Literature DB >> 31297031

Modeling framework for simulating concentrations of solute chemicals, nanoparticles, and solids in surface waters and sediments: WASP8 Advanced Toxicant Module.

Christopher D Knightes1, Robert B Ambrose1, Brian Avant1,2, Yanlai Han1,2, Brad Acrey1,2, Dermont C Bouchard1, Richard Zepp1, Tim Wool3.   

Abstract

Toxicant concentrations in surface waters are of environmental concern due to their potential impacts to humans and wildlife. Numerical models provide system insight, support management decisions, and provide scenario testing on the impacts of toxicants. The Water Quality Analysis Simulation Program (WASP) is a widely used framework for developing site-specific models for simulating toxicant concentrations in surface waters and sediments over a range of complexities and temporal and spatial scales. WASP8, with the Advanced Toxicant module, has been recently released, incorporating a complete architecture redesign for an increased number of state variables and different state variable types. WASP8 incorporates a new structure for simulating light intensity and photoreactions in the water column, including the distinction of 10 different wavelength bands, and nanoparticle heteroaggregation to solids. We present a hypothetical case study, using the Cape Fear River, North Carolina as a representative example for simulating solute chemicals, nanoparticles, and solids to demonstrate the new and updated capabilities of WASP8.

Entities:  

Keywords:  Nanoparticles; Numerical modeling; Sediments; Surface waters; Toxicants

Year:  2019        PMID: 31297031      PMCID: PMC6621559          DOI: 10.1016/j.envsoft.2018.10.012

Source DB:  PubMed          Journal:  Environ Model Softw        ISSN: 1364-8152            Impact factor:   5.288


  6 in total

1.  WASP 8: The Next Generation in the 50-year Evolution of USEPA's Water Quality Model.

Authors:  Tim Wool; Robert B Ambrose; James L Martin; Alex Comer
Journal:  Water (Basel)       Date:  2020       Impact factor: 3.103

2.  Environmental effects of stratospheric ozone depletion, UV radiation, and interactions with climate change: UNEP Environmental Effects Assessment Panel, Update 2021.

Authors:  P W Barnes; T M Robson; P J Neale; C E Williamson; R G Zepp; S Madronich; S R Wilson; A L Andrady; A M Heikkilä; G H Bernhard; A F Bais; R E Neale; J F Bornman; M A K Jansen; A R Klekociuk; J Martinez-Abaigar; S A Robinson; Q-W Wang; A T Banaszak; D-P Häder; S Hylander; K C Rose; S-Å Wängberg; B Foereid; W-C Hou; R Ossola; N D Paul; J E Ukpebor; M P S Andersen; J Longstreth; T Schikowski; K R Solomon; B Sulzberger; L S Bruckman; K K Pandey; C C White; L Zhu; M Zhu; P J Aucamp; J B Liley; R L McKenzie; M Berwick; S N Byrne; L M Hollestein; R M Lucas; C M Olsen; L E Rhodes; S Yazar; A R Young
Journal:  Photochem Photobiol Sci       Date:  2022-02-21       Impact factor: 4.328

3.  A coupled hydrodynamic (HEC-RAS 2D) and water quality model (WASP) for simulating flood-induced soil, sediment, and contaminant transport.

Authors:  Afshin Shabani; Sean A Woznicki; Megan Mehaffey; Jonathan Butcher; Tim A Wool; Pai-Yei Whung
Journal:  J Flood Risk Manag       Date:  2021-07-26       Impact factor: 4.005

4.  Simulation of the Environmental Fate and Transformation of Nano Copper Oxide in a Freshwater Environment.

Authors:  Bianca N Ross; Christopher D Knightes
Journal:  ACS ES T Water       Date:  2022-08-12

5.  Methylmercury Production and Degradation under Light and Dark Conditions in the Water Column of the Hells Canyon Reservoirs, USA.

Authors:  Chris S Eckley; Todd P Luxton; Christopher D Knightes; Vishal Shah
Journal:  Environ Toxicol Chem       Date:  2021-05-19       Impact factor: 4.218

6.  Environmental Risk Assessment of Nanomaterials in the Light of New Obligations Under the REACH Regulation: Which Challenges Remain and How to Approach Them?

Authors:  Kathrin Schwirn; Doris Voelker; Wiebke Galert; Joris Quik; Lars Tietjen
Journal:  Integr Environ Assess Manag       Date:  2020-04-28       Impact factor: 2.992

  6 in total

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