Title of article :
modeling of non-point source pollution by long-term hydrologic impact assessment (l-thia) (case study: zayandehrood watershed) in 2015‎
Author/Authors :
mirzaei, mojgan malayer university - department of environmental sciences, ملاير, ايران , solgi, eisa malayer university - department of environmental sciences, ملاير, ايران , salman mahiny, abdolrassoul gorgan university of agricultural sciences and natural resources - college of fisheries and environmental sciences, گرگان, ايران
From page :
196
To page :
205
Abstract :
background aims of the study: in this research, long-term hydrologic impact assessment model is selected for simulation of runoff and nps pollution. the aim of this study is modeling of non-point source pollution by l-thia model in zayandehrood watershed in 2015. materials methods: in this study, analytical survey and investigation of references in the context of library studies has been used. zayandehrood watershed is located in esfahan, iran. required data in this study are land use, soil and precipitation data from studied period. the first l-thia model run and then the spatial distribution of non-point source pollution analysed within the study area. the annual average runoff volume, depth and the non-point source nitrogen and phosphorus load and the spatial distribution were estimated. results: according to the study, we concluded that amount of nitrogen and phosphorus load in agricultural and residential areas are more serious and the nitrogen load due to nonpoint source pollution was larger than phosphorus load in zayandehrood basin. the maximum runoff depth in the region was calculated 501.371 cm and the maximum nonpoint source pollution obtained 24244.27 kg. the results indicated the watershed likely is affected to impacts from urbanization and agriculture. conclusions: the results of this study can be used for urban planning and decision making in an effort to protect water and habitat quality of zayandehrood river. integration of introduced model and other hydrologic models can be increased accuracy and precision of results. also, sub-watersheds can prioritize for watershed management in in the vulnerable sections.
Keywords :
hydrology , nitrogen , phosphorus , water quality , zayandehrood , iran
Journal title :
Archives of Hygiene Sciences
Journal title :
Archives of Hygiene Sciences
Record number :
2670402
Link To Document :
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