Item talk:Q45086: Difference between revisions

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          "abstract": "Mr. Buer has 10 years of experience in measuring the quantity and quality of point and nonpoint source runoff with the U.S. Geological Survey. Over the last 8 years, the majority of Nic\u2019s work has focused on supporting urban focused research, characterizing the hydrologic and chemical response of stormwater to structural and non-structural practices designed to mitigate stormwater pollution and nonpoint source runoff in urban environments. Much of this work has been used to inform environmental and city managers within the state of Wisconsin. In the last 5 years, his work has helped quantify the water quality benefits of fall leaf collection, determine the water quality benefits of various permeable pavement surfaces to establish criteria for their use, measure the \u201curban effect\u201d on water quality and quantity in surface waters, and help establish a network of monitoring systems to model and monitor urban flooding. Accurate water-quality data produced through Nic\u2019s work has proven beneficial to various local and state partners in the development of best management practices (BMPs), permit compliance, hydrologic modeling, and evaluation of proprietary devices.Areas of ExpertiseNic has considerable experience with real-time water quality monitoring in both urban and rural settings as well as monitoring and interpreting nonpoint source runoff in urban environments. He has participated in several research studies that focus on mitigating stormwater pollution through structural or non-structural practices such as leaf collection, street sweeping, and storm-water filtering.Current ProjectsCharacterization of permeable pavement temperature properties and implications for deicer reductionEvaluation of the water quality benefits of permeable pavementEvaluating filtration capacity of rain gardens in the removal of nutrients, sediment, pesticides, PAHs, and pharmaceuticalsDetermining the impact of large scale Green Infrastructure (GI) implementation on urban stormwater volumesMeasuring leaf collection programs as a means to reduce nutrient loads from urban basinsMeasuring chloride loading to surface waters as a means to evaluate winter salting practicesQuantifying the urban effect on a high-quality trout stream through water quality and quantityProviding expertise in the collection of high-quality data for modeling and monitoring of urban floodingPrevious ProjectsEvaluation of permeable pavement maintenance practicesQuantifying the effects of tree canopy on urban runoffEvaluation of a Coanda-effect screen in removing pollutants from urban stormwaterUrban runoff particle size analysis for WinSLAMM model calibrationsDepth Integrated Sample Arm (DISA) evaluation in urban and rural stormwater runoff settingsCharacterization of agriculture field runoff during storm events",
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    timestamp: '2023-09-30T16:42:17.475843'
    url: https://www.usgs.gov/staff-profiles/nicolas-h-buer
  profile:
    abstracts: []
    affiliations: []
    education:
    - M.S., 2013, Hydrogeology, University of North Dakota
    - "B.A., 2006, Geology, University of Minnesota \u2013 Morris"
    - "B.A., 2006, Biology, University of Minnesota \u2013 Morris"
    email: nbuer@usgs.gov
    expertise_terms:
    - Real-time water quality monitoring in both urban and rural settings
    - Monitoring and interpreting nonpoint source runoff in urban environments
    - Mitigating stormwater pollution through structural or non-structural practices
      such as leaf collection, street sweeping, and storm-water filtering
    honors: []
    intro_statements:
    - Nicolas Buer is a Hydrologist with the Upper Midwest Water Science Center.
    name: Nicolas H Buer
    name_qualifier: null
    orcid: 0000-0002-4369-8715
    organization_link: https://www.usgs.gov/centers/upper-midwest-water-science-center
    organization_name: Upper Midwest Water Science Center
    personal_statement: "Mr. Buer has 10 years of experience in measuring the quantity\
      \ and quality of point and nonpoint source runoff with the U.S. Geological Survey.\
      \ Over the last 8 years, the majority of Nic\u2019s work has focused on supporting\
      \ urban focused research, characterizing the hydrologic and chemical response\
      \ of stormwater to structural and non-structural practices designed to mitigate\
      \ stormwater pollution and nonpoint source runoff in urban environments. Much\
      \ of this work has been used to inform environmental and city managers within\
      \ the state of Wisconsin. In the last 5 years, his work has helped quantify\
      \ the water quality benefits of fall leaf collection, determine the water quality\
      \ benefits of various permeable pavement surfaces to establish criteria for\
      \ their use, measure the \u201Curban effect\u201D on water quality and quantity\
      \ in surface waters, and help establish a network of monitoring systems to model\
      \ and monitor urban flooding. Accurate water-quality data produced through Nic\u2019\
      s work has proven beneficial to various local and state partners in the development\
      \ of best management practices (BMPs), permit compliance, hydrologic modeling,\
      \ and evaluation of proprietary devices.Areas of ExpertiseNic has considerable\
      \ experience with real-time water quality monitoring in both urban and rural\
      \ settings as well as monitoring and interpreting nonpoint source runoff in\
      \ urban environments. He has participated in several research studies that focus\
      \ on mitigating stormwater pollution through structural or non-structural practices\
      \ such as leaf collection, street sweeping, and storm-water filtering.Current\
      \ ProjectsCharacterization of permeable pavement temperature properties and\
      \ implications for deicer reductionEvaluation of the water quality benefits\
      \ of permeable pavementEvaluating filtration capacity of rain gardens in the\
      \ removal of nutrients, sediment, pesticides, PAHs, and pharmaceuticalsDetermining\
      \ the impact of large scale Green Infrastructure (GI) implementation on urban\
      \ stormwater volumesMeasuring leaf collection programs as a means to reduce\
      \ nutrient loads from urban basinsMeasuring chloride loading to surface waters\
      \ as a means to evaluate winter salting practicesQuantifying the urban effect\
      \ on a high-quality trout stream through water quality and quantityProviding\
      \ expertise in the collection of high-quality data for modeling and monitoring\
      \ of urban floodingPrevious ProjectsEvaluation of permeable pavement maintenance\
      \ practicesQuantifying the effects of tree canopy on urban runoffEvaluation\
      \ of a Coanda-effect screen in removing pollutants from urban stormwaterUrban\
      \ runoff particle size analysis for WinSLAMM model calibrationsDepth Integrated\
      \ Sample Arm (DISA) evaluation in urban and rural stormwater runoff settingsCharacterization\
      \ of agriculture field runoff during storm events"
    professional_experience: []
    title: Hydrologist

