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five kinds of hydrophytes on total nitrogen and nitrate in ecosystem[J]. Chinese Journal of Ecology,1987,6(1):37-39.
simulated vegetable field runoff water[J]. Journal of [20] 张圣照, 王国祥, 濮培民, 等.东太湖水生植被及其沼泽化趋
Environmental Engineering Technology,2020,10(3):406-413. 势[J]. 植物资源与环境,1999,8(2):1-6.
[ 4 ] 张瑞斌.不同水生植物对污水处理厂尾水的生态净化效果分 ZHANG S Z, WANG G X, PU P M, et al. Succession of
析[J]. 环境工程技术学报,2015,5(6):504-508. hydrophytic vegetation and swampy tendency in the East Taihu
ZHANG R B. Ecological purification efficiency of several Lake[J]. Journal of Plant Resources and Environment,1999,
aquatic plants on tail water of sewage treatment plant[J]. Journal 8(2):1-6.
of Environmental Engineering Technology,2015,5(6):504-508. [21] 赵凯. 太湖水生植被分布格局及演变过程[D]. 南京: 南京师范
[ 5 ] LI J H, YANG X Y, WANG Z F, et al. Comparison of four 大学, 2017.
aquatic plant treatment systems for nutrient removal from [22] YE C, LI C H, YU H C, et al. Study on ecological restoration in
eutrophied water[J]. Bioresource Technology,2015,179:1-7. near-shore zone of a eutrophic lake, Wuli Bay, Taihu Lake[J].
[ 6 ] 朱天菊, 王兵, 谢红丽, 等.土著水生植物对页岩气钻井废水中 Ecological Engineering,2011,37(9):1434-1437.
Cu和Pb的去除及富集特征[J]. 环境科学研究,2017,30(3): [23] CHEN K N, XIANMIN B, SHI L X, et al. Ecological restoration
478-483. engineering in Lake Wuli, Lake Taihu: a large enclosure
ZHU T J, WANG B, XIE H L, et al. Degradation and experiment[J]. Journal of Lake Sciences,2006,18(2):139-149.
bioconcentration effects of aquatic plants on Cu/Pb in wastewater [24] 姚程, 胡小贞, 姜霞, 等.太湖贡湖湾人工湖滨带水生植物恢复
during drilling of shale gas[J]. Research of Environmental 及其富营养化控制[J]. 湖泊科学,2021,33(6):1626-1638.
Sciences,2017,30(3):478-483. YAO C, HU X Z, JIANG X, et al. Macrophytes restoration and
[ 7 ] 黄亮, 李伟, 吴莹, 等.长江中游若干湖泊中水生植物体内重金 its effects on eutrophication control in rehabilitated lakeshore
属分布[J]. 环境科学研究,2002,15(6):1-4. zone of Gonghu Bay, Lake Taihu[J]. Journal of Lake Sciences,
HUANG L, LI W, WU Y, et al. Distribution of heavy metals in 2021,33(6):1626-1638.
aquatic plants of some lakes in the middle reach of the Yangtze [25] 谢洪民, 李启升, 刘帅领, 等.环太湖地区河道和湖泊沿岸带水
River[J]. Research of Environmental Sciences,2002,15(6):1-4. 生植物多样性现状调查[J]. 湖泊科学,2020,32(3):735-744.
[ 8 ] XING W, WU H P, HAO B B, et al. Bioaccumulation of heavy XIE H M, LI Q S, LIU S L, et al. Investigation on the status quo
metals by submerged macrophytes: looking for of aquatic plant biodiversity in the riverways and littoral zones of
hyperaccumulators in eutrophic lakes[J]. Environmental Science & the Lake Taihu rim[J]. Journal of Lake Sciences,2020,32(3):
Technology,2013,47(9):4695-4703. 735-744.
[ 9 ] 展海银, 周启星.环境中四环素类抗生素污染处理技术研究进 [26] 黄晓艺, 胡湛波, 叶春, 等.太湖出入湖河口水质和水生植物中
展[J]. 环境工程技术学报,2021,11(3):571-581. 氮、磷含量及其相关性分析[J]. 环境工程,2019,37(9):74-80.
ZHAN H Y, ZHOU Q X. Research progress on treatment HUANG X Y, HU Z B, YE C, et al. Nitrogen and phosphorus
technology of tetracycline antibiotics pollution in the contents of aquatic plants and correlation analysis with water
environment[J]. Journal of Environmental Engineering quality in confluence areas of rivers and lakes of Taihu Lake,
Technology,2021,11(3):571-581. China[J]. Environmental Engineering,2019,37(9):74-80.
