The adhesion of metal ions from wastewater to surface of a material in an adsorption process had proven to be effective for remediation of wastewater before discharge. There is a growing demand to utilize alternative low-cost adsorbents for the removal of
heavy metals from galvanic wastewater in most developing countries. Cow bones are cheap, readily available and can be sourced locally from slaughterhouses and abattoir. Therefore, their use as an alternative adsorbent for remediation of galvanic wastewater had to be assessed. In this study, the efficacy of cow bone char (CBC) was assessed for simultaneous heavy metal ions removal from real life galvanic wastewater in a competitive adsorption process. The galvanic wastewater was characterized using atomic adsorption spectrophotometry while the CBC was characterized using X-ray Fluorescence (XRF), Scanning Electron Microscopy (SEM) and Fourier Transform Infrared (FTIR). Batch experiment was performed to determine the effect of adsorbent dose, contact time and agitation speed on the removal efficiency of heavy metal ions from the galvanized wastewater. The concentrations of Mn۲+, Fe۲+, Zn۲+, Pb۲+ and Cr۲+ in the raw wastewater exceeded the WHO and EPA standards. The adsorbent revealed a significant distribution of well-developed porous, rough surfaces with cracks characterized by different functional groups for the efficient adsorption process. The optimum adsorbent dose for all the metal ions was ۰.۰۴ g/۱۰۰ mL at an optimum contact time of ۶۰ minutes except for Fe۲+ with optimum contact time of ۲۰ minutes, and agitation speed of ۱۵۰ rpm. The maximum metal removal efficiencies obtained for Mn۲+, Fe۲+, Zn۲+, Pb۲+ and Cr۲were ۹۹.۷%, ۱۰۰%, ۹۹%, ۹۰% and ۸۵% +, respectively. The average adsorption capacity for Mn۲+, Fe۲+, Zn۲+, Pb۲+ and Cr۲+were ۰.۴۴ mg/g, ۲۶.۷ mg/g, ۷۸.۵ mg/g, ۰.۱۳۳ mg/g for and ۱۰.۳۶ mg/g, respectively. CBC offers efficient and cost-effective removal of selected metal ions from galvanized wastewater.