6533b826fe1ef96bd128493e
RESEARCH PRODUCT
Respirometric Index and Biogas Potential of Different Foods and Agricultural Discarded Biomass
Elena Cristina RadaMarco RagazziAdrian BadeaSimona CiutaStefano AntognoniLucian-ionel Ciocasubject
anaerobic digestion020209 energyGeography Planning and DevelopmentBiomassTJ807-83002 engineering and technologyAnaerobic digestion; Biogas; Biomass; Grape marc; Respirometric index010501 environmental sciencesManagement Monitoring Policy and Lawengineering.materialTD194-19501 natural sciencesRenewable energy sourcesRespirometryBiogasBioenergy0202 electrical engineering electronic engineering information engineeringrespirometric indexbiogasGE1-350respirometric index; biomass; anaerobic digestion; biogas; grape marc0105 earth and related environmental sciencesgrape marcWaste managementbiomassEnvironmental effects of industries and plantsRenewable Energy Sustainability and the EnvironmentCompostPomacePulp and paper industryEnvironmental sciencesAnaerobic digestionengineeringEnvironmental scienceFertilizerrespirometric index; biomass; anaerobic digestion; biogas; grape marc.description
The biological stability of biomass is an important parameter for treatment plant design, process control or compost use. Measuring the biological reactivity of waste with the help of indicators such as respirometric indexes (RI) becomes an important tool to prevent the significant environmental impact of biodegradable wastes in accordance with European legislation. The aim of this paper is to show the importance of the RI technique as a tool to establish further uses of biomass such as fertilizer or biogas. The respirometric process length for different types of biomass (grape marc, apple pomace and olive pomace) was quantified. Higher moisture content seemed to favor the biological activity during the respirometric experiments and shorten the length of the process. The duration of olive pomace respirometry did not exceed 3 days, while the respirometric activity of apple scraps the lasted approximately 2 days. The highest RI values were encountered for the apple pomace, 4888 mgO2·kgVS−1·h−1. The majority of the discarded biomasses are categorized in the third class of stability materials in the course of degradation. This technique is important to detect the biodegradability of substrates, as well as to gain insight into the quantity and generation rate of biogas produced, information that is important from an engineering management perspective.
year | journal | country | edition | language |
---|---|---|---|---|
2016-12-14 | Sustainability; Volume 8; Issue 12; Pages: 1311 |