1. 宁夏大学 土木与水利工程学院,宁夏,银川,750021
2. 宁夏大学 生命科学学院,宁夏,银川,750021
纸质出版:2019
移动端阅览
郭琦, 尹娟, 邱小琮, 等. 银川市阅海湖水环境容量评估[J]. 水土保持通报, 2019,39(5):290-294.
Guo Qi, Yin Juan, QIU Xiaocong, et al. Water Environmental Capacity Assessment of Yuehai Lake in Yinchuan City[J]. Bulletin of Soiland Water Conservation, 2019, 39(5): 290-294.
郭琦, 尹娟, 邱小琮, 等. 银川市阅海湖水环境容量评估[J]. 水土保持通报, 2019,39(5):290-294. DOI: 10.13961/j.cnki.stbctb.2019.05.041.
Guo Qi, Yin Juan, QIU Xiaocong, et al. Water Environmental Capacity Assessment of Yuehai Lake in Yinchuan City[J]. Bulletin of Soiland Water Conservation, 2019, 39(5): 290-294. DOI: 10.13961/j.cnki.stbctb.2019.05.041.
[目的
]
探明银川市阅海湖水环境容量及其变化趋势,为阅海湖水体污染防治及管理提供依据。[方法
]
分别于2015至2017年冬(1月)、春(4月)、夏(7月)、秋(10月)对阅海湖进行水样采集,设置3类水质目标情景,采用已有模型评估阅海湖2015至2017年在不同水质目标情景下高锰酸盐指数(COD
Mn
)、化学需氧量(COD
cr
)、五日生化需氧量(BOD
5
)、总氮(TN)、氨氮(NH
3
-N)、总磷(TP)的最大环境容量。[结果
]
水质目标为Ⅱ类时,BOD
5
,NH
3
-N有剩余环境容量,COD
cr
需消减122.4%,142.7%,169.6%;COD
Mn
需消减190.7%,243.8%,248.6%,TN需消减47.3%,40.5%,47.1%;TP需消减67.6%,71.9%,71.0%;水质目标为Ⅲ类时,BOD
5
,NH
3
-N,TN有剩余环境容量,COD
cr
需消减0%,4.4%,40.3%;COD
Mn
需消减7.3%,85.7%,94.1%;TP需消减35.0%,42.6%,41.8%;水质目标为Ⅳ类时,各项指标均达到水质标准且剩余环境容量呈减小趋势,其中TP浓度接近Ⅳ类水质标准限值,是阅海湖最主要污染因子。[结论
]
2015至2017年阅海湖水质总体为地表水Ⅳ类,各项指标均有剩余环境容量,水质呈逐年恶化趋势。
[Objective] This study aimed at ascertaining the water environmental capacity and its changing trends to provide basis for prevention and control of water pollution in Yuehai Lake.[Methods] Water samples were collected in winter (January)
spring (April)
summer (July) and autumn (October) from 2015 to 2017
respectively. Three water quality control target (WQCT) scenarios were set
and existing models were used to evaluate the permanganate index (CODMn)
chemical oxygen demand (CODCr)
biological oxygen demand (BOD5)
total nitrogen (TN)
ammonia nitrogen (NH3-N)
and total phosphorus (TP) of Yuehai Lake from 2015 to 2017.[Results] For WQCTs set at level Ⅱ
BOD5 and NH3-N have residual environmental capacity
CODCr needed to be reduced by 122.4%
142.7%
and 169.6%
CODMn needed to be reduced by 190.7%
243.8%
and 248.6%
TN needed to be reduced by 47.3%
40.5%
and 47.1%
and TP needed to be reduced by 67.6%
71.9%
and 71.0%. If the WQCTs were set at level Ⅲ
BOD5
NH3-N
and TN have residual environmental capacity
CODCr needed to be reduced by 0%
4.4%
and 40.3%; CODMn needed to be reduced by 7.3%
85.7%
and 94.1%; and TP needed to be reduced by 35.0%
42.6%
and 41.8%. If the WQCTs were set at level Ⅳ
all the indicators meet the water quality standard. The surplus environmental capacity showed a trend of decrease over time. The concentration of TP
which was the chief pollutant in the Yuehai Lake
was currently at the level Ⅳ WQCT value.[Conclusion] The water quality of Yuehai Lake from 2015 to 2017 is currently classified as class Ⅳ surface water; certain indicators have a residual environmental capacity based on the WQCT scenarios
and there is a trend of water quality deterioration over time.
董飞,刘晓波,彭文启,等.地表水水环境容量计算方法回顾与展望[J].水科学进展,2014,25(3):451-463.
刘丹,王烜,曾维华,等.基于ARMA模型的水环境承载力超载预警研究[J].水资源保护,2019,35(1):52-55,69.
许彦.基于水功能区的流域水环境容量计算研究[J].环境与发展,2019,31(1):187,189.
屈豪,包景岭,张维.水环境承载力研究分析与展望[J].河北地质大学学报,2017,40(5):25-30.
张昌顺,谢高地,鲁春霞.中国水环境容量紧缺度与区域功能的相互作用[J].资源科学,2009,31(4):559-565.
Li Na, Yang Hong, Wang Lachun, et al. Optimization of industry structure based on water environmental carrying capacity under uncertainty of the Huai River Basin within Shandong Province, China[J]. Journal of Cleaner Production, 2016,112:4594-4604.
Zeng Weihua, Wu Bo, Chai Ying. Dynamic simulation of urban water metabolism under water environmental carrying capacity restrictions[J]. Frontiers of Environmental Science & Engineering, 2016,10(1):114-128.
闫莉,郝岩彬,徐晓琳,等.水环境承载能力相关概念分析[J].人民黄河,2009,31(11):52-53.
吉晓燕. 军山湖入湖污染负荷及水环境容量研究[D].南昌:南昌大学, 2011.
王寿兵,马小雪,张韦倩,等.上海淀山湖水环境容量评估[J].中国环境科学,2013,33(6):1137-1140.
樊华,陈然,刘志刚.柘林水库水环境容量及水污染控制措施研究[J].人民长江,2009,40(24):39-40,43.
欧阳球林,高桂青.瑶湖水环境容量的研究[J].南昌工程学院学报,2008,27(1):64-66.
李隽,许友.岳阳南湖水环境容量计算及污染治理措施效果分析[J].岳阳师范学院学报:自然科学版,2001,14(2):21-23.
宋学宏,邴旭文,孙丽萍,等.阳澄湖养殖水体COD降解动力学研究[J].安徽农业大学学报,2010,37(2):328-332.
郑志伟,胡莲,邹曦,等.汉丰湖富营养化综合评价与水环境容量分析[J].水生态学杂志,2014,35(5):22-27.
王子轩,逄勇,罗缙,等.淀山湖流域平原河网水环境容量及控制断面水质达标方案研究[J].水资源与水工程学报,2015,26(6):61-65.
范丽丽,沙海飞,逄勇.太湖湖体水环境容量计算[J].湖泊科学,2012,24(5):693-697.
金国花,谢冬明,邓红兵,等.鄱阳湖水文特征及湖泊纳污能力季节性变化分析[J].江西农业大学学报,2011,33(2):388-393.
张萌,祝国荣,周慜,等.仙女湖富营养化特征与水环境容量核算[J].长江流域资源与环境,2015,24(8):1395-1404.
白维东,亢小云,范金城,等.宁夏阅海湖水质综合评估[J].宁夏农林科技,2012,53(2):57-60.
李斌,白维东,杨永宇,等.阅海湖水环境因子时空分布特征及水环境综合评价[J].宁夏农林科技,2016,57(8):40-42,63.
胡胜华,王硕,史诗乐,等.武汉北太子湖水环境容量研究[J].绿色科技,2018(20):76-79,83.
唐文秀.汾河流域水环境承载力的研究[D].西安:西安理工大学, 2010.
江明,曾维,佘健,等.白潭湖水质及其水环境容量分析[J].工业安全与环保,2016,42(4):81-84.
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