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Supplementary data Energy efficient vortex-enhanced water evaporation technology for concentrated brine management: Theory and process simulation evaluation

Metadata Updated: August 13, 2023

Data simulation for Desalination drinking water systems and industrial processes generating high salinity streams require practical brine management options for disposal and/or treatment.  Treatment most often involves large capacity brine concentrating processes, on the order of 2000 m3/day, that rely on water evaporation, vapor compression, and condensation.  Tornadic One-Pass™ (TOP™) technology adds an aerosol-generating “Pod” device to the evaporation step with the goal of energy efficient operation even at smaller scales.  The principles behind the tornadic flowfield that breaks up and aerosolizes water injected into the Pod are introduced.  Design of a 6.8 m3/day TOP™ demonstration system producing a NaCl slurry (55 wt% solids) from a 22 wt% NaCl influent is described.  Simulations of the system with three influent brine concentrations and three forms of final NaCl concentrate are presented and predicted energy usage is compared to estimates for conventional systems.  By varying simulation process parameters, the heat transfer performance of the evaporator/condenser is identified as having a large impact on overall efficiency.  TOP™The TOP™ system is anticipated to be most competitive, on an energy usage basis, with conventional concentrator/crystallizer systems when processing higher salinity brines and producing final concentrates containing precipitated NaCl.

This dataset is associated with the following publication: Vane, L., K. Rock, and D. Jordan. Energy efficient vortex-enhanced water evaporation technology for concentrated brine management: Theory and process simulation evaluation. DESALINATION. Elsevier Science Ltd, New York, NY, USA, 522: 115427, (2022).

Access & Use Information

Public: This dataset is intended for public access and use. License: See this page for license information.

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References

https://doi.org/10.1016/j.desal.2021.115427

Dates

Metadata Created Date August 13, 2023
Metadata Updated Date August 13, 2023

Metadata Source

Harvested from EPA ScienceHub

Additional Metadata

Resource Type Dataset
Metadata Created Date August 13, 2023
Metadata Updated Date August 13, 2023
Publisher U.S. EPA Office of Research and Development (ORD)
Maintainer
Identifier https://doi.org/10.23719/1529410
Data Last Modified 2021-08-10
Public Access Level public
Bureau Code 020:00
Schema Version https://project-open-data.cio.gov/v1.1/schema
Harvest Object Id 5e79d1d4-b551-47a6-9e74-6b6249095d7f
Harvest Source Id 04b59eaf-ae53-4066-93db-80f2ed0df446
Harvest Source Title EPA ScienceHub
License https://pasteur.epa.gov/license/sciencehub-license.html
Program Code 020:000
Publisher Hierarchy U.S. Government > U.S. Environmental Protection Agency > U.S. EPA Office of Research and Development (ORD)
Related Documents https://doi.org/10.1016/j.desal.2021.115427
Source Datajson Identifier True
Source Hash 1890a9986b416cb8052d7fadcfcd05b3a45dfb01
Source Schema Version 1.1

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