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Energy and greenhouse gas balances of cassava-based ethanol
Loan T. Le
, Ekko C. van Ierland
, Xueqin Zhu
,
Justus Wesseler
Chair of Agriculture and food (2010 — 2020)
Wageningen University and Research Centre
Research output
:
Contribution to journal
›
Article
›
peer-review
30
Scopus citations
Overview
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Keyphrases
Greenhouse Gas Emissions
100%
Energy Gases
100%
Greenhouse Gas Balance
100%
Cassava-based Ethanol
100%
Greenhouse Gasses Emission
100%
Gasoline
75%
Energy Efficiency
50%
Land Use Change
50%
Energy Input
50%
Fuel Consumption
50%
Reduce Greenhouse Gas
50%
Ethanol Production
50%
Land Use Effects
50%
Ethanol
25%
Life Cycle Assessment
25%
Energy Saving
25%
Biofuel
25%
Fuel Efficiency
25%
Fossil Fuels
25%
Road Transportation
25%
Product Analysis
25%
CO2 Equivalent
25%
Energy Efficiency Improvement
25%
Climate Change Mitigation
25%
Photosynthesis
25%
Biofuel Production
25%
Cassava
25%
Vietnam
25%
Quantitative Effects
25%
Cassava Yield
25%
Greenhouse Gas Emission Saving
25%
Engineering
Greenhouse Gas
100%
Energy Efficiency
42%
Land Use
28%
Energy Input
28%
Ethanol Production
28%
Biofuel
28%
Fuel Efficiency
14%
Fossil Fuel
14%
Road Transportation
14%
Life Cycle Assessment
14%
Functional Unit
14%
Climate Change
14%
Climatic Change
14%
Material Science
Greenhouse Gas
100%
Gas Emission
71%
Fuel Consumption
28%
Carbon Dioxide
28%
Biofuel
28%
Fossil Fuel
14%
Chemical Engineering
Carbon Dioxide
100%