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Carbon nanofiber production: Life cycle energy consumption and environmental impact
Vikas Khanna, Bhavik R. Bakshi,
L. James Lee
生物藥學研究所
研究成果
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引文 斯高帕斯(Scopus)
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Keyphrases
Carbon Nanofibers
100%
Environmental Impact
100%
Nanofibers Production
100%
Life Cycle Energy Consumption
100%
Production Cycle
100%
Energy Requirement
42%
Equal Mass
42%
Life Cycle Energy
42%
Traditional Materials
28%
Nanoproducts
28%
Life Cycle Inventory
28%
Primary Aluminum
28%
Polypropylene
14%
Nanotechnology
14%
Potential Gains
14%
Energy Impact
14%
Process Yield
14%
Continuous Operation
14%
Damage Indicator
14%
Engineered Nanomaterials
14%
Environmental Performance
14%
Holistic Understanding
14%
Environmental Burden
14%
Steel-aluminum
14%
System Analysis Tool
14%
First Assessments
14%
Feedstock Materials
14%
Process Life Cycle Assessment
14%
Engineering
Lifecycle
100%
Carbon Nanofibre
100%
Energy Requirement
42%
Mass Basis
42%
Life Cycle Inventory
28%
Primary Aluminum
28%
Nanomaterial
14%
Systems Analysis
14%
Endpoint
14%
Potential Benefit
14%
Process Yield
14%
Continuous Operation
14%
Damage Indicator
14%
Environmental Performance
14%
Feedstock Material
14%
Process Life Cycle Assessment
14%
Material Science
Carbon Nanofiber
100%
Aluminum
28%
Polypropylene
14%
Feedstock
14%
Nanostructured Material
14%
Chemical Engineering
Carbon Nanofibre
100%
Polypropylene
14%
System Analysis
14%