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A model predicting the potential pol...
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Martin, Jessica S.
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A model predicting the potential pollution attributable to residential on-site wastewater treatment within the Catskill/Delaware watershed.
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
A model predicting the potential pollution attributable to residential on-site wastewater treatment within the Catskill/Delaware watershed./
作者:
Martin, Jessica S.
面頁冊數:
94 p.
附註:
Adviser: James M. Hassett.
Contained By:
Masters Abstracts International46-05.
標題:
Engineering, Environmental. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=1450664
ISBN:
9780549513513
A model predicting the potential pollution attributable to residential on-site wastewater treatment within the Catskill/Delaware watershed.
Martin, Jessica S.
A model predicting the potential pollution attributable to residential on-site wastewater treatment within the Catskill/Delaware watershed.
- 94 p.
Adviser: James M. Hassett.
Thesis (M.S.)--State University of New York College of Environmental Science and Forestry, 2008.
Keywords: Aerobic treatment unit, carbon, nitrogen, on-site wastewater treatment, peat filter, phosphorus, sand filter
ISBN: 9780549513513Subjects--Topical Terms:
783782
Engineering, Environmental.
A model predicting the potential pollution attributable to residential on-site wastewater treatment within the Catskill/Delaware watershed.
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Keywords: Aerobic treatment unit, carbon, nitrogen, on-site wastewater treatment, peat filter, phosphorus, sand filter
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New York City's drinking water supply is threatened by the potential development of the Catskill/Delaware watershed. The effectiveness of alternative on-site wastewater treatment systems (OSWT) in this drinking water supply watershed was evaluated during the course of a one year field study and modeling analysis. Samples were collected from five replicates of four types of alternative OSWT and four replicates of convention OSWT at each stage in the treatment train monthly and analyzed for carbon and nutrients. Field data was used in the construction of models which calculated a conservative estimate of the total mass loading of nutrients and carbon to the Catskill/Delaware watershed from the 20,000 conventional OSWT systems currently installed within it. Concurrently the model estimates the total mass loading to the watershed from 20,000 alternative OSWT systems of a single type. This analysis, field observations, point estimates, and cost-benefit analysis support the use of peat and sand filters.
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