[10] ZHU L M, XU H T, XIAO W S, et al. Ecotoxicological effects of [27] 徐德瑞, 周杰, 张建华, 等.东太湖沉水植物现状及影响因子分
sulfonamide on and its removal by the submerged plant 析[J]. 水电能源科学,2020,38(4):64-67.
Vallisneria natans (Lour. ) Hara[J]. Water Research,2020,170: XU D R, ZHOU J, ZHANG J H, et al. Status of submerged plants
115354. and its influencing factors in east Lake Taihu[J]. Water Resources
[11] RIFFE K C, HENDERSON S M, MULLARNEY J C. Wave and Power,2020,38(4):64-67.
dissipation by flexible vegetation[J]. Geophysical Research [28] 俞欣, 金哲, 朱亮, 等.玄武湖水生植物调查及影响因素[J]. 安
Letters,2011,38(18):L18607. 徽农业科学,2020,48(24):81-86.
[12] ANDERSON M E, SMITH J M. Wave attenuation by flexible, YU X, JIN Z, ZHU L, et al. Aquatic plants investigation of
idealized salt marsh vegetation[J]. Coastal Engineering,2014, Xuanwu Lake and its influence factors[J]. Journal of Anhui
83:82-92. Agricultural Sciences,2020,48(24):81-86.
[13] NOWACKI D J, BEUDIN A, GANJU N K. Spectral wave [29] 客涵, 李秀启, 董贯仓, 等.南四湖敞水区水生植物群落物种多
dissipation by submerged aquatic vegetation in a back-barrier 样性分析[J]. 山东农业大学学报(自然科学版),2018,49(3):
estuary[J]. Limnology and Oceanography,2017,62(2):736-753. 408-413.
[14] 高永霞. 太湖生态恢复工程对底泥磷分布的影响研究[D]. 南 KE H, LI X Q, DONG G C, et al. Diversity analysis of aquatic
京: 河海大学, 2007. macrophytes in open water area of Nansi Lake[J]. Journal of
[15] 叶春, 李春华, 邓婷婷.论湖滨带的结构与生态功能[J]. 环境科 Shandong Agricultural University (Natural Science Edition),
学研究,2015,28(2):171-181. 2018,49(3):408-413.
YE C, LI C H, DENG T T. Structures and ecological functions of [30] 李宇辉, 郝涛, 龚旭昇, 等.新疆开都河流域水生植物多样性及
lake littoral zones[J]. Research of Environmental Sciences,2015, 其影响因素[J]. 应用生态学报,2020,31(5):1691-1698.
28(2):171-181. LI Y H, HAO T, GONG X S, et al. Species richness and
[16] GASITH A, GAFNY S. Effects of water level fluctuation on the influencing factors of aquatic plant in the Kaidu River Basin,
structure and function of the littoral zone large lakes[M]. Xinjiang, China[J]. Chinese Journal of Applied Ecology,2020,
Heidelberg: Springer Berlin, 1990: 156-171. 31(5):1691-1698.
[17] 叶春, 李春华, 吴蕾, 等.湖滨带生态退化及其与人类活动的相 [31] 年跃刚, 宋英伟, 李英杰, 等.富营养化浅水湖泊稳态转换理论
互作用[J]. 环境科学研究,2015,28(3):401-407. 与生态恢复探讨[J]. 环境科学研究,2006,19(1):67-70.
YE C, LI C H, WU L, et al. Ecological degradation of lake NIAN Y G, SONG Y W, LI Y J, et al. Regime shift theory and
littoral zone and interaction effects with human activities[J]. ecological restoration discussion in eutrophic shallow lakes[J].
Research of Environmental Sciences,2015,28(3):401-407. Research of Environmental Sciences,2006,19(1):67-70.
[18] 中国科学院南京地理研究所. 太湖综合调查初步报告[M]. 北 [32] 刘倩, 李超, 徐军, 等.太湖流域湖荡湿地水生植物的分布特
京: 科学出版社, 1965. 征[J]. 中国环境科学,2020,40(1):244-251.
[19] 曹萃禾.水生维管束植物在太湖生态系统中的作用[J]. 生态学 LIU Q, LI C, XU J, et al. Distribution characteristics of aquatic
杂志,1987,6(1):37-39. plants in the watershed of Lake Taihu[J]. China Environmental
CAO C H. Effects of aquatic vascular plants on the Taihu Lake Science,2020,40(1):244-251. ◇