نتایج جستجو برای: pyrite sulphur removal

تعداد نتایج: 151402  

Journal: :Journal of the Mining and Metallurgical Institute of Japan 1986

Journal: :Journal of the Southern African Institute of Mining and Metallurgy 2016

Journal: :Journal of the Fuel Society of Japan 1954

Journal: Journal of Herbal Drugs 2010
Mehrab Yadegari, Rahim Barzegar

Background & Aim: In order study the effect of Thiobacillus, sulphur and organic materials on vegetative growth and essence production in lemon balm (Melissa officinalis L.) was conducted in pots in field condition at Shahrekord, Iran on 2008. Experimental: The factors were ten soil treatments inclusive 200 kg/ha sulphur, 400 kg/ha sulphur, 600 kg/ha sulphur, 200 kg/ha sulphu...

Journal: :Geochemical Transactions 2006
Jun Hao Curtis Cleveland Eelin Lim Daniel R Strongin Martin AA Schoonen

The chemolithoautotrophic bacterium, Acidithiobacillus ferrooxidans, commonly occurs in acid mine drainage (AMD) environments where it is responsible for catalyzing the oxidation of pyrite and concomitant development of acidic conditions. This investigation reports on the growth of this bacterial species on the pyrite surface and in the aqueous phase at a pH close to 2 as well as the role of ad...

2016
Satoshi Mitsunobu Ming Zhu Yasuo Takeichi Takuji Ohigashi Hiroki Suga Muneaki Jinno Hiroko Makita Masahiro Sakata Kanta Ono Kazuhiko Mase Yoshio Takahashi

We herein investigated the mechanisms underlying the contact leaching process in pyrite bioleaching by Acidithiobacillus ferrooxidans using scanning transmission X-ray microscopy (STXM)-based C and Fe near edge X-ray absorption fine structure (NEXAFS) analyses. The C NEXAFS analysis directly showed that attached A. ferrooxidans produces polysaccharide-abundant extracellular polymeric substances...

Journal: :Applied and environmental microbiology 1999
P Bacelar-Nicolau D B Johnson

Seven strains of heterotrophic iron-oxidizing acidophilic bacteria were examined to determine their abilities to promote oxidative dissolution of pyrite (FeS2) when they were grown in pure cultures and in mixed cultures with sulfur-oxidizing Thiobacillus spp. Only one of the isolates (strain T-24) oxidized pyrite when it was grown in pyrite-basal salts medium. However, when pyrite-containing cu...

2014
Yon Joo Kwon John C. Hemminger

Iron pyrite, one of the phases in the FeS2 system, is a promising semiconductor for use in solar cell applications due to its earth-abundance, high absorption coefficient, and suitable bandgap. However, currently the efficiency of iron pyrite solar cell device does not exceed 3% [1]. Many studies attempted to understand the cause of the low open-circuit voltage in pyrite devices. Some studies s...

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