AI Article Synopsis

  • 1,2,4,5-tetramethylbenzene (1,2,4,5-TeMB) is a volatile organic compound found in oily wastewater that can react with OH radicals, undergoing various chemical reactions like substitution and abstraction.
  • Predictions show that hydrogen atoms from both the CH groups and the benzene ring are the most reactive locations in 1,2,4,5-TeMB, with H abstraction from the benzene being the primary reaction pathway.
  • This compound is highly toxic to aquatic life, but its environmental degradation through reactions with OH radicals can reduce its toxicity over time.

Article Abstract

As one of the volatile organic compounds (VOCs) in the environment, 1,2,4,5-tetramethylbenzene (1,2,4,5-TeMB) present in oily wastewater, and it can occur substitution, abstraction, and addition reactions with OH radicals in the atmosphere and wastewater. Electrostatic potential (ESP) and average local ionization energy (ALIE) prediction indicate that H atoms from CH group and the benzene ring are the most active sites in 1,2,4,5-TeMB. The result shows that potential energy surfaces (PESs) in the gas and aqueous phase are similar, and the relevant barriers in the latter one are higher. The dominant channel is H abstraction from the benzene ring, and the subdominant one is OH radical addition to the benzene ring. Furthermore, subsequent reactions of dominant products with O, NO, NO, and OH radicals in the atmosphere are studied, as well. The total reaction rate constant is calculated to be 2.36×10 cm molecule s at 1 atm and 298 K in the atmosphere, which agrees well with the experimental data. While the total rate constant in the aqueous phase is much lower than that in the gas phase. Ecologic toxicity analysis shows that 1,2,4,5-TeMB is very toxic to fish, daphnia, and green algae; and OH-initiated degradation in the environment will reduce its toxicity.

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http://dx.doi.org/10.1007/s11356-022-21704-xDOI Listing

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