File #: 2021-1736    Version: 1 Name:
Type: Information Item Status: Filed
File created: 6/22/2021 In control: OPERATIONS COMMITTEE
On agenda: 7/7/2021 Final action: 7/7/2021
Title: SUPER CRITICAL WATER OXIDATION RESEARCH OPPORTUNITY
Sponsors: Rob Thompson
Attachments: 1. Agenda Report
Related files: 2021-1919, 2021-1960, 2022-2483, 2022-2512
FROM: James D. Herberg, General Manager
Originator: Rob Thompson, Assistant General Manager

SUBJECT:

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SUPER CRITICAL WATER OXIDATION RESEARCH OPPORTUNITY
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GENERAL MANAGER'S RECOMMENDATION

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RECOMMENDATION:

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BACKGROUND

The Orange County Sanitation District (OC San) collects and processes 185 million gallons of wastewater every day. Cleaning this water results in concentrated solids called sludge and scum. These energy rich solids are processed through anerobic digestion to create methane rich gas and biosolids. The methane rich gas is cleaned and used in the treatment plants to make electricity and heat. Biosolids are the residual material used in the agricultural industry as a soil amendment.

Anerobic digestion is a standard biological treatment technology in the wastewater industry. It is safe and effective at converting organic material to useful gas and killing pathogens in the sludge. Anerobic digestion is not an effective technology for converting microplastics, PFAS, and other constituents of emerging concern.

Staff has been following a new technology for solids treatment for a number of years that takes advantage of a unique property of water at high temperature and pressure. The technology presents an opportunity to convert all complex organic material (including plastics and PFAS) to more basic and benign compounds like nitrogen, water, carbon dioxide, and mineral salts.

A new company, 374 Water, with a novel, simpler process design is moving to scale up their process technology from a one-ton-per-day unit operating at Duke University in North Carolina. Rob Thompson witnessed the operation of the unit in North Carolina in May. Staff are in discussions with 374 Water to engage in a research program to scale up and operate a six-ton-per-day unit, and, if successful, potentially a thirty- ton-per-day unit. These first of their kind units at these flow rates are demonstration units and ...

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