Aims: To study the influence of some metallic elements of stainless steel 304 (SS 304) on the development and activity of a sulfate-reducing bacterial biofilm, using as comparison a reference nonmetallic material polymethylmethacrylate (PMMA). Methods and Results: Desulfovibrio desulfuricans biofilms were developed on SS 304 and on a reference nonmetallic material, PMMA, in a flow cell system. Steady-state biofilms were metabolically more active on SS 304 than on PMMA. Activity tests with bacteria from both biofilms at steady state also showed that the doubling time was lower for bacteria from SS 304 biofilms. The influence of chromium and nickel, elements of SS 304 composition, was also tested on a cellular suspension of Des. desulfur...
Purpose – The purpose of this paper is to study the metal-Microbe interaction playing a crucial role...
Microbiologically-influenced corrosion (MIC) is a costly problem for many industries. Large portions...
In this article, we investigate the effect of microorganisms on the rate of corrosion of stainless s...
Aims: To study the influence of some metallic elements of stainless steel 304 (SS 304) on the develo...
Aims: To study the influence of some metallic elements of stainless steel 304 (SS 304) on the develo...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater ...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater ...
The build-up of biofilms on metals surfaces may lead to severe corrosion, especially in the presence...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater...
The associative effect towards the corrosion of AISI 304 stainless steel caused by the main two bact...
Sulfate reducing bacteria and acid producing bacteria/fungi detected in hygiene waters increased the...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
Purpose – The purpose of this paper is to study the metal-Microbe interaction playing a crucial role...
Microbiologically-influenced corrosion (MIC) is a costly problem for many industries. Large portions...
In this article, we investigate the effect of microorganisms on the rate of corrosion of stainless s...
Aims: To study the influence of some metallic elements of stainless steel 304 (SS 304) on the develo...
Aims: To study the influence of some metallic elements of stainless steel 304 (SS 304) on the develo...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater ...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater ...
The build-up of biofilms on metals surfaces may lead to severe corrosion, especially in the presence...
Sulphate reducing bacteria have an important role in the sulphur cycle, and therefore in wastewater...
The associative effect towards the corrosion of AISI 304 stainless steel caused by the main two bact...
Sulfate reducing bacteria and acid producing bacteria/fungi detected in hygiene waters increased the...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
The development of biofilms on mild and stainless steel surfaces in pure and mixed batch cultures of...
Purpose – The purpose of this paper is to study the metal-Microbe interaction playing a crucial role...
Microbiologically-influenced corrosion (MIC) is a costly problem for many industries. Large portions...
In this article, we investigate the effect of microorganisms on the rate of corrosion of stainless s...