Suchen und Finden

Titel

Autor

Inhaltsverzeichnis

Nur ebooks mit Firmenlizenz anzeigen:

 

Carbon Cycle in the Changing Arid Land of China - Yanqi Basin and Bosten Lake

Carbon Cycle in the Changing Arid Land of China - Yanqi Basin and Bosten Lake

Xiujun Wang, Zhitong Yu, Jiaping Wang, Juan Zhang

 

Verlag Springer-Verlag, 2018

ISBN 9789811070228 , 141 Seiten

Format PDF

Kopierschutz Wasserzeichen

Geräte

106,99 EUR

Mehr zum Inhalt

Carbon Cycle in the Changing Arid Land of China - Yanqi Basin and Bosten Lake


 

This book integrates the analyses of organic carbon and carbonate accumulation in soil and lake sediment in a typical arid region of China that has experienced significant climate and land-use changes.
It demonstrates that carbonate accumulation greatly exceeds organic carbon in both soil and sediment. It also shows that intensive cropping with sound land management in the arid land not only increases soil organic carbon stock, but also enhances accumulation of soil carbonate, particularly in subsoils. Carbon accumulation in the lake sediment increased between 1950 and 2000, after which it declined, and the authors explore how human activity and climate change may have caused the changes in carbon burial in the lake sediment.
This book is of interest to researchers in a number of fields such as soil science, limnology and global change, as well as to the policy-makers.


Dr. Xiujun Wang is a professor and chief scientist at the College of Global Change and Earth System Science, Beijing Normal University. She earned a Ph. D. in soil biochemistry (Melbourne University) and  Ph. D. in ocean biogeochemistry (University of Tasmania). She was a principal investigator for  NASA carbon projects at the University of Maryland during 2005-2013. Her research focuses on the carbon cycle in soils and sediments of north China. Her main accomplishments include the assessment of accumulation rate of carbonate in north China's cropland. She was the president of Biogeoscience Section, Asia-Oceania Geosciences Society during 2014-2016.