Experimental Assessment of Moringa Oleifera as an Environmentally Friendly Inhibitor Solution for Gas Hydrate Control

dc.contributor.authorSilas Oseme Okuma
dc.date.accessioned2026-02-10T18:22:57Z
dc.date.issued2025-05-19
dc.description.abstractResearch efforts have long been focused on developing low dose hydrate inhibitors (LDHIs) due to their accessibility, reduced quantity requirement, and cost-effectiveness. This study explores the potential of Moringa oleifera extract as an alternative LDHI, leveraging its established applications in the pharmaceutical and cosmetic industries. Utilizing a mini hydrate flow loop comprising 316 stainless steel pipes covered with polyvinyl chloride (PVC) mounted on a steel frame, hydrate formation conditions are simulated. Moringa Leaf Extract (MLE) concentrations of 0.02%, 0.04%, and 0.06% by water volume are compared against Methanol concentrations of 2%, 4%, and 6%. Performance evaluation entails analyzing pressure, temperature, inhibition efficiency, and pressure-time plots. Results indicate that 0.04wt% MLE surpasses all Methanol concentrations, exhibiting an inhibition efficiency of 60%, while the optimal Methanol concentration is found to be 2%, with an efficiency of 56.7%. MLE emerges as a promising alternative to traditional hydrate inhibitors, being readily available, environmentally friendly, and cost-effective.
dc.identifier.citationNdoma-egba, S., Uduefe, E. S., & Okuma, S. O. (2025). Experimental Assessment of Moringa Oleifera as an Environmentally Friendly Inhibitor Solution for Gas Hydrate Control. Journal of Materials Engineering, Structures and Computation, 4(2).
dc.identifier.issn1115-5825
dc.identifier.urihttps://repository.nmu.edu.ng/handle/123456789/388
dc.language.isoen
dc.publisherJournal of Materials Engineering, Structures and Computation
dc.subjectMoringa Oleifera
dc.subjectHydrate inhibitor
dc.subjectPhytochemicals
dc.subjectflowloop
dc.subjectHydrate formation
dc.titleExperimental Assessment of Moringa Oleifera as an Environmentally Friendly Inhibitor Solution for Gas Hydrate Control
dc.typeArticle

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