نتایج جستجو برای: iron oxidation

تعداد نتایج: 252414  

2016
Mark Dopson David S. Holmes Marcelo Lazcano Timothy J. McCredden Christopher G. Bryan Kieran T. Mulroney Robert Steuart Connie Jackaman Elizabeth L. J. Watkin

Extremely acidophilic microorganisms (pH optima for growth of ≤3) are utilized for the extraction of metals from sulfide minerals in the industrial biotechnology of "biomining." A long term goal for biomining has been development of microbial consortia able to withstand increased chloride concentrations for use in regions where freshwater is scarce. However, when challenged by elevated salt, ac...

Journal: :The Journal of biological chemistry 1984
M Ingelman-Sundberg I Johansson

The hydroxyl radical-mediated oxidation of 5,5-dimethyl-1-pyrroline N-oxide, benzene, ketomethiolbutyric acid, deoxyribose, and ethanol, as well as superoxide anion and hydrogen peroxide formation was quantitated in reconstituted membrane vesicle systems containing purified rabbit liver microsomal NADPH-cytochrome P-450 reductase and cytochromes P-450 LM2, P-450 LMeb , or P-450 LM4, and in vesi...

2001
Inger Johansson

The hydroxyl radical-mediated oxidation of 5,S-dimethyl1-pyrroline N-oxide, benzene, ketomethiolbutyric acid, deoxyribose, and ethanol, as well as superoxide anion and hydrogen peroxide formation was quantitated in reconstituted membrane vesicle systems containing purified rabbit liver microsomal NADPHcytochrome P-450 reductase and cytochromes P-450 LM2, P-450 LMeb, or P-450 LM4, and in vesicle...

ژورنال: مواد پرانرژی 2019

Hematite iron oxide (α-Fe2O3) is used in military industries as a main component of thermite mixtures, burning rate catalyst of composite propellants and pyrotechnic igniter systems. Catalytic and oxidation activity of this mineral combination increases strongly with reduction of particle size. In this research, nanoparticles of hematite iron oxide was synthesized by a new co-precipitation meth...

2001
Inger Johansson

The hydroxyl radical-mediated oxidation of 5,S-dimethyl1-pyrroline N-oxide, benzene, ketomethiolbutyric acid, deoxyribose, and ethanol, as well as superoxide anion and hydrogen peroxide formation was quantitated in reconstituted membrane vesicle systems containing purified rabbit liver microsomal NADPHcytochrome P-450 reductase and cytochromes P-450 LM2, P-450 LMeb, or P-450 LM4, and in vesicle...

Journal: :The Journal of General Physiology 2003
Charles J. Lyon

Arsenate exerts a catalytic effect on the oxidation of pyrogallol by atmospheric oxygen, on the catalytic oxidation of pyrogallol by metallic iron, and on the presumably enzymatic production of CO(2) by Elodea canadensis.

Journal: :Applied and environmental microbiology 1994
D Emerson N P Revsbech

We constructed a small flow chamber in which suboxic medium containing 60 to 120 muM FeCl(2) flowed up through a sample well into an aerated reservoir, thereby creating an suboxic-oxic interface similar to the physicochemical conditions that exist in natural iron seeps. When microbial mat material from the Marselisborg iron seep that contained up to 10 bacterial cells per cm (D. Emerson and N. ...

2011
Jingyu Huang Deborah Jones Bai Luo Michael Sanderson Jamie Soto E. Dale Abel Robert C. Cooksey Donald A. McClain

OBJECTIVE Excess tissue iron levels are a risk factor for diabetes, but the mechanisms underlying the association are incompletely understood. We previously published that mice and humans with a form of hereditary iron overload, hemochromatosis, exhibit loss of β-cell mass. This effect by itself is not sufficient, however, to fully explain the diabetes risk phenotype associated with all forms o...

Alireza Khoshroo Mehdi Maleki Mohammad Mazloum-Ardakani,

In the present paper, the electrochemical properties of magnetic iron oxide nanoparticles (Fe2O3 and Fe3O4) as highly sensitive sensors for the simultaneous determination of hydrazine and hydroxylamine was described. The electrochemical behavior of hydrazine and hydroxylamine was investigated using cyclic voltammetry, chronoamperometry and differentia...

Journal: :Chemical communications 2015
Peng Tan Hoi-Ki Kwong Tai-Chu Lau

An iron(iii) complex bearing a cross-bridged cyclam ligand (4,11-dimethyl-1,4,8,11-tetraazabicyclo[6.6.2]hexadecane) is an efficient catalyst for the oxidation of both water and alcohols using sodium periodate as the oxidant. In catalytic water oxidation a maximum turnover number (TON) of 1030 is achieved, while in catalytic alcohol oxidation >95% conversions and yields can be obtained.

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