Tarini Prasad Sahoo, Amit Chanchpara, Rishikesh Chormare, Anil Kumar Madhava, Hitesh T Saravaia
Thermogravimetric analysis of Persea americana seed powder (PASP) biomass was investigated at heating rates of 5, 10, 20, and 40 °C min-1 under an inert atmosphere to evaluate its thermo-chemical conversion behavior and pyrolysis kinetics. Two major mass-loss stages were observed between 300 and 1023 K, with the principal decomposition occurring between 450 and 600 K. The activation energies were determined using the Flynn-Wall-Ozawa (FWO), Kissinger-Akahira-Sunose (KAS), and Starink iso-conversional methods, yielding average values of 191.8, 202.7, and 202.2 kJ mol-1, respectively. The adsorption performance of PASP-biochar was evaluated for the simultaneous removal of Cd2+, Zn2+, Ni2+, Cu2+, Pb2+, Hg2+, and Co2+ from aqueous solution. The biochar exhibited good adsorption performance over a wide pH range, followed pseudo-second-order adsorption kinetics, and retained high removal efficiency after regeneration, indicating good reusability. Furthermore, preliminary techno-economic analysis confirmed that PASP-biochar can be produced economically, highlighting its practical potential as a sustainable adsorbent. Overall, this study demonstrates an integrated approach that combines thermo-chemical conversion, kinetic evaluation, and environmental application of avocado seed-derived biochar, providing an effective strategy for agro-waste valorization and sustainable heavymetal remediation from contaminated water.