TECHNO-ECONOMIC ANALYSIS AND LIFE CYCLE ASSESSMENT OF ALGAL TURF SCRUBBERS TREATING ANAEROBIC LAGOON EFFLUENT FOR NUTRIENT RECOVERY AND RENEWABLE DIESEL PRODUCTION
Loading...
Date
Journal Title
Journal ISSN
Volume Title
Abstract
High-nutrient wastewater sources, such as anaerobic dairy lagoon effluent, contribute to nitrogen (N) and phosphorus (P) overapplication, groundwater contamination, and surface-water impairment. Algal turf scrubbers (ATS) can recover these nutrients while producing harvestable biomass for bioproducts, but the economic feasibility of treatment remains unexplored. This study presents the first national-scale techno-economic and life cycle assessment of a modular ATS system for treating dairy anaerobic lagoon effluent across the contiguous United States, using a county-level model informed by 2022 dairy census data, manure-management datasets, and process wastewater criteria. Nutrient removal was simulated using an experimentally validated framework integrating Monod-based biokinetics and light-use-efficiency-based biomass productivity. Harvested biomass was routed to centralized state-level hydrothermal liquefaction facilities for renewable diesel production. Results show that ATS-derived renewable diesel remained economically challenging, with fuel selling prices exceeding the U.S. average fuel selling price of $0.98 LGE-1 across all cost assumptions. However, to reach economic parity, the required nutrient credits were below conventional treatment cost benchmarks for 30-96% of locations for N and 65-96% for P, depending on cost assumptions. For wastewater treatment alone, lower cultivation-cost assumptions allowed 94% of evaluated locations to fall below a $1.61 m-3 treatment benchmark. Life-cycle results showed that most locations exceeded low-carbon fuel thresholds due to cultivation and biomass transportation burdens. Overall, while ATS-derived renewable diesel faces persistent economic and carbon-intensity barriers, lagoon-based ATS systems demonstrate strong potential as a nutrient-recovery technology with potential fuel co-production serving as a supplementary benefit rather than a primary value driver.
Description
Rights Access
Subject
Biokinetics
Hydrothermal Liquefaction
Wastewater Treatment
Dairy Cattle
Biofuels
Sustainability Assessement
