Yu, Fangke et al. published their research in Separation and Purification Technology in 2020 | CAS: 95-88-5

4-Chlororesorcinol (cas: 95-88-5) belongs to organic chlorides. Organic chlorides are compounds containing a carbon-chlorine bond, which are widely used in the oil field as a wax dissolver. While alkyl bromides and iodides are more reactive, alkyl chlorides tend to be less expensive and more readily available. Alkyl chlorides readily undergo attack by nucleophiles.Quality Control of 4-Chlororesorcinol

Hydrothermal synthesis of FeS2 as a highly efficient heterogeneous electro-Fenton catalyst to degrade diclofenac via molecular oxygen effects for Fe(II)/Fe(III) cycle was written by Yu, Fangke;Wang, Yi;Ma, Hongrui;Zhou, Minghua. And the article was included in Separation and Purification Technology in 2020.Quality Control of 4-Chlororesorcinol The following contents are mentioned in the article:

The authors demonstrated hydrothermally synthesized FeS2 (pyrite) was highly efficient to catalyze H2O2 decomposition for diclofenac sodium (DCF) degradation over a wide pH range (3-9) by a heterogeneous electro-Fenton (EF) process., and this “Pyrite-EF” showed a better performance for the mineralization of DCF in comparison with the classic EF process. This “Pyrite-EF” displayed better performance for DCF mineralization vs. the classic EF process. The pyrite content effect on OH radical generation and Fe dissolution due to H2O2 decomposition, and applied c.d. on degradation kinetics and mineralization efficiency were examined A Microtox method toxicity assessment showed that solution toxicity was removed post-treatment. Exptl. results showed the enhanced DCF degradation rate for the Pyrite-EF process was attributed to mol. O activation induced by more surface-bound Fe2+ ions on FeS2, which generated superoxide anions which accelerated the Fe2+/Fe3+ cycle on the FeS2 surface, which favored H2O2 decomposition generating more OH radicals for DCF degradation via a heterogeneous EF-like process. Results findings provided new insights for mol. O activation induced by FeS2 and the subsequent heterogeneous Pyrite-EF degradation of organic pollutants in wastewater. This study involved multiple reactions and reactants, such as 4-Chlororesorcinol (cas: 95-88-5Quality Control of 4-Chlororesorcinol).

4-Chlororesorcinol (cas: 95-88-5) belongs to organic chlorides. Organic chlorides are compounds containing a carbon-chlorine bond, which are widely used in the oil field as a wax dissolver. While alkyl bromides and iodides are more reactive, alkyl chlorides tend to be less expensive and more readily available. Alkyl chlorides readily undergo attack by nucleophiles.Quality Control of 4-Chlororesorcinol

Referemce:
Chloride – Wikipedia,
Chlorides – an overview | ScienceDirect Topics