Revision as of 19:31, 30 August 2024

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         "abstract": "Mr. Buer has 10 years of experience in measuring the quantity and quality of point and nonpoint source runoff with the U.S. Geological Survey. Over the last 8 years, the majority of Nic\u2019s work has focused on supporting urban focused research, characterizing the hydrologic and chemical response of stormwater to structural and non-structural practices designed to mitigate stormwater pollution and nonpoint source runoff in urban environments. Much of this work has been used to inform environmental and city managers within the state of Wisconsin. In the last 5 years, his work has helped quantify the water quality benefits of fall leaf collection, determine the water quality benefits of various permeable pavement surfaces to establish criteria for their use, measure the \u201curban effect\u201d on water quality and quantity in surface waters, and help establish a network of monitoring systems to model and monitor urban flooding. Accurate water-quality data produced through Nic\u2019s work has proven beneficial to various local and state partners in the development of best management practices (BMPs), permit compliance, hydrologic modeling, and evaluation of proprietary devices.Areas of ExpertiseNic has considerable experience with real-time water quality monitoring in both urban and rural settings as well as monitoring and interpreting nonpoint source runoff in urban environments. He has participated in several research studies that focus on mitigating stormwater pollution through structural or non-structural practices such as leaf collection, street sweeping, and storm-water filtering.Current ProjectsCharacterization of permeable pavement temperature properties and implications for deicer reductionEvaluation of the water quality benefits of permeable pavementEvaluating filtration capacity of rain gardens in the removal of nutrients, sediment, pesticides, PAHs, and pharmaceuticalsDetermining the impact of large scale Green Infrastructure (GI) implementation on urban stormwater volumesMeasuring leaf collection programs as a means to reduce nutrient loads from urban basinsMeasuring chloride loading to surface waters as a means to evaluate winter salting practicesQuantifying the urban effect on a high-quality trout stream through water quality and quantityProviding expertise in the collection of high-quality data for modeling and monitoring of urban floodingPrevious ProjectsEvaluation of permeable pavement maintenance practicesQuantifying the effects of tree canopy on urban runoffEvaluation of a Coanda-effect screen in removing pollutants from urban stormwaterUrban runoff particle size analysis for WinSLAMM model calibrationsDepth Integrated Sample Arm (DISA) evaluation in urban and rural stormwater runoff settingsCharacterization of agriculture field runoff during storm events",
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