St.Croix, WI and Taylor Falls, MN Wastewater System (WI,MN)
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Total Pages | : 382 |
Release | : 1981 |
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Total Pages | : 382 |
Release | : 1981 |
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Total Pages | : |
Release | : 1981 |
Genre | : Sewage |
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Author | : U.S. Department of the Interior |
Publisher | : CreateSpace |
Total Pages | : 52 |
Release | : 2014-07-23 |
Genre | : Reference |
ISBN | : 9781499639872 |
The U.S. Geological Survey and the National Park Service cooperated on a study to determine the occurrence of wastewater indicator compounds including nutrients; organic wastewater compounds (OWCs), such as compounds used in plastic components, surfactant metabolites, antimicrobials, fragrances, and fire retardants; and pharmaceuticals in the St. Croix National Scenic Riverway in Minnesota and Wiscon-sin. Samples of treated wastewater effluent from two waste-water-treatment plants (WWTPs), located in St. Croix Falls, Wisc. (SCF-WWTP) and Taylors Falls, Minn. (TF-WWTP), were collected from 2007 to 2008. During this time, surface-water and bed-sediment samples from the St. Croix River below Sunrise River near Sunrise, Minn., upstream from the two WWTPs (Sunrise site), and from the St. Croix River above Rock Island near Franconia, Minn., downstream from the WWTPs (Franconia site), also were collected. The Franconia site was selected because of the two large WWTP discharge points and the presence of mussel beds in this area of the St. Croix River.
Author | : Louis J. Breimhurst |
Publisher | : |
Total Pages | : 18 |
Release | : 1964 |
Genre | : Saint Croix River (Wis. and Minn.) |
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Author | : United States. Congress. House |
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Total Pages | : 8 |
Release | : 1916 |
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Total Pages | : 810 |
Release | : 1893 |
Genre | : Wisconsin |
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Author | : United States. Weather Bureau |
Publisher | : |
Total Pages | : 1004 |
Release | : 1950 |
Genre | : Meteorology |
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Collection of the monthly climatological reports of the United States by state or region with monthly and annual National summaries.
Author | : Katharine Cross |
Publisher | : IWA Publishing |
Total Pages | : 344 |
Release | : 2021-08-15 |
Genre | : Science |
ISBN | : 9781789062250 |
There are 2.4 billion people without improved sanitation and another 2.1 billion with inadequate sanitation (i.e. wastewater drains directly into surface waters), and despite improvements over the past decades, the unsafe management of fecal waste and wastewater continues to present a major risk to public health and the environment (UN, 2016). There is growing interest in low cost sanitation solutions which harness natural systems. However, it can be difficult for wastewater utility managers to understand under what conditions such nature-based solutions (NBS) might be applicable and how best to combine traditional infrastructure, for example an activated sludge treatment plant, with an NBS such as treatment wetlands. There is increasing scientific evidence that treatment systems with designs inspired by nature are highly efficient treatment technologies. The cost-effective design and implementation of ecosystems in wastewater treatment is something that exists and has the potential to be further promoted globally as both a sustainable and practical solution. This book serves as a compilation of technical references, case examples and guidance for applying nature-based solutions for treatment of domestic wastewater, and enables a wide variety of stakeholders to understand the design parameters, removal efficiencies, costs, co-benefits for both people and nature and trade-offs for consideration in their local context. Examples through case studies are from across the globe and provide practical insights into the variety of potentially applicable solutions.
Author | : Andrew Stoddard |
Publisher | : John Wiley & Sons |
Total Pages | : 672 |
Release | : 2003-03-20 |
Genre | : Technology & Engineering |
ISBN | : 0471463523 |
A thorough analysis of public policy and the Clean Water Act'seffect on water quality in the U.S. Using water quality data and historical records from the past 60years, this book presents the measured impact of the 1972 CleanWater Act on domestic waterways-ecologically, politically, andeconomically. Municipal Wastewater Treatment supports thehypothesis that the Act's regulation of wastewater treatmentprocesses at publicly owned treatment works (POTW) and industrialfacilities has achieved significant success. The authors' case ispresented in: * Background information on the history of water pollution controland water quality management * Chapters addressing long-term trends in biochemical oxygen demandloadings from municipal wastewater plants and the "worst-case"dissolved oxygen levels in waterways downstream of point sourcesbefore and after the Clean Water Act * Nine case study assessments of long-term trends of pollutantloading water quality and environmental resources associated withPOTW discharges Using long-term trends in dissolved oxygen as the key indicator ofwater quality improvements, this book provides a detailedretrospective analysis of the effectiveness of the water pollutioncontrol policies and regulations of the 1972 Clean Water Act. Thesuccesses of the Act that have been achieved over the past 30 yearsare placed in the historical context of the "Great SanitaryAwakening" of the 19th century and changes in public policies forwater supply and water pollution control that have evolved duringthe 20th century to protect public health and the intrinsic valueof aquatic resources. Case study sites include the ConnecticutRiver, Hudson-Raritan Estuary, Delaware Estuary, Potomac Estuary,Upper Chattahoochee River, Ohio River, Upper Mississippi River, andWillamette River. Complete with end-of-chapter summaries and conclusions, MunicipalWastewater Treatment: Evaluating Improvements in National WaterQuality is an essential book for engineers, scientists, regulators,and consultants involved in water quality management and wastewatertreatment, as well as students of environmental engineering,environmental science, and public policy.
Author | : Raymond H. Merritt |
Publisher | : |
Total Pages | : 136 |
Release | : 1984 |
Genre | : Environmental engineering |
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