生态经济
生態經濟
생태경제
Ecological Economy
2015年
3期
166~172
,共null页
营养盐削减 削减成本 优化 指标转移 太湖流域 氨氮
營養鹽削減 削減成本 優化 指標轉移 太湖流域 氨氮
영양염삭감 삭감성본 우화 지표전이 태호류역 안담
nutritive salt reduction; reduction cost; optimization; target transfer; the Lake Tai basin; ammonia nitrogen
将生态削减方法与工业企业、城市污水处理厂削减方法结合起来解决水体富营养化问题;提出了湖泊流域内的营养盐初始削减指标的优化分配模型,寻求流域内各地区的最优削减量,通过转移费在各地区间为初始削减指标的转移进行补偿。本模型的优化解可以充分发挥流域内地区间、部门间营养盐削减的成本优势,可以促进地区间、部门间营养盐的合作削减,降低流域内营养盐削减成本。实证研究表明,该优化模型切合我国湖泊流域的实情且具有很好的优化效果,如将该优化模型用于太湖流域的氨氮削减,可在2005年节约削减成本10540.08万元人民币,节省比例高达16.6%。
將生態削減方法與工業企業、城市汙水處理廠削減方法結閤起來解決水體富營養化問題;提齣瞭湖泊流域內的營養鹽初始削減指標的優化分配模型,尋求流域內各地區的最優削減量,通過轉移費在各地區間為初始削減指標的轉移進行補償。本模型的優化解可以充分髮揮流域內地區間、部門間營養鹽削減的成本優勢,可以促進地區間、部門間營養鹽的閤作削減,降低流域內營養鹽削減成本。實證研究錶明,該優化模型切閤我國湖泊流域的實情且具有很好的優化效果,如將該優化模型用于太湖流域的氨氮削減,可在2005年節約削減成本10540.08萬元人民幣,節省比例高達16.6%。
장생태삭감방법여공업기업、성시오수처리엄삭감방법결합기래해결수체부영양화문제;제출료호박류역내적영양염초시삭감지표적우화분배모형,심구류역내각지구적최우삭감량,통과전이비재각지구간위초시삭감지표적전이진행보상。본모형적우화해가이충분발휘류역내지구간、부문간영양염삭감적성본우세,가이촉진지구간、부문간영양염적합작삭감,강저류역내영양염삭감성본。실증연구표명,해우화모형절합아국호박류역적실정차구유흔호적우화효과,여장해우화모형용우태호류역적안담삭감,가재2005년절약삭감성본10540.08만원인민폐,절성비례고체16.6%。
The author combined ecological reduction method and industrial reduction and municipal sewage plant reduction methods to solve water eutrophication problem. Based on this technical frame, an optimal allocation model for initial reduction targets for nutritive salt in a lake basin is proposed in this paper. This model seeks the optimal reduction quantity of each region in the basin, and compensates among the regions by transfer fee for the transfer of initial reduction targets. The optimal solution to this model can give full play to the cost advantages of nutrient reduction across the regions and departments in the basin, it can promote cooperative reduction for nutritive salt among the regions and departments, thus decreases the reduction costs for nutritive salt in the basin. The empirical study indicates that this optimization model fits in with the actual situation of the lake basins in our country and has very good optimization. For example, if we implement this model for ammonia nitrogen reduction in the Lake Tai basin in 2005, we can save RMB 10 540.08 × 10^4 for the reduction cost, and the saving proportion is as high as 16.6%.