Evaluating the Greenhouse Gas Mitigation Potential and Cost-competitiveness of Forest Bioenergy Systems in Ontario

Evaluating the Greenhouse Gas Mitigation Potential and Cost-competitiveness of Forest Bioenergy Systems in Ontario
Title Evaluating the Greenhouse Gas Mitigation Potential and Cost-competitiveness of Forest Bioenergy Systems in Ontario PDF eBook
Author Peter Ralevic
Publisher
Pages
Release 2013
Genre
ISBN

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Economic analysis of greenhouse gas mitigation potential in the US forest sector

Economic analysis of greenhouse gas mitigation potential in the US forest sector
Title Economic analysis of greenhouse gas mitigation potential in the US forest sector PDF eBook
Author Justin Baker
Publisher RTI Press
Pages 8
Release 2017-08-30
Genre Science
ISBN

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This study conducted an economic analysis of future US forest mitigation potential using a detailed economic model of the global forestry sector. The scenario design included a wide range of possible future carbon price incentives and climate policy structures (unilateral and global mitigation). Results across all scenarios show US forest sector mitigation potential ranging from 54 to 292 MtCO2e between 2015 and 2030 (5 to 47 percent of the additional mitigation needed to achieve the 26 to 28 percent emissions reduction target). The results from this study suggest that the US forest sector can play an important role in global greenhouse gas mitigation efforts, including efforts to meet any potential future US mitigation targets.

Assessing Greenhouse Gas Emissions Mitigation Potential Through the Use of Forest Bioenergy

Assessing Greenhouse Gas Emissions Mitigation Potential Through the Use of Forest Bioenergy
Title Assessing Greenhouse Gas Emissions Mitigation Potential Through the Use of Forest Bioenergy PDF eBook
Author Jonathan McKechnie
Publisher
Pages
Release 2012
Genre
ISBN 9780494974292

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Forest BioEnergy Production

Forest BioEnergy Production
Title Forest BioEnergy Production PDF eBook
Author Seppo Kellomäki
Publisher Springer Science & Business Media
Pages 268
Release 2013-09-12
Genre Science
ISBN 1461483913

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For thousands of years, forest biomass or wood has been among the main energy sources of humans around the world. Since the industrial revolution, fossil fuels have replaced wood and become the dominant source of energy. The use of fossil fuels has the disadvantage of increasing atmospheric concentrations of greenhouse gases (GHGs), especially carbon dioxide (CO2), with the consequent warming of global climate and changes in precipitation. In this context, the substitution of fossil fuels with renewable energy sources like forest biomass is among the ways to mitigate climate change. This book summarizes recent experiences on how to manage forest land to produce woody biomass for energy use and what are the potentials to mitigate climate change by substituting fossil fuels in energy production. In this context, the book addresses how management can affect the supply of energy biomass using short-rotation forestry and the conventional forestry applying long rotations. Furthermore, the book outlines the close interaction between the ecological systems and industrial systems, which controls the carbon cycle between the atmosphere and biosphere. In this context, sustainable forest management is a key to understand and control indirect carbon emissions due to the utilization of forest biomass (e.g. from management, harvesting and logistics, and ecosystem processes), which are often omitted in assessing the carbon neutrality of energy systems based on forest biomass. The focus in this book is on forests and forestry in the boreal and temperate zones, particularly in Northern Europe, where the woody biomass is widely used in the energy industry for producing energy.

Forest Biomass

Forest Biomass
Title Forest Biomass PDF eBook
Author T. Satoo
Publisher Springer Science & Business Media
Pages 160
Release 2012-12-06
Genre Technology & Engineering
ISBN 9400976275

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Lord Rutherford has said that all science is either physics or stamp collecting. On that basis the study of forest biomass must be classified with stamp collecting and other such pleasurable pursuits. Japanese scientists have led the world, not only in collecting basic data, but in their attempts to systematise our knowledge of forest biomass. They have studied factors affecting dry matter production of forest trees in an attempt to approach underlying phYf'ical principles. This edition of Professor Satoo's book has been made possible the help of Dr John F. Hosner and the Virginia Poly technical Institute and State University who invited Dr Satoo to Blacksburg for three months in 1973 at about the time when he was in the final stages of preparing the Japanese version. Since then the explosion of world literature on forest biomass has continued to be fired by increasing shortages of timber supplies in many parts of the world as well as by a need to explore renewable sources of energy. In revising the original text I have attempted to maintain the input of Japanese work - much of which is not widely available outside Japan - and to update both the basic information and, where necessary, the conclusions to keep them in tune with current thinking. Those familiar with the Japanese original will find Chapter 3 largely rewritten on the basis of new work - much of which was initiated while Dr Satoo was in Blacksburg.

US forest sector greenhouse mitigation potential and implications for nationally determined contributions

US forest sector greenhouse mitigation potential and implications for nationally determined contributions
Title US forest sector greenhouse mitigation potential and implications for nationally determined contributions PDF eBook
Author Christina Van Winkle
Publisher RTI Press
Pages 30
Release 2017-05-30
Genre Nature
ISBN

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Countries globally are committing to achieve future greenhouse gas emissions reductions to address our changing climate, as outlined in the Paris Agreement from the United Nations Framework Convention on Climate Change (UNFCCC) Conference of the Parties. These commitments, called nationally determined contributions (NDCs), are based on projected anthropogenic greenhouse gas (GHG) emissions levels across all sectors of the economy, including land use, land use change, and forestry (LULUCF) activities. Projecting LULUCF emissions is uniquely challenging, and the uncertainty of future LULUCF emissions could require additional mitigation efforts in the land use sectors to reduce the risk of NDC noncompliance. The objectives of this paper are to provide critical information on what forest sector mitigation activities are currently underway in the United States on private lands, review recent literature estimates of the mitigation potential from these activities (and associated economic costs), identify gaps in the literature where additional analytical work is needed, and provide recommendations for targeted mitigation strategies should US emissions approach or exceed targeted post-2020 NDC levels.

Economic Analysis of Greenhouse Gas Mitigation Potential in the US Forest Sector

Economic Analysis of Greenhouse Gas Mitigation Potential in the US Forest Sector
Title Economic Analysis of Greenhouse Gas Mitigation Potential in the US Forest Sector PDF eBook
Author Justin Baker
Publisher
Pages
Release 2017
Genre
ISBN

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This study conducted an economic analysis of future US forest mitigation potential using a detailed economic model of the global forestry sector. The scenario design included a wide range of possible future carbon price incentives and climate policy structures (unilateral and global mitigation). Results across all scenarios show US forest sector mitigation potential ranging from 54 to 292 MtCO2e between 2015 and 2030 (5 to 47 percent of the additional mitigation needed to achieve the 26 to 28 percent emissions reduction target). The results from this study suggest that the US forest sector can play an important role in global greenhouse gas mitigation efforts, including efforts to meet any potential future US mitigation targets.