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The Metal-Driven Biogeochemistry of Gaseous Compounds in the Environment

ISBN-13: 9789401792684 / Angielski / Twarda / 2014 / 333 str.

Peter Kroneck; Martha Sosa Torres
The Metal-Driven Biogeochemistry of Gaseous Compounds in the Environment Peter Kroneck Martha Sosa Torres 9789401792684 Springer - książkaWidoczna okładka, to zdjęcie poglądowe, a rzeczywista szata graficzna może różnić się od prezentowanej.

The Metal-Driven Biogeochemistry of Gaseous Compounds in the Environment

ISBN-13: 9789401792684 / Angielski / Twarda / 2014 / 333 str.

Peter Kroneck; Martha Sosa Torres
cena 605,23 zł
(netto: 576,41 VAT:  5%)

Najniższa cena z 30 dni: 578,30 zł
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MILS-14 provides a most up-to-date view of the exciting biogeochemistry of gases in our environment as driven mostly by microorganisms. These employ a machinery of sophisticated metalloenzymes, where especially transition metals (such as Fe, Ni, Cu, Mo, W) play a fundamental role, that is, in the activation, transformation and syntheses of gases like dihydrogen, methane, carbon monoxide, acetylene and those of the biological nitrogen and sulfur cycles. The Metal-Driven Biogeochemistry of Gaseous Compounds in the Environment is a vibrant research area based mainly on structural and microbial biology, inorganic biological chemistry and environmental biochemistry. All this is covered in an authoritative manner in 11 stimulating chapters, written by 26 internationally recognized experts and supported by nearly 1200 references, informative tables and about 100 illustrations (two thirds in color). MILS-14 also provides excellent information for teaching. Peter M. H. Kroneck is a bioinorganic chemist who is exploring the role of transition metals in biology, with a focus on functional and structural aspects of microbial iron, copper and molybdenum enzymes and their impact on the biogeochemical cycles of nitrogen and sulfur. Martha E. Sosa Torres is an inorganic chemist, with special interests in magnetic properties of newly synthesized transition metal complexes and their reactivity towards molecular oxygen, applying kinetic, electrochemical and spectroscopic techniques.

Kategorie:
Nauka, Medycyna
Kategorie BISAC:
Science > Life Sciences - General
Medical > Research
Science > Chemia
Wydawca:
Springer
Seria wydawnicza:
Metal Ions in Life Sciences
Język:
Angielski
ISBN-13:
9789401792684
Rok wydania:
2014
Wydanie:
2014
Numer serii:
000319582
Ilość stron:
333
Waga:
0.66 kg
Wymiary:
24.3 x 16.2 x 2.0
Oprawa:
Twarda
Wolumenów:
01
Dodatkowe informacje:
Wydanie ilustrowane

"This book is very well compiled and covers key information regarding small molecules that have an important impact in our environment. ... Relevant information is supported by high-quality illustrations and figures, allowing the reader to follow discussions about mechanisms of action, structure and function of metal-active sites, biological cycles or electron pathways. ... This book will be an excellent acquisition for chemistry libraries and for researchers and students interested on bioinorganic chemistry, biochemistry or inorganic chemistry." (Norah Barba-Behrens, Transition Metal Chemistry, Vol. 41, 2016)

Preface.- The Early Earth Atmosphere and Early Life Catalysts.- Living on Acetylene. A Primordial Energy Source.- Carbon Monoxide. Toxic Gas and Fuel for Anaerobes and Aerobes: Carbon Monoxide Dehydrogenases.- Investigations of the Efficient Electrocatalytic Interconversions of Carbon Dioxide and Carbon Monoxide by Nickel-Containing Carbon Monoxide Dehydrogenases.- Understanding and Harnessing Hydrogenases. Biological Dihydrogen Catalysts.- Biochemistry of Methyl-Coenzyme M Reductase: The Nickel Metalloenzyme that Catalyzes the Final Step in Synthesis and the First Step in Anaerobic Oxidation of the Greenhouse Gas Methane.- Cleaving the N,N Triple Bond: The Transformation of Dinitrogen to Ammonia by Nitrogenases.- No Laughing Matter: The Unmaking of the Greenhouse Gas Dinitrogen Monoxide by Nitrous Oxide Reductase.- The Production of Ammonia by Multiheme Cytochromes c.- Hydrogen Sulfide: A Toxic Gas Produced by Dissimilatory Sulfate Reduction and Consumed by Microbial Oxidation.- Transformations of Dimethylsulfide.- Index.

MILS-14 provides a most up-to-date view of the exciting biogeochemistry of gases in our environment as driven mostly by microorganisms. These employ a machinery of sophisticated metalloenzymes, where especially transition metals (such as Fe, Ni, Cu, Mo, W) play a fundamental role, that is, in the activation, transformation, and syntheses of gases like dihydrogen, methane, carbon monoxide, acetylene, and those of the biological nitrogen and sulfur cycles. The Metal-Driven Biogeochemistry of Gaseous Compounds in the Environment is a vibrant research area based mainly on structural and microbial biology, inorganic biological chemistry, and environmental biochemistry. All this is covered in an authoritative manner in 11 stimulating chapters, written by 26 internationally recognized experts, and supported by nearly 1200 references, informative tables, and about 100 illustrations (two thirds in color). MILS-14 also provides excellent information for teaching.

Peter M. H. Kroneck is a bioinorganic chemist who is exploring the role of transition metals in biology, with a focus on functional and structural aspects of microbial iron, copper, and molybdenum enzymes and their impact on the biogeochemical cycles of nitrogen and sulfur.

 Martha E. Sosa Torres is an inorganic chemist, with special interests in magnetic properties of newly synthesized transition metal complexes and their reactivity towards molecular oxygen, applying kinetic, electrochemical, and spectroscopic techniques.



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