Reusing Sulfur-Poisoned Palladium Waste as a Highly Active, Nonradical Fenton-like Catalyst for Selective Degradation of Phenolic Pollutants

Environ Sci Technol. 2022 Jan 4;56(1):564-574. doi: 10.1021/acs.est.1c05048. Epub 2021 Dec 17.

Abstract

Recycling of deactivated palladium (Pd)-based catalysts can not only lower the economic cost of their industrial use but also save the cost for waste disposal. Considering that the sulfur-poisoned Pd (PdxSy) with a strong Pd-S bond is difficult to regenerate, here, we propose a direct reuse of such waste materials as an efficient catalyst for decontamination via Fenton-like processes. Among the PdxSy materials with different poisoning degrees, Pd4S stood out as the most active catalyst for peroxymonosulfate activation, exhibiting pollutant-degradation performance rivaling the Pd and Co2+ benchmarks. Moreover, the incorporated S atom was found to tune the surface electrostatic potentials and charge densities of the Pd active site, triggering a shift in catalytic pathway from surface-bound radicals to predominantly direct electron transfer pathway that favors a highly selective oxidation of phenols. The catalyst stability was also improved due to the formation of strong Pd-S bond that reduces corrosion. Our work paves a new way for upcycling of Pd-based industrial wastes and for guiding the development of advanced oxidation technologies toward higher sustainability.

Keywords: Fenton-like reaction; non-radical pathway; palladium; peroxymonosulfate; sulfur-poisoning.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Catalysis
  • Environmental Pollutants*
  • Oxidation-Reduction
  • Palladium / chemistry
  • Phenols
  • Poisons*
  • Sulfur

Substances

  • Environmental Pollutants
  • Phenols
  • Poisons
  • Palladium
  • Sulfur