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Solar pyrolysis of agave and tomato pruning wastes: Insights of the effect of pyrolysis operation parameters on the physicochemical properties of biochar

Alejandro Ayala-CortésInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, MéxicoCamilo A. Arancibia‐BulnesInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, MéxicoHeidi Isabel Villafán-VidalesInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, MéxicoDiego Ramón Lobato-PeraltaInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, MéxicoDiana C. Martínez-CasillasInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, MéxicoAna Karina Cuentas-GallegosInstituto de Energías Renovables, Universidad Nacional Autónoma de México, Privada Xochicalco S/N, col. Centro. 62588, Temixco, Morelos, México
2019en
ABI

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Agave angustifolia leaves and tomato pruning biomasses were processed into carbon materials by solar pyrolysis. The influence of temperature and heating rate was studied in the physicochemical properties of the obtained biochars. The characterization techniques include elemental analyses (CHONS), physisorption to determine surface area by BET and DFT models, and capacitance values were determined by cyclic voltammetry as the electrochemical technique. It was found that for both biomasses, temperatures below 900°C are beneficial because more homogeneous and porous structures are obtained. The highest values of capacitance and surface area were obtained for tomato carbons at 450 and 600 °C, respectively.

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