Mechanisms Involved in the Recycling of NR and EPDM

Author:

Verbruggen M. A. L.1,van der Does L.1,Noordermeer J. W. M.1,van Duin M.2,Manuel H. J.3

Affiliation:

1. 1University of Twente, P.O. Box 217, 7500 AE Enschede, the Netherlands

2. 2DSM Research, P.O. Box 18, 6160 MD, Geleen, the Netherlands

3. 3Vredestein Rubber Recycling, P.O. Box 437, 6200 AK Maastricht, the Netherlands

Abstract

Abstract The thermochemical recycling of natural rubber (NR) and ethylene-propylene-diene rubber (EPDM) vulcanizates with disulfides was studied. NR sulfur vulcanizates were completely plasticized when heated with diphenyldisulfide at 200 °C. It could be concluded that both main chain scission and crosslink scission caused the network breakdown. NR peroxide vulcanizates were less reactive towards disulfide at 200 °C, and only reacted through main chain scission. For EPDM a temperature range of 200–275 °C was studied. In the presence of diphenyldisulfide at 200 °C there was almost no devulcanization of EPDM sulfur vulcanizates, and at 225 and 250 °C there was only slightly more devulcanization. A decrease in crosslink density of 90% was found when 2×10−4 mol diphenyldisulfide/cm3 vulcanizate was added and the EPDM sulfur vulcanizates were heated to 275 °C. EPDM peroxide vulcanizates showed a decrease in crosslink density of ca. 40% under the same conditions. The lower reactivity of EPDM towards disulfide compared with NR is the result of higher crosslink densities, the presence of a higher percentage of more stable monosulfidic crosslinks and the fact that EPDM is less apt to main chain scission relative to NR.

Publisher

Rubber Division, ACS

Subject

Materials Chemistry,Polymers and Plastics

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