Cradle-to-Gate Life-Cycle Assessment of a Waste Printed Circuit Board-Derived Adsorbent: Production Impacts
Junaid Saleem1, Zubair Khalid Baig Moghal1, Gordon McKay1
1Division of Sustainable Development, College of Science and Engineering, Hamad Bin Khalifa University, Qatar Foundation, Doha P.O. Box 5825, Qatar.
Abstract:
A cradle-to-gate life-cycle assessment (LCA) was conducted for an activated adsorbent produced from the non-metallic fraction (NMF) of waste printed circuit boards. The primary production reference was 1 kg of dry activated non-metallic fraction (ANMF) produced. Cradle-to-gate production impacts were subsequently normalized using previously reported equilibrium adsorption capacities for Pb2+, Cu2+, and Zn2+ to obtain performance-normalized production impacts per kilogram of theoretical metal uptake. Environmental impacts were quantified using the ReCiPe 2016 Midpoint (H) method together with cumulative energy demand (CED). Production of 1 kg of ANMF resulted in a climate change (CC) impact of 5.77 kg CO2-eq and a CED of 140.03 MJ. After adsorption-capacity normalization, the CC impacts were 8.44, 31.35, and 43.05 kg CO2-eq kg-1 metal uptake, while the corresponding CED values were approximately 205, 761, and 1045 MJ kg-1 metal uptake for Pb2+, Cu2+, and Zn2+, respectively. Commercial activated carbon (AC) exhibited slightly lower production impacts, but its lower representative Pb2+ adsorption capacity resulted in substantially higher normalized production burdens. These normalized indicators represent cradle-to-gate production impacts scaled by adsorption performance and do not include wastewater-treatment use-stage operations, regeneration, or management of spent adsorbent. The results demonstrate that adsorption performance substantially influences the interpretation of production-related environmental burdens and should therefore complement conventional mass-based assessment of adsorbents.


