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OverviewWHY THIS BOOK? This book is an exploration of the possibility that a significant portion of the North American Great Plains (NAGP), now primarily in rangeland, corn, soybean, and small-grain production, can be converted to the production of biomass-energy crops. Biomass can be used as a substitute for some of the fossil fuels the use of which is now increasing the atmospheric concentration of carbon dioxide (CO ) 2 and contributing to global warming and climatic change. Such a land use change to biomass could lead not only to a global good but also to specific economic and environmental benefits for the NAGP region. This analysis is prompted by the following facts and trends: The emission of CO from fossil fuel combustion and tropical deforesta- 2 tion and the rising concentrations of other greenhouse gases make global warming a virtual certainty in this century; indeed the evidence is strong that a warming is already discernible. Global warming will lead to climatic change and, while the geographic d- tribution of this change is not yet known, most general circulation models (GCMs) suggest that midcontinental regions in the northern hemisphere (such as the NAGP) are likely to become drier as well as warmer. NAGP, one of the world’s major breadbaskets, is subject to periodic droughts and other climatic stresses that may worsen with global wa- ing. Full Product DetailsAuthor: Norman J. RosenbergPublisher: Springer-Verlag New York Inc. Imprint: Springer-Verlag New York Inc. Edition: 2007 ed. Volume: 27 Dimensions: Width: 15.50cm , Height: 1.50cm , Length: 23.50cm Weight: 0.541kg ISBN: 9781402056000ISBN 10: 1402056001 Pages: 200 Publication Date: 23 February 2007 Audience: Professional and scholarly , Professional & Vocational Format: Hardback Publisher's Status: Active Availability: In Print This item will be ordered in for you from one of our suppliers. Upon receipt, we will promptly dispatch it out to you. For in store availability, please contact us. Table of ContentsReviewsFrom the reviews: In A Biomass Future for the North American Great Plains, Norman Rosenberg, an agricultural meteorologist with degrees in soil physics and meteorology, sets out to examine the potential for the North American Great Plains as a major source of biomass for producing cellulosic ethanol. ! This book presents a comprehensive, thoroughly researched, and timely treatment of the topic. ! The book is appropriate for upper-level students and other individuals interested in sustainable agriculture, agroecology, bioenergy, and related topics. (Steven L. Fales, Great Plains Research, Vol. 19 (1), Spring, 2009) From the reviews: In A Biomass Future for the North American Great Plains, Norman Rosenberg, an agricultural meteorologist with degrees in soil physics and meteorology, sets out to examine the potential for the North American Great Plains as a major source of biomass for producing cellulosic ethanol. ... This book presents a comprehensive, thoroughly researched, and timely treatment of the topic. ... The book is appropriate for upper-level students and other individuals interested in sustainable agriculture, agroecology, bioenergy, and related topics. (Steven L. Fales, Great Plains Research, Vol. 19 (1), Spring, 2009) From the reviews: ""In A Biomass Future for the North American Great Plains, Norman Rosenberg, an agricultural meteorologist with degrees in soil physics and meteorology, sets out to examine the potential for the North American Great Plains as a major source of biomass for producing cellulosic ethanol. … This book presents a comprehensive, thoroughly researched, and timely treatment of the topic. … The book is appropriate for upper-level students and other individuals interested in sustainable agriculture, agroecology, bioenergy, and related topics."" (Steven L. Fales, Great Plains Research, Vol. 19 (1), Spring, 2009) Author InformationThe author is Regent's Professor Emeritus of Agricultural Meteorology at the University of Nebraska-Lincoln and Laboratory Fellow Emeritus at the Joint Global Change Research Institute, a collaboration of the Pacific Northwest National Laboratory and the University of Maryland-College Park. Tab Content 6Author Website:Countries AvailableAll regions |
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