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Updated: Jan 13, 2026

Reaction Kinetics and Combustion Dynamics of I4O9 and Aluminum Mixtures
Published on: November 7, 2016
Formation of Iodinated Disinfection Byproducts in Periodate-Based Advanced Oxidation Processes: The Self-Supplying
Shuang Zang1, Wei Qiu1, Youwei Jiang2,3
1State Key Laboratory of Urban-Rural Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin 150090, China.
Abstract:
Periodate-based advanced oxidation processes (IO4--based AOPs) have attracted significant interest for degrading organic micropollutants due to their high efficiency and ease of use. However, the formation risk of iodinated disinfection byproducts (I-DBPs) during these processes has long been overlooked. At pH = 3.0-9.0, I-DBPs including iodophenols and triiodomethane were formed in the ultraviolet (UV)/IO4-/phenol system, and the total iodine concentration in I-DBPs ranged from 4.8 to 451.3 nM. In this system, the conversion of IO4- to hypoiodous acid (HOI) proceeded in two stages: (1) a rapid HOI generation phase, where IO4- first transformed into an iodine-containing intermediate followed by its subsequent transformation to HOI, and (2) a slow HOI generation phase, where iodate (the primary product of IO4-) was photoreduced to HOI. The established kinetic model successfully simulated the two-phase formation of HOI. Treatments of the simulated source water samples with hydroxylamine, hydrogen peroxide, Mn2+, Fe2+, nanoscale zerovalent iron, UV, and vacuum ultraviolet (VUV)-activated IO4- processes all resulted in the formation of I-DBPs. The fact that the iodine source of these I-DBPs was IO4- confirmed the self-supplying iodine mechanism of IO4-. Future research should develop technologies that efficiently degrade micropollutants while minimizing I-DBP formation.
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