics and ecological environment significance of the Zhalong Wetlands in the Heilongjiang Province. Geophysical & Geochemical Exploration, 2010, 34(4): 512-516.] [32] Dean W E. The carbon cycle and biogeochemical dynamics in lake sediments[J]. Journal of Paleolimnology, 1999, 21 (4): 375-393. [33] 万国江, 白占国, 王浩然, 等. 洱海近代沉积物中碳-氮-硫-磷的地球化学记录[J]. 地球化学, 2000, 29(2): 189-197.[WAN Guo-jiang, BAI Zhan-guo, WANG Hao-ran, et al. The geochemical records of C-N-S-P in recent sediments of Lake Erhai, China. Geochimica, 2000, 29(2): 189-197.] |