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- W4200575852 abstract "In this study, the slow pyrolysis of Prosopis Juliflora was performed to determine the product yield distribution and its physiochemical properties, thermodynamic and sustainability performance of a process. Findings indicate that the increase in process temperature (300–600 °C) negatively impacted biochar yield while positively affected bio-oil and pyrolysis gas yield. The HHV, fixed carbon and fuel ratio of biochar was improved at higher pyrolysis temperature while energy yield decreased. The maximum bio-oil yield was obtained at 500 °C, and it contains a high fraction of phenolic compounds (35.54%) followed by aromatics (23.01%). The concentration of H2 (7.21–19.88%) and CH4 (1.89–2.59%) and Py-gas heating value (4.98–7.89 MJ Nm−3) improved with an increase in process temperature. The pyrolysis system's energy (76.97–84.54%) and exergy efficiency (67.41–83.38%) were enhanced with process temperature, and the GRA optimization was attained at 600 °C. The sustainability index, environmental factor, and improvement potential positive impact the environment at a higher temperature. It is recommended to produce superior quality of biochar, bio-oil and Py-gas in the temperature range of 500–600 °C with minimal environmental impact." @default.
- W4200575852 created "2021-12-31" @default.
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- W4200575852 date "2022-02-01" @default.
- W4200575852 modified "2023-10-18" @default.
- W4200575852 title "Influence of temperature on slow pyrolysis of Prosopis Juliflora: An experimental and thermodynamic approach" @default.
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- W4200575852 doi "https://doi.org/10.1016/j.renene.2021.12.053" @default.
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