Role of Manganese in Accelerating the Oxidation of Pb(II) Carbonate Solids to Pb(IV) Oxide at Drinking Water Conditions
Author(s) -
Weiyi Pan,
Chao Pan,
Yeunook Bae,
Daniel E. Giammar
Publication year - 2019
Publication title -
environmental science and technology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.851
H-Index - 397
eISSN - 1520-5851
pISSN - 0013-936X
DOI - 10.1021/acs.est.8b07356
Subject(s) - chlorine , chemistry , carbonate , manganese , inorganic chemistry , oxide , autocatalysis , stoichiometry , catalysis , organic chemistry
Pb(II) carbonate solids are corrosion products that form on the inner surfaces of lead service lines (LSLs) and can be oxidized by free chlorine to form Pb(IV) oxide (PbO 2 ). The formation of PbO 2 can maintain low dissolved lead concentrations in drinking water, but PbO 2 can dissolve if a free chlorine residual is not maintained. Experiments demonstrated that the oxidation of Pb(II) carbonate by free chlorine was faster with manganese (Mn). Without Mn(II), the oxidation of Pb(II) carbonate was an autocatalytic process. With Mn(II), the overall oxidation rate was 2 orders of magnitude faster than without Mn(II). X-ray diffraction and free chlorine consumption profiles indicated that δ-MnO 2 was formed within several minutes of the reaction of Mn(II) with free chlorine, and δ-MnO 2 catalyzed the oxidation of Pb(II) carbonate by free chlorine. Free chlorine consumption profiles for Pb(II) carbonate with and without Mn(II) were interpreted based on the kinetics and stoichiometry of the underlying chemical reactions. These findings highlight the importance of Mn in accelerating the formation of PbO 2 in water with Pb(II) carbonate solids and free chlorine, and it may help explain why PbO 2 is observed on LSLs of some but not all water systems that use free chlorine.
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