Title of article
Pilot-scale data provide enhanced estimates of the life cycle energy and emissions profile of algae biofuels produced via hydrothermal liquefaction
Author/Authors
Liu، نويسنده , , Xiaowei and Saydah، نويسنده , , Benjamin and Eranki، نويسنده , , Pragnya and Colosi، نويسنده , , Lisa M. and Greg Mitchell، نويسنده , , B. and Rhodes، نويسنده , , James and Clarens، نويسنده , , Andres F.، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
9
From page
163
To page
171
Abstract
Life cycle assessment (LCA) has been used widely to estimate the environmental implications of deploying algae-to-energy systems even though no full-scale facilities have yet to be built. Here, data from a pilot-scale facility using hydrothermal liquefaction (HTL) is used to estimate the life cycle profiles at full scale. Three scenarios (lab-, pilot-, and full-scale) were defined to understand how development in the industry could impact its life cycle burdens. HTL-derived algae fuels were found to have lower greenhouse gas (GHG) emissions than petroleum fuels. Algae-derived gasoline had significantly lower GHG emissions than corn ethanol. Most algae-based fuels have an energy return on investment between 1 and 3, which is lower than petroleum biofuels. Sensitivity analyses reveal several areas in which improvements by algae bioenergy companies (e.g., biocrude yields, nutrient recycle) and by supporting industries (e.g., CO2 supply chains) could reduce the burdens of the industry.
Keywords
Hydrothermal liquefaction , Energy Return on Investment , Algae , biofuels , Life cycle assessment
Journal title
Bioresource Technology
Serial Year
2013
Journal title
Bioresource Technology
Record number
1934436
Link To Document