Comparing heterotrophic and hydrogen-based autotrophic denitrification reactors for effluent water quality and post-treatment

Author:

Tang Youneng1,Ziv-El Michal1,Meyer Kerry2,Zhou Chen1,Shin Jung Hun1,Ahn Chang Hoon1,McQuarrie James2,Candelaria Daniel2,Swaim Paul2,Scott Rick3,Rittmann Bruce E.1

Affiliation:

1. Swette Center for Environmental Biotechnology, Biodesign Institute at Arizona State University, 1001 South McAllister Ave., Tempe, AZ 85287-5701, USA

2. CH2M Hill, 9193 S. Jamaica St., Englewood, CO 80112, USA

3. City of Glendale, 7070 West Northern Avenue, Glendale, AZ 85303, USA

Abstract

This work compares a pilot-scale H2-based membrane biofilm reactor (MBfR) and a pilot-scale packed-bed heterotrophic reactor (PBHR) for denitrification of nitrate-contaminated groundwater. The comparison includes the effluent water quality of the denitrification reactors (NO3−, NO2−, dissolved oxygen, SO42−, (biodegradable) dissolved organic carbon, heterotrophic plate counts (HPC), turbidity, NH4+, and pH), and the impact of post-treatment on water quality. At the same nitrate carrier-surface loading, effluent water quality was generally better directly from the MBfR than from the PBHR. However, post treatment including an ozone-contact tank and a post-filter brought the finished-water quality for both systems to roughly the same level, which met all drinking water standards except for HPC.

Publisher

IWA Publishing

Subject

Water Science and Technology

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