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◆ GCB Bioenergy2026-04-02· Biodiesel

Energy and Environmental Performance of Biodiesel Derived From Waste Vegetable and Animal Oils: Integrated Energy Balance, Process Optimization, and Feasibility Assessment

Atour Hamid, Hussein Fawzi Hussein, Emad Jaleel Mahdi

原始摘要(英文原文)· Original abstract
ABSTRACT This study quantifies the full energy and environmental performance of biodiesel produced from waste vegetable and animal oils (WVO/WAO) using a rigorously defined system boundary that covers feedstock collection and transport to the processing site, pre‐treatment, transesterification, phase separation, and washing/drying up to the plant gate. A transparent energy accounting framework was developed to apportion primary energy inputs associated with methanol consumption, transport diesel, electricity, and catalyst use, while explicitly propagating ±5% measurement uncertainty into the net energy ratio (NER). Experiments and reconciled calculations based on representative 75‐gal feedstock batches produced approximately 70–75 gal of specification‐compliant biodiesel (ASTM/EN), with glycerin co‐product credits treated conservatively. The representative batch yielded a Net Energy Ratio (NER) of 7.67, while sensitivity and optimization scenarios indicate that NER can approach approximately 7.8–8.2 (median ≈8.0), confirming a strong positive energy return that exceeds typical values reported for biodiesel derived from virgin vegetable oils and remains substantially higher than fossil diesel benchmarks.
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Energy and Environmental Performance of Biodiesel Derived From Waste Vegetable and Animal Oils: Integrated Energy Balance, Process Optimization, and Feasibility Assessment — 科研速览 Science Skim