Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development

Microbial induced acid corrosion is accounted for ~40 % of the degradation of subsurface wastewater infrastructure globally. While fundamental process understanding has increased significantly within the last decades, to date no sustainable building material exists, which meets the long-term require...

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Main Authors: Grengg Cyrill, Mittermayr Florian, Ukrainczyk Neven, Koenders Eddie, Koraimann Günther, Kienesberger Sabine, Dietzel Martin
Format: Article
Language:English
Published: EDP Sciences 2018-01-01
Series:MATEC Web of Conferences
Online Access:https://doi.org/10.1051/matecconf/201819902002
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spelling doaj-52f187e984134d428fa53011bbc8c8bc2021-02-02T07:13:27ZengEDP SciencesMATEC Web of Conferences2261-236X2018-01-011990200210.1051/matecconf/201819902002matecconf_iccrrr2018_02002Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material developmentGrengg Cyrill0Mittermayr Florian1Ukrainczyk Neven2Koenders Eddie3Koraimann Günther4Kienesberger SabineDietzel Martin5Institute of Applied Geosciences, Graz University of TechnologyInstitute of Technology and Testing of Building Materials, Graz University of TechnologyInstitute of Construction and Building Materials, Technische Universität DarmstadtInstitute of Construction and Building Materials, Technische Universität DarmstadtInstitute of Molecular Biosciences, University of GrazInstitute of Applied Geosciences, Graz University of TechnologyMicrobial induced acid corrosion is accounted for ~40 % of the degradation of subsurface wastewater infrastructure globally. While fundamental process understanding has increased significantly within the last decades, to date no sustainable building material exists, which meets the long-term requirements in such aggressive and corrosive environments. This work describes a novel model based on field studies, conducted in various Austrian sewer networks, intertwining biological, mineralogical and hydro-chemical factors. Additionally, an extensive field testing campaign over the duration of 18 months, conducted on different geopolymer concretes (GPC), particularly designed for the latter environments will be presented. Innovative GPCs were tested regarding their microstructural behavior, microbial accessibility and hydro-chemical alterations over time and compared to commercially produced cement based products, including OPC and CAC concretes. Additionally, the system specific environmental parameters, such as relevant gas concentrations (H2S, CO2, CH4), relative humidity and temperature were constantly monitored.https://doi.org/10.1051/matecconf/201819902002
collection DOAJ
language English
format Article
sources DOAJ
author Grengg Cyrill
Mittermayr Florian
Ukrainczyk Neven
Koenders Eddie
Koraimann Günther
Kienesberger Sabine
Dietzel Martin
spellingShingle Grengg Cyrill
Mittermayr Florian
Ukrainczyk Neven
Koenders Eddie
Koraimann Günther
Kienesberger Sabine
Dietzel Martin
Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
MATEC Web of Conferences
author_facet Grengg Cyrill
Mittermayr Florian
Ukrainczyk Neven
Koenders Eddie
Koraimann Günther
Kienesberger Sabine
Dietzel Martin
author_sort Grengg Cyrill
title Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
title_short Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
title_full Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
title_fullStr Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
title_full_unstemmed Microbial induced acid corrosion from a field perspective - Advances in process understanding and construction material development
title_sort microbial induced acid corrosion from a field perspective - advances in process understanding and construction material development
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2018-01-01
description Microbial induced acid corrosion is accounted for ~40 % of the degradation of subsurface wastewater infrastructure globally. While fundamental process understanding has increased significantly within the last decades, to date no sustainable building material exists, which meets the long-term requirements in such aggressive and corrosive environments. This work describes a novel model based on field studies, conducted in various Austrian sewer networks, intertwining biological, mineralogical and hydro-chemical factors. Additionally, an extensive field testing campaign over the duration of 18 months, conducted on different geopolymer concretes (GPC), particularly designed for the latter environments will be presented. Innovative GPCs were tested regarding their microstructural behavior, microbial accessibility and hydro-chemical alterations over time and compared to commercially produced cement based products, including OPC and CAC concretes. Additionally, the system specific environmental parameters, such as relevant gas concentrations (H2S, CO2, CH4), relative humidity and temperature were constantly monitored.
url https://doi.org/10.1051/matecconf/201819902002
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