Mechanochemical Reaction of DDT with Calcium Oxide

Annegret K. Hall, Jack M. Harrowfield, R. J. Hart, Paul G. McCormick

Environmental Science & Technology · 1996 · 116 citations · 11 references

Concepts

Abstract

Evidence is presented that, in the mechanochemical destruction of DDT [2,2-bis(4-chlorophenyl)- 1,1,1-trichloroethane] by ball milling in the presence of calcium oxide, a complex series of reactions occurs along the pathway to a product that appears to be essentially graphitic, though aromatic chloro and hydroxy substituents are retained to some degree. The production of the various intermediates can be understood in terms of processes initiated at both CaO and steel (of the milling device) surfaces. With the exception of DDE [2,2-bis(4-chlorophenyl)- 1,1-dichloroethene], most of these intermediates attain maximum concentrations corresponding to <1 mol % of the original DDT and have been characterized only by their mass spectra. In the case of dichlorotolane [bis(4-chlorophenyl)ethyne], however, yields are sufficient for it to be isolated chromatographically as a pure, crystalline solid and characterized further by NMR spectroscopy. After 12 h of milling, no organic materials volatile enough to be detected by conventional GC/MS procedures are present, but the black, graphitic residue does retain some chlorine that is only slowly removed by extended milling.

References

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