4.7 Article

The Effect of Calcium Source on Pb and Cu Remediation Using Enzyme-Induced Carbonate Precipitation

Journal

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fbioe.2022.849631

Keywords

heavy metal; biomineralization; urease enzyme; urea hydrolysis; remediation efficiency

Funding

  1. Shaanxi Educational Department [2020TD-005]

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This study investigates the effect of calcium source on lead and copper removal through test tube experiments and numerical simulations. The findings suggest that enzyme-induced carbonate precipitation shows potential for lead and copper remediation.
Heavy metal contamination not only causes threat to human health but also raises sustainable development concerns. The use of traditional methods to remediate heavy metal contamination is however time-consuming, and the remediation efficiency may not meet the requirements as expected. The present study conducted a series of test tube experiments to investigate the effect of calcium source on the lead and copper removals. In addition to the test tube experiments, numerical simulations were performed using Visual MINTEQ software package considering different degrees of urea hydrolysis derived from the experiments. The remediation efficiency degrades when NH4+ and OH- concentrations are not sufficient to precipitate the majority of Pb2+ and Cu2+. It also degrades when CaO turns pH into highly alkaline conditions. The numerical simulations do not take the dissolution of precipitation into account and therefore overestimate the remediation efficiency when subjected to lower Pb(NO3)(2) or Cu(NO3)(2) concentrations. The findings highlight the potential of applying the enzyme-induced carbonate precipitation to lead and copper remediations.

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