Swine manure valorization in fabrication of nutrition and energy
- PMID: 33074416
- DOI: 10.1007/s00253-020-10963-8
Swine manure valorization in fabrication of nutrition and energy
Abstract
Renewable energy can boost the growing population's need and rapid budgetary development. To reduce fossil fuel consumption is the initial purpose of renewable and sustainable energy, producing valuable bio-based products. The fermenters, using for pretreatment of swine manure, and involvement of swine carcasses are reported to enhance organic loading rate followed by improved biogas yield on household digesters. The compositions such as animal residues, pathogenic microbes, pharmaceutical residues and nutrient compositions including undigested feed are still confused. Therefore, it is mandatory to optimize and stabilize anaerobic practice and digestate filtration purification for consequential fertilizer consumption. The effective bio-methane recovery from energy-rich compounds is challenging due to slow degradation procedures. The pretreatment procedure could enhance lipid depolymerization and improve anaerobic fermentation. This article deeply focuses on biodegradation of swine manure. The components of this manure were evaluated and established several approaches to improve biogas production. Furthermore, recycling of co-digestates was discussed in detail as fertilizer consumption including hygienic aspects of manure and pretreatment strategies of biomass residues. KEY POINTS: • Co-digestion of manure and carcasses enhance bio-methane production. • Removel of ammonia from biogas digester may improve bio-methane gas. • A strong antimicrobial influence has been reported on biogas production.
Keywords: Biogas; Energy; Fermentations; Holistic biomass; Nutritions.
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References
-
- ABCS (2014) Pig production: theory and practice, 1st edn. Brazilian Pig Breeders Association, Brasília
-
- AHDB (2017) Pork yearbook 2016-2017: key industry statistics, pig performance data and details of knowledge exchange, research and development activity. Available at: https://pork.ahdb.org.uk/media/273760/ahdb-pork-yearbook2016-17.pdf
-
- Alburquerque JA, de la Fuente C, Ferrer-Costa A, Carrasco L, Cegarra J, Abad M (2012) Assessment of the fertiliser potential of digestates from farm and agroindustrial residues. Biomass Bioenergy 40:181–189. https://doi.org/10.1016/j.biombioe.2012.02.018 - DOI
-
- Ali N, Gong H, Giwa AS, Yuan Q, Wang KJ (2019) Metagenomic analysis and characterization of acidogenic microbiome and effect of pH on organic acid production. Arch Microbiol 201:1163–1171 - DOI
-
- Ali N, Hamouda HI, Su H, Li FL, Lu M (2020) Combinations of alkaline hydrogen peroxide and lithium chloride/N, N-dimethylacetamide pretreatments of corn stalk for improved biomethanation. Env Res 186:109563. https://doi.org/10.1016/j.envres.2020.109563 - DOI
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