1. 安徽理工大学 地球与环境学院,安徽,淮南,232001
2. 安徽省矿山地质灾害防治重点实验室,安徽,淮南,232001
3. 安徽省焦岗湖旅游发展有限公司,安徽,淮南,232001
4. 煤矿生态环境保护国家工程实验室,安徽,淮南,232001
纸质出版:2019
移动端阅览
陈结平, 胡友彪, 张治国, 等. 焦岗湖本土水生植物的水质净化试验[J]. 水土保持通报, 2019,39(2):172-178.
CHEN Jieping, HU Youbiao, ZHANG Zhiguo, et al. Water Purification of Native Aquatic Plants in Jiaogang Lake[J]. Bulletin of Soiland Water Conservation, 2019, 39(2): 172-178.
陈结平, 胡友彪, 张治国, 等. 焦岗湖本土水生植物的水质净化试验[J]. 水土保持通报, 2019,39(2):172-178. DOI: 10.13961/j.cnki.stbctb.2019.02.028.
CHEN Jieping, HU Youbiao, ZHANG Zhiguo, et al. Water Purification of Native Aquatic Plants in Jiaogang Lake[J]. Bulletin of Soiland Water Conservation, 2019, 39(2): 172-178. DOI: 10.13961/j.cnki.stbctb.2019.02.028.
[目的
]
针对淮南市焦岗湖近期污染物超标问题,开展本土4种水生植物进行水质净化试验,为焦岗湖利用水生植物修复水质提供可靠依据。[方法
]
在对淮南市焦岗湖水质检测的基础上,选取焦岗湖本土种植的泽泻(Alisma plantago-aquatica)、千屈菜(Lythrum salicaria)、石菖蒲(Acorus tatarinowii)以及金鱼藻(Ceratophyllum demersum)等水生植物为研究对象,在人工模拟自然条件下,研究其对焦岗湖水体中总氮(TN)、总磷(TP)、氨氮(NH
3
-N)、化学需氧量(COD)等污染物的去除效果。[结果
]
千屈菜、泽泻和石菖蒲对TN去除率较好;石菖蒲和金鱼藻对氨氮去除效果良好,千屈菜对TP去除效果最佳,而对于COD而言,4种水生植物均有较为理想的去除效果。[结论
]
所选取的4种水生植物对各污染物均有一定的去除效果,将水生植物的种植面积、数量和时间进行优化配置,可用于焦岗湖水质改良。
[Objective] To solve the problem of excessive pollutants in Jiaogang Lake in Huainan City
four native aquatic plants were tested for water purification. The experiment was expected to provide a reliable basis for the use of aquatic plants to repair water quality in Jiaogang Lake.[Methods] Based on the water quality test data of Jiaogang Lake in Huainan City
Alisma plantago-aquatica
Lythrum salicaria
Acorus tatarinowii and Ceratophyllum demersum grown locally in Jiaogang Lake were selected as research objects
the removal effects of aquatic plants on TN
TP
NH3-N and COD in water body of Jiaogang Lake were studied under simulated natural-alike conditions.[Results] The removal rate of TN was better in Lythrum salicaria
Alisma plantago-aquatica and Acorus tatarinowii. The removal rate of NH3-N was better for Acorus tatarinowii and Ceratophyllum demersum. Lythrum salicaria had the best effect on removing TP
while for COD
the four aquatic plants had better removal effect.[Conclusion] The four selected aquatic plants have certain removal effects on pollutants. The optimum arrangement of planting area
quantity and time of aquatic plants can be used for water quality improvement of Jiaogang Lake.
王变,陈飘雪,韦绪好,等.淮河流域焦岗湖水质参数时空变化及影响因素[J].湖泊科学,2016,28(3):520-527.
新华网安徽.焦岗湖水质严重恶化安徽环保厅实施涉水项目区域环评限批[EB/OL].(2018-07-17)[2018-10-21]. http://life.hefei.cc/2018/0717/028111889.Shtml.
Zhang Tingting, Wang Lilong, He Zongxiang, et al. Growth inhibition and biochemical changes of cyanobacteria induced by emergent macrophyte Thalia dealbata roots[J]. Biochemical Systematics and Ecology, 2011,39(2):88-94.
田如男,孙欣欣,魏勇.不同类型水生植物群落对铜绿微囊藻的化感作用[J].生态环境学报,2010,19(9):2149-2154.
Ciurli A, Zuccarini P, Alpi A. Growth and nutrient absorption of two submerged aquatic macrophytes in mesocosms, for reinsertion in a eutrophicated shallow lake[J]. Wetlands Ecology & Management, 2009,17(2):107-115.
Lu Qin, He Zhenli, Graetz D A, et al. Phytoremediation to remove nutrients and improve eutrophic stormwaters using water lettuce(Pistia stratiotes L.)[J]. Environmental Science & Pollution Research,2010,17(1):84-96.
施思.水生植物净化不同浓度梯度污水能力试验研究[D].浙江杭州:浙江农林大学,2017.
国家环境保护总局.水和废水监测分析方法.4版[M].北京:中国环境科学出版社,2002.
唐金艳,曹培培,徐驰,等.水生植物腐烂分解对水质的影响[J].应用生态学报,2013,24(1):83-89.
黄鹏,张丹丹,秦松岩.挺水植物浮床对再生水补水景观水体的修复[J].环境科学与技术,2015,38(S2):140-144.
吴诗杰,陈慧娟,许小桃,等.美人蕉、鸢尾、黄菖蒲和千屈菜对富营养化水体净化效果研究[J].安徽大学学报:自然科学版,2016,40(1):98-108.
刘晓波,高奇英,朱文君,等.苦草与金鱼藻对水体污染物的去除效果[J].给水排水,2018,54(S2):82-88.
元文革,余新晓.滦河上游4种水生植物的水质净化研究[J].环境科学与技术,2018,41(1):109-114.
何池全,叶居新.石菖蒲净化富营养化水体的研究[J].南昌大学学报:理科版,1999(1):73-76.
张之浩,李威,吴晓芙.6种沉水植物对富营养化水体化感抑藻效果研究[J].湘潭大学自然科学学报,2017,39(2):55-60.
温奋翔,王兵,肖波,等.北方景观水体中生态浮床的植物筛选与水质净化效果[J].环境工程学报,2015,9(12):5881-5886.
何娜,孙占祥,张玉龙,等.不同水生植物去除水体氮磷的效果[J].环境工程学报,2013,7(4):1295-1300.
李威,司马小峰,陈晓国,等.人工浮床对汾江河水质净化的研究[J].环境工程学报,2012,6(11):4041-4046.
黄雅娴.人工湿地处理景观水体富营养化的研究进展[C]//《环境工程》编委会,工业建筑杂志社有限公司.《环境工程》2018年全国学术年会论文集:下册,2018.
金树权,周金波,朱晓丽,等.10种水生植物的氮磷吸收和水质净化能力比较研究[J].农业环境科学学报,2010,29(8):1571-1575.
0
浏览量
979
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621