November 2023

Conference Paper

Swell Behavior of Elastomers with a Hydrothermal Liquefaction Bio-Crude and a Fast Pyrolysis Bio-Oil

By:
Kass, Michael D; Janke, Christopher J; Sulejmanovic, Dino ; Jun, Jiheon ; Warrington, Gavin; Keiser, James R
Page Number:
1-13
Issue Number:
x
Book Title:
CORROSION 2021
Publication Date:
November 9, 2023
Publisher Location:
NACE, District of Columbia, United States of America
Conference Name:
CORROSION 2021 Corrosion Conference and Expo
Conference Location:
Salt Lake City, Utah, United States of America
Conference Sponsor:
NACE International

Abstract

The compatibility of seventeen elastomer materials with two heavy biofuels (fast pyrolysis bio-oil and hydrothermal liquefaction (HTL) bio-crude) and diesel was assessed through volume change measurements. The elastomers included two fluorocarbons, six acrylonitrile rubbers (NBRs), and one each of fluorosilicone, neoprene, polyurethane, silicone, epichlorohydrin rubber (ECO), a blend of polyvinyl chloride and NBR (OZO), styrene butadiene rubber (SBR), hydrogenated NBR (HNBR) and ethylene propylene diene monomer (EPDM). The specimens were immersed in each test fuel for four weeks at 50°C and then measured for volume change. Afterwards, the specimens were dried, and the volume was remeasured. Ingeneral, the bio-oil produced unacceptable swelling in the fluoroelastomers, ECO, OZO, neoprene, polyurethane, SBR, HNBR, EPDM, silicone and five of the NBRs. In most cases, the HTL bio-crude produced lower (though still unacceptable) swelling than the bio-oil. Materials that showed good compatibility with the HTL biocrude were the fluoroelastomers, OZO, and silicone.