Synthesis of biosurfactants from polyethylene waste via an integrated chemical and biological process

Authors
Buhori, AchmadLee, JuwonCha, Min JiAhn, Jung HoHan, Sung OkChoi, Jae-WookKim, Kwang HoHa, Jeong-MyeongGong, GyeongtaekYoo, Chun-Jae
Issue Date
2024-10
Publisher
Elsevier BV
Citation
Journal of Environmental Chemical Engineering, v.12, no.5
Abstract
Polyethylene, as the predominant polymer produced globally, poses significant environmental challenges due to its resistance to natural decomposition. In this study, we introduce an innovative chemical-biological approach for transforming waste polyethylene into valuable biosurfactants. Our method involves hydrogenolysis using specially designed Ru/CeO2 catalysts, which efficiently convert polyethylene into alkanes while keeping methane selectivity below 5 %. This optimization ensures maximum feed availability for subsequent microbial processes. Notably, the produced chemical intermediates are directly utilized in the biological phase, eliminating the need for intermediate processing. Gordonia sp. JW21, selected for its exceptional alkane degradation capabilities, efficiently metabolizes a wide range of alkane structures, including extended alkyl chains. The microbial process culminates in the generation of high-value biosurfactants. This synergistic strategy not only offers an effective solution for polyethylene waste management but also sets a precedent for the sustainable production of biosurfactants.
Keywords
AMMONIA-SYNTHESIS ACTIVITY; CRUDE-OIL; PHYSICOCHEMICAL CHARACTERIZATION; CATALYZED HYDROGENOLYSIS; BIODEGRADATION; DEGRADATION; MECHANISM; ENZYMES; STRAIN; BIOREMEDIATION; Plastic upcycling; Waste valorization; Circular economy; Biosurfactant; Sustainable hybrid process
ISSN
2213-2929
URI
https://pubs.kist.re.kr/handle/201004/150205
DOI
10.1016/j.jece.2024.113322
Appears in Collections:
KIST Article > 2024
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