Karla G. Morrissey
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Also affiliated: Kansas State University (2015); Energetics (United States) (2024)
Research Areas
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Biography and Research Information
OverviewAI-generated summary
Karla G. Morrissey's research centers on the environmental and economic assessments of various technological applications. Her work includes life cycle assessment (LCA) and cost analysis for novel electrochemical struvite recovery systems in wastewater treatment plants. She has also investigated the life cycle impacts of biofuels derived from sweet sorghum and the broader environmental, social, and economic implications of solar-powered charging stations. Morrissey's recent publications explore sustainable nutrient recovery from agro-industrial and livestock wastewater effluents using flow cell reactors, and the measurement of greenhouse gas emissions from water resource recovery facilities. She has published nine papers, with a current h-index of 5 and 92 citations. Morrissey collaborates with several researchers at the University of Arkansas at Fayetteville, including Greg Thoma, László Kékedy‐Nagy, Zahra Anari, and Raheleh Daneshpour.
Metrics
- h-index: 5
- Publications: 9
- Citations: 92
Selected Publications
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Spatially explicit freshwater eutrophication potential (EP) from water resource recovery facility (WRRF) discharge and mitigation opportunities in the U.S. (2025)
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Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor (2024)
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Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery (2022)
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Prospective Life Cycle Assessment and Cost Analysis of Novel Electrochemical Struvite Recovery in a U.S. Wastewater Treatment Plant (2022)
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Life cycle impact assessment of biofuels derived from sweet sorghum in the U.S. (2021)
Federal Grants 1 $4,319,942 total
Note: 1 grant is marked "Topic-matched" — attributed by description keywords rather than verified PI records.
Collaboration Network
Top Collaborators
- Prospective Life Cycle Assessment and Cost Analysis of Novel Electrochemical Struvite Recovery in a U.S. Wastewater Treatment Plant
- Life cycle impact assessment of biofuels derived from sweet sorghum in the U.S.
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor
- Spatially explicit freshwater eutrophication potential (EP) from water resource recovery facility (WRRF) discharge and mitigation opportunities in the U.S.
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Sustainable electroless nutrient recovery from natural agro-industrial and livestock farm wastewater effluents with a flow cell reactor
- Life cycle impact assessment of biofuels derived from sweet sorghum in the U.S.
- Prospective Life Cycle Assessment and Cost Analysis of Novel Electrochemical Struvite Recovery in a U.S. Wastewater Treatment Plant
- Prospective Life Cycle Assessment and Cost Analysis of Novel Electrochemical Struvite Recovery in a U.S. Wastewater Treatment Plant
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Pressure-driven membrane nutrient preconcentration for down-stream electrochemical struvite recovery
- Spatially explicit freshwater eutrophication potential (EP) from water resource recovery facility (WRRF) discharge and mitigation opportunities in the U.S.
- Spatially explicit freshwater eutrophication potential (EP) from water resource recovery facility (WRRF) discharge and mitigation opportunities in the U.S.