Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments - Info and Reading Options
By Takahito Yoshioka

"Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments" was published by Springer in 2013 and it has 917 pages.
“Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments” Metadata:
- Title: ➤ Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments
- Author: Takahito Yoshioka
- Number of Pages: 917
- Publisher: Springer
- Publish Date: 2013
- Library of Congress Classification: TD427.O7 P56 2013GE1-350
“Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments” Subjects and Themes:
- Subjects: ➤ Water - Organic compound content - Water chemistry - Photobiochemistry - Hydrogen peroxide - Biogeochemistry - Hydrogeology - Environmental chemistry - Ecology - Euthenics - Nature and nurture - Adaptation (Biology) - Environmental sciences - Hydraulic engineering
Edition Identifiers:
- The Open Library ID: OL26084838M - OL17497417W
- Library of Congress Control Number (LCCN): 2012952610
- ISBN-13: 9783642322228
- All ISBNs: 9783642322228
AI-generated Review of “Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments”:
"Photobiogeochemistry Of Organic Matter Principles And Practices In Water Environments" Description:
The Open Library:
Photoinduced processes, caused by natural sunlight, are key functions for sustaining all living organisms through production and transformation of organic matter (OM) in the biosphere. Production of hydrogen peroxide (H2O2) from OM is a primary step of photoinduced processes, because H2O2 acts as strong reductant and oxidant. It is potentially important in many aquatic reactions, also in association with photosynthesis. Allochthonous and autochthonous dissolved organic matter (DOM) can be involved into several photoinduced or biological processes. DOM subsequently undergoes several physical, chemical, photoinduced and biological processes, which can be affected by global warming. This book is uniquely structured to overview some vital issues, such as: DOM; H2O2 and ROOH; HO•; Degradation of DOM; CDOM, FDOM; Photosynthesis; Chlorophyll; Metal complexation, and Global warming, as well as their mutual interrelationships, based on updated scientific results."
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