Skip to content
Open access

Acid-base bifunctional monolithic MOF catalyst for biodiesel production

Aug 2026 · Communications Materials · 0 citations

Abstract

The adoption of biofuel at scale is compromised by the cost and ethics of using edible oils in its production. However, the high free fatty acid content of inedible oils means these undergo saponification with current basic catalysts. Circumventing this issue with multi-step processing is commercially unattractive. In contrast, acid-base bifunctional catalysts offering one-pot biofuel production and straightforward product separation have emerged as a compelling technology. We report a novel monolithic (conformed) acid-base bifunctional zirconium-based MOF, mono UiO-66-NH 2 -SO 3 H-30. To achieve this, 2-aminobenzenedicarboxylic acid is reacted with Zr(IV), harnessing mercaptoacetic acid as a dual steric modulator and source of sulfonic acid sites when intermediate mono UiO-66-NH 2 -SH-30 is oxidized. The optimized bifunctional catalyst achieves a biodiesel yield of 97.3 ± 0.5%, compared to 93.5 ± 0.2% for its powdered analogue, under methanol-to-oil molar ratio 21.7:1, catalyst loading 6.3 wt%, reaction temperature 92 °C, and time 1.6 h. Data establish that catalyst bifunctionality enables simultaneous esterification and transesterification for transformation of inedible Jatropha curcