期刊文献+

Parameter determination to calculate water environmental capacity in Zhangweinan Canal Sub-basin in China 被引量:23

Parameter determination to calculate water environmental capacity in Zhangweinan Canal Sub-basin in China
原文传递
导出
摘要 Zhangweinan canal sub-basin (ZWN) has the most serious water resource shortage and water pollution problems in north of China. To calculate the water environmental capacity in ZWN, determination methods for design flow rates and degradation coefficients were discussed in this study. Results showed that 90% and 50% hydrological guarantee flow rates were suitable to be the design flow rates for rainy and dry seasons, respectively. Degradation coefficients of CODMn and NH3-N were 0.25 day^-1 and 0.15 day^-1 for branch streams and 0.5 day^-1 and 0.25 day^-1 for mainstreams, respectively in ZWN. With one-dimensional water quality simulation model, water environmental capacities were calculated to be 82,139 tons/yr for CODMn and 2394 tons/yr for NH3-N in ZWN. Zhangweinan canal sub-basin (ZWN) has the most serious water resource shortage and water pollution problems in north of China. To calculate the water environmental capacity in ZWN, determination methods for design flow rates and degradation coefficients were discussed in this study. Results showed that 90% and 50% hydrological guarantee flow rates were suitable to be the design flow rates for rainy and dry seasons, respectively. Degradation coefficients of CODMn and NH3-N were 0.25 day^-1 and 0.15 day^-1 for branch streams and 0.5 day^-1 and 0.25 day^-1 for mainstreams, respectively in ZWN. With one-dimensional water quality simulation model, water environmental capacities were calculated to be 82,139 tons/yr for CODMn and 2394 tons/yr for NH3-N in ZWN.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2010年第6期904-907,共4页 环境科学学报(英文版)
基金 supported by the National Basic Re-search Program (973) of China (No. 2006CB403303) the Grand Special Science and Technology Project on National Water Pollution Management (No. 2008ZX07209-009) the National Natural Science Foundation for Young Scholars (No. 50809006)
关键词 degradation coefficient design flow rate water environmental capacity Zhangweinan degradation coefficient design flow rate water environmental capacity Zhangweinan
  • 相关文献

参考文献14

  • 1CAEP (China Academy of Environmental Planning),2003.Guideline for Check and Ratification Technology of National Water Environmental Capacity.Beijing,China.41-42.
  • 2CAEP (China Academy of Environmental Planning),2004.Dlustration of Technical Problems on the Calculation of National Surface Water Environmental Capacity.Beijing,China.
  • 3GEF Hai River Project Office of Zhangweinan Canal Management Agency,Planning and Design Institute of Zhangweinan Canal Management Agency,2006.Baseline Investigation Report of Zhangweinan Canal Sub-basin Water Resources and Environment Integrated Management Strategic Action Plan,Dezhou City,Shandong Province,China.
  • 4Keller A A,Cavallaro L,2008.Assessing the US Clean Water Act 303(d) listing process for determining impairment of a waterbody.Journal of Environmental Management,86:699-711.
  • 5Li Y X,Kang J H,Lau S L,Kayhanian M,Stenstrom M K,2008.Optimization of settling tank design to remove particles and metals.Journal of Environmental Engineering,134(11):885-894.
  • 6MEPC (Ministry of Environmental Protection of China),2009.Fresh water environment.In:Public Report of China Environment Situation in 2008.Beijing,China,http://jcs.mep.gov.cn/hjzl/zkgb/2008zkgb/200906/ t20090609-152552.htm.
  • 7MWRC (Ministry of Water Resources of China),2002.Oudine of Integrated Planning Technology for National Water Resources.Beijing,China.
  • 8USEPA (United States Environmental Protection Agency),2008.Total Maximum Daily Loads (TMDLs) A Watershed Planning Tool for Counties,http://www.epa.gov/owow/tmdl.
  • 9Wang W P,2007.Study on Simulation of the Water Environmental Capacity Change and Controlling Measures of the Total Amount Pollutants Discharge in Jiulong River Watershed.Xiamen University,China.
  • 10Xiang L,Li Y X,Yang Z F,Shi J H,2010.Influence of traffic conditions on polycyclic aromatic hydrocarbon abundance in street dust.Journal of Environmental Science and Health,Part A:Toxic/Hazardous Substances and Environmental Engineering,45(3):1-9.

同被引文献256

引证文献23

二级引证文献213

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部