Life cycle assessment of upflow anaerobic sludge blanket sludge management and activated sludge systems aiming energy use in the municipality of Itajubá, Minas Gerais, Brazil
This study aimed to carry out the Life Cycle Analysis (LCA) targeting to decide the better management system for sludge from both Activated Sludge Process (ASP) and from Upflow Anaerobic Sludge Blanket (UASB). Using the SimaPro ® software, three post-use scenarios were applied to this process for ea...
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Published in: | Journal of material cycles and waste management Vol. 23; no. 5; pp. 1810 - 1830 |
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01-09-2021
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Abstract | This study aimed to carry out the Life Cycle Analysis (LCA) targeting to decide the better management system for sludge from both Activated Sludge Process (ASP) and from
Upflow Anaerobic Sludge Blanket
(UASB). Using the SimaPro
®
software, three post-use scenarios were applied to this process for each type of sludge: Scenario A, which consisted of the option of disposing of UASB sludge in a sanitary landfill; Scenario B, in anaerobic digestion (AD) with the generation of biogas and electricity and use of digested sludge; and Scenario C, the use of UASB sludge as an agricultural fertilizer. Besides, we carried out the analysis of heavy metals in the sludge before and after the AD using the Scanning Electron Microscopy. The elements found with a marked presence in the treatment of UASB and ASP sludge samples, before and after AD, were, among others: Oxygen, Carbon, Aluminum, Silicon, and Iron. The energy avoided for UASB sludge is 0.0502 MJ. For activated sludge, it is 0.00173 MJ. The use of activated sludge as an agricultural fertilizer (Scenario C) presented the best performance in eight of the eleven categories due to the presence of products avoided in the process. |
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AbstractList | This study aimed to carry out the Life Cycle Analysis (LCA) targeting to decide the better management system for sludge from both Activated Sludge Process (ASP) and from
Upflow Anaerobic Sludge Blanket
(UASB). Using the SimaPro
®
software, three post-use scenarios were applied to this process for each type of sludge: Scenario A, which consisted of the option of disposing of UASB sludge in a sanitary landfill; Scenario B, in anaerobic digestion (AD) with the generation of biogas and electricity and use of digested sludge; and Scenario C, the use of UASB sludge as an agricultural fertilizer. Besides, we carried out the analysis of heavy metals in the sludge before and after the AD using the Scanning Electron Microscopy. The elements found with a marked presence in the treatment of UASB and ASP sludge samples, before and after AD, were, among others: Oxygen, Carbon, Aluminum, Silicon, and Iron. The energy avoided for UASB sludge is 0.0502 MJ. For activated sludge, it is 0.00173 MJ. The use of activated sludge as an agricultural fertilizer (Scenario C) presented the best performance in eight of the eleven categories due to the presence of products avoided in the process. This study aimed to carry out the Life Cycle Analysis (LCA) targeting to decide the better management system for sludge from both Activated Sludge Process (ASP) and from Upflow Anaerobic Sludge Blanket (UASB). Using the SimaPro® software, three post-use scenarios were applied to this process for each type of sludge: Scenario A, which consisted of the option of disposing of UASB sludge in a sanitary landfill; Scenario B, in anaerobic digestion (AD) with the generation of biogas and electricity and use of digested sludge; and Scenario C, the use of UASB sludge as an agricultural fertilizer. Besides, we carried out the analysis of heavy metals in the sludge before and after the AD using the Scanning Electron Microscopy. The elements found with a marked presence in the treatment of UASB and ASP sludge samples, before and after AD, were, among others: Oxygen, Carbon, Aluminum, Silicon, and Iron. The energy avoided for UASB sludge is 0.0502 MJ. For activated sludge, it is 0.00173 MJ. The use of activated sludge as an agricultural fertilizer (Scenario C) presented the best performance in eight of the eleven categories due to the presence of products avoided in the process. |
Author | Barros, Regina Mambeli Silva, Ana Paula Moni Piñas, Jean Agustin Velásquez Lora, Electo Eduardo Silva Cañote, Susan Johana Benites dos Santos, Ivan Felipe Silva Cañote, Alexandra Lucitania Benites de Castro e Silva, Hellen Luisa |
Author_xml | – sequence: 1 givenname: Susan Johana Benites surname: Cañote fullname: Cañote, Susan Johana Benites organization: Master of Science in Energy Engineering, Federal University of Itajubá, (Energy Engineering At Federal University of Itajubá), Excellence Group in Thermal Power and Distributed Generation-NEST – sequence: 2 givenname: Regina Mambeli orcidid: 0000-0003-3154-2956 surname: Barros fullname: Barros, Regina Mambeli email: remambeli@hotmail.com organization: Natural Resources Institute, Federal University of Itajubá, (Instituto de Recursos Naturais da Universidade Federal de Itajubá) – sequence: 3 givenname: Electo Eduardo Silva surname: Lora fullname: Lora, Electo Eduardo Silva organization: Excellence Group in Thermal Power and Distributed Generation (NEST), Institute of Mechanical Engineering-IEM, Federal University of Itajubá (UNIFEI) – sequence: 4 givenname: Ivan Felipe Silva surname: dos Santos fullname: dos Santos, Ivan Felipe Silva organization: Master of Science in Energy Engineering, Federal University of Itajubá, (Energy Engineering At Federal University of Itajubá), Excellence Group in Thermal Power and Distributed Generation-NEST, Doctorate in Mechanical Engineering at UNIFEI, Federal University of Itajubá (Doutorado em Engenharia Mecânica da Universidade Federal de Itajubá) – sequence: 5 givenname: Ana Paula Moni surname: Silva fullname: Silva, Ana Paula Moni organization: Natural Resources Institute, Federal University of Itajubá, (Instituto de Recursos Naturais da Universidade Federal de Itajubá) – sequence: 6 givenname: Jean Agustin Velásquez surname: Piñas fullname: Piñas, Jean Agustin Velásquez organization: Excellence Group in Thermal Power and Distributed Generation (NEST), Institute of Mechanical Engineering-IEM, Federal University of Itajubá (UNIFEI) – sequence: 7 givenname: Alexandra Lucitania Benites surname: Cañote fullname: Cañote, Alexandra Lucitania Benites organization: Geological, Mining and Metallurgical Institute (INGEMMET), and Advanced Paleontology of Complutense University of Madrid, (Paleontologia Avançada da Universidade Complutense de Madrid) – sequence: 8 givenname: Hellen Luisa surname: de Castro e Silva fullname: de Castro e Silva, Hellen Luisa organization: Natural Resources Institute, Federal University of Itajubá, (Mestrado Em Meio Ambiente E Recursos Hídricos, Instituto de Recursos Naturais da Universidade Federal de Itajubá) |
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Keywords | Activated sludge Biogas UASB sludge Life cycle analysis Anaerobic digestion |
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SubjectTerms | Activated sludge Activated sludge process Aluminum Anaerobic digestion Anaerobic processes Biogas Civil Engineering Energy consumption Engineering Environmental Management Fertilizers Heavy metals Landfills Life cycle analysis Life cycle assessment Life cycles Original Article Scanning electron microscopy Sludge Sludge digestion Upflow anaerobic sludge blanket reactors Waste disposal sites Waste Management/Waste Technology |
Title | Life cycle assessment of upflow anaerobic sludge blanket sludge management and activated sludge systems aiming energy use in the municipality of Itajubá, Minas Gerais, Brazil |
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