文章摘要
党宏斌, 高军侠,郑宾国.枯水期郑州市缓流水体水质动态监测评价及提升策略探讨Journal of Water Resources and Water Engineering[J].,2016,27(5):87-92
枯水期郑州市缓流水体水质动态监测评价及提升策略探讨
Water quality dynamic monitoring evaluation and upgrade strategy of slow-flow water in Zhengzhou City in dry season
  
DOI:10.11705/j.issn.1672-643X.2016.05.16
中文关键词: 城市缓流水体  水质动态监测  枯水期  水质综合评价
英文关键词: urban slow-flow water body  water quality dynamic monitoring  dry season  water quality comprehensive assessment
基金项目:国家自然科学基金项目(51409291); 河南省科技攻关项目 (132300410328、152102110171); 河南省高校青年骨干教师资助计划项目(2015GGJS-174); 郑州市科技局项目(153PXXCY185); 河南省社科联项目(SKL-2015-2994)
Author NameAffiliation
DANG Hongbin1,2, GAO Junxia1,2, ZHENG Binguo1,2 (1. 郑州航空工业管理学院 资源与环境研究所 河南 郑州 4500152.航空经济发展河南省协同创新中心 河南 郑州 450015) 
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中文摘要:
      从维护城市缓流水体的健康角度,对郑州市东风渠郑东新区段进行了3年为期14个月(2011-2013年,枯水期自11月至翌年5月)的水质(COD、氨氮、总磷)动态监测。结果表明:该缓流水体在枯水期水质均为劣Ⅴ类,一些断面在部分时段甚至处于重污染状态,主要污染因子为COD,其CODMn含量介于40~75 mg/L之间,并间或有氨氮和总磷指数超标;该缓流水体属于有机型污染水体,但具有转变成与富营养化并存的复合污染趋势。目前东风渠郑东新区段恢复水质面临的最大问题是缺水,必须从本质上及时寻找补充源(拥有丰富的水量和较好的水质),并建议分别从水量保障、生物修复、生态系统重建以及高效管理等几方面,多举措提升水质,恢复水体功能。
英文摘要:
      From the perspective of preserving the health of urban slow-flow water bodies, water quality dynamic monitoring of Dongfeng Canal located at Zhengdong New District, Zhengzhou City, had been conducted for 14 months in 3 years from 2011 to 2013. The results showed the canal were below Class to Ⅴ water quality in dry season. Some of the monitoring sections and part times even belonged to heavy pollution. The main pollution was organic matter with CODMn of 40~75 mg/L, maybe companied by ammonia nitrogen and total phosphorus beyond index. The slow-flow water showed organic pollution type, and likely turned into a combined pollution coexisted with eutrophication. Nowadays, the biggest issue that water quality recovery in the canal faced was water shortage. It was necessary to look for supplemental source with abundant water yield and preferable quality. The protective screen on water quality upgrade and functional rehabilitation were constructed through many measures including water yield security, bioremediation, ecosystem reestablishment, efficient administration and so forth.
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