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A Global Meta-Analysis Of Forest Bioenergy Greenhouse Gas Emission Accounting Studies, T Buchholz, M D. Hurteau, J Gunn, David Saah Jan 2016

A Global Meta-Analysis Of Forest Bioenergy Greenhouse Gas Emission Accounting Studies, T Buchholz, M D. Hurteau, J Gunn, David Saah

Environmental Science

The potential greenhouse gas benefits of displacing fossil energy with biofuels are driving policy development in the absence of complete information. The potential carbon neutrality of forest biomass is a source of considerable scientific debate because of the complexity of dynamic forest ecosystems, varied feedstock types, and multiple energy production pathways. The lack of scientific consensus leaves decision makers struggling with contradicting technical advice. Analyzing previously published studies, our goal was to identify and prioritize those attributes of bioenergy greenhouse gas (GHG) emissions analysis that are most influential on length of carbon payback period. We investigated outcomes of 59 previously …


Contributions Of Organic And Inorganic Matter To Sediment Volume And Accretion In Tidal Wetlands At Steady State, J T. Morris, D C. Barber, John Callaway, R Chambers, S C. Hagen, C S. Hopkinson, B J. Johnson, P Megonigal, S C. Neubauer, T Troxler, C Wigand Jan 2016

Contributions Of Organic And Inorganic Matter To Sediment Volume And Accretion In Tidal Wetlands At Steady State, J T. Morris, D C. Barber, John Callaway, R Chambers, S C. Hagen, C S. Hopkinson, B J. Johnson, P Megonigal, S C. Neubauer, T Troxler, C Wigand

Environmental Science

A mixing model derived from first principles describes the bulk density (BD) of intertidal wetland sediments as a function of loss on ignition (LOI). The model assumes that the bulk volume of sediment equates to the sum of self-packing volumes of organic and mineral components or BD = 1/[LOI/k1 + (1-LOI)/k2], where k1 and k2 are the self-packing densities of the pure organic and inorganic components, respectively. The model explained 78% of the variability in total BD when fitted to 5075 measurements drawn from 33 wetlands distributed around the conterminous United States. The …


Estimating China’S Urban Energy Demand And Co2 Emissions: A Bottom-Up Modeling Perspective, N Khanna, D Fridley, L Price, N Zhou, Stephanie Ohshita Jan 2016

Estimating China’S Urban Energy Demand And Co2 Emissions: A Bottom-Up Modeling Perspective, N Khanna, D Fridley, L Price, N Zhou, Stephanie Ohshita

Environmental Science

China is experiencing unprecedented urbanization with the urban share of population expected to grow to nearly 80% by 2050. Chinese urban residents consume nearly 1.6 times as much commercial energy as rural residents, and account for an even larger share of energy and carbon dioxide (CO2) emissions embodied in urban infrastructure and goods. As a result, cities can play an increasingly important role in helping China meet its future energy and CO2 intensity reduction targets. While some individual cities have conducted energy and greenhouse gas emission inventories, China lacks estimates of aggregate urban energy consumption and CO2 emissions that take …


Best Cities: Software User Guide, Stephanie Ohshita, C Fino-Chen, L Hong, N Khanna Jan 2016

Best Cities: Software User Guide, Stephanie Ohshita, C Fino-Chen, L Hong, N Khanna

Environmental Science

The Benchmarking and Energy-Saving Tool for Low Carbon Cities (BEST Cities) is a dynamic decision-making tool, designed to assist local policy makers and urban planners in prioritizing strategies for energy and carbon saving at the city level in China.

China’s 12th Five-Year Plan (2011-2015) targets a reduction in carbon intensity of the economy (CO2 emissions per unit of GDP) by 17%. In the "Low Carbon Development 2014-2015 energy saving action plan," the State Council calls for interim targets of more than 4% in 2014 and more than 3.5% in 2015. The …


Low-Carbon City Policy Databook: 72 Policy Recommendations For Chinese Cities From The Benchmarking And Energy Savings Tool For Low Carbon Cities, L Price, N Zhou, D Fridley, Stephanie Ohshita, N Khanna, Hongyou Lu, L Hong, G He, J Romankiewicz, M Hu Jan 2016

Low-Carbon City Policy Databook: 72 Policy Recommendations For Chinese Cities From The Benchmarking And Energy Savings Tool For Low Carbon Cities, L Price, N Zhou, D Fridley, Stephanie Ohshita, N Khanna, Hongyou Lu, L Hong, G He, J Romankiewicz, M Hu

Environmental Science

This report is designed to help city authorities evaluate and prioritize more than 70 different policy strategies that can reduce their city’s energy use and carbon-based greenhouse gas emissions of carbon dioxide (CO2) and methane (CH4). Local government officials, researchers, and planners can utilize the report to identify policies most relevant to local circumstances and to develop a low carbon city action plan that can be implemented in phases, over a multi-year timeframe.

The policies cover nine city sectors: industry, public and commercial buildings, residential buildings, transportation, power and heat, street lighting, water & wastewater, solid waste, and urban green …