Enhancing environmental performance in biogas production from wastewater-grown microalgae: A life cycle assessment perspective

被引:4
作者
Santurbano, Victor [1 ]
Marangon, Bianca [2 ]
Castro, Jackeline [2 ]
Calijuri, Maria Lucia [2 ]
Leme, Marcio [1 ]
Assemany, Paula [1 ]
机构
[1] Univ Fed Lavras UFLA, Fed Univ Lavras, Postgrad Program Environm Engn, Campus Univ, BR-37203202 Lavras, MG, Brazil
[2] Univ Fed Vicosa UFV, Fed Univ Vicosa, Dept Civil Engn, Postgrad Program Civil Engn, Campus Univ, BR-36570900 Vicosa, MG, Brazil
关键词
Wastewater -grown microalgae; Biogas; Life cycle assessment; Sensitivity analysis; High rate algal pond; Biomass; SLUDGE-DIGESTION; ENERGY; ENHANCEMENT; CONVERSION; BIOMASS; SEWAGE;
D O I
10.1016/j.jenvman.2024.121251
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The production of biogas from microalgae has gained attention due to their rapid growth, CO2 sequestration, and minimal land use. This study uses life cycle assessment to assess the environmental impacts of biogas production from wastewater-grown microalgae through anaerobic digestion within an optimized microalgae-based system. Using SimaPro (R) 9 software, 3 scenarios were modeled considering the ReCiPe v1.13 midpoint and endpoint methods for environmental impact assessment in different categories. In the baseline scenario (S1), a hypothetical system for biogas production was considered, consisting of a high rate algal pond (HRAP), a settling, an anaerobic digester, and a biogas upgrading unit. The second scenario (S2) included strategies to enhance biogas yield, namely co-digestion and thermal pre-treatment. The third scenario (S3), besides considering the strategies of S2, proposed the biogas upgrading in the HRAP and the digestate recovery as a biofertilizer. After normalization, human carcinogenic toxicity was the most positively affected category due to water use in the cultivation step, accounted as avoided product. However, this category was also the most negatively affected by the impacts of the digester heating energy. Anaerobic digestion was the most impactful step, constituting on average 60.37% of total impacts. Scenario S3 performed better environmentally, primarily due to the integration of biogas upgrading within the cultivation reactor and digestate use as a biofertilizer. Sensitivity analysis highlighted methane yield's importance, showing potential for an 11.28% reduction in ionizing radiation impacts with a 10% increase. Comparing S3 biogas with natural gas, the resource scarcity impact was reduced sixfold, but the human health impact was 23 times higher in S3.
引用
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页数:12
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