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Updated: Sep 3, 2026

Fast Pyrolysis of Biomass Residues in a Twin-screw Mixing Reactor
Published on: September 9, 2016
Mineral-driven pyrolysis chemistry and temperature-dependent pyrolysis of textile wastewater sludge: kinetics,
Gaurav Singh1, Ranjeet Kumar Mishra2, Neeraj Kumar1
1Department of Applied Sciences, J. B. Institute of Technology, Veer Madho Singh Bhandari Uttarakhand Technical University Dehradun- 248015 India vatsneeraj78@gmail.com.
Abstract:
This study investigated the pyrolysis behaviour, conversion-dependent kinetics, and char production potential of textile wastewater sludge (TXT) for sustainable waste valorisation. The feedstock contained 45.84 wt% volatile matter, 24.09 wt% fixed carbon, 20.25 wt% ash, and exhibited a significantly higher heating value (HHV) of 11.98 MJ kg-1. Thermogravimetric analysis at 10, 20, and 30 °C min-1 identified three major degradation stages, with increasing heating rate shifting decomposition towards higher temperatures. The kinetic analysis over α = 0.1-0.8 using KAS, OFW, DAEM, Tang, and VZ methods yielded average activation energies of 213.03, 218.61, 208.81, 157.72, and 170.14 kJ mol-1, confirming the multistep and conversion-dependent nature of TXT decomposition. Criado master-plot analysis indicated predominantly diffusion-controlled behaviour at lower conversion, with increasing contributions from reaction-order and nucleation-related mechanisms at higher conversion. Char production at 450-800 °C reduced the yield from 51.20 to 43.53 wt% while generally increasing aromaticity, alkalinity, and pore development. Among the tested temperatures, char produced at 700 °C showed the most favourable properties, with 44.40 wt% carbon, HHV of 18.21 MJ kg-1, a BET surface area of 55.23 m2 g-1, and a water-holding capacity of 64.82 wt%. These findings demonstrate the potential of pyrolysis for converting TXT into a stable, mineral-rich carbonaceous material with relevance to environmental remediation, adsorption, and resource recovery.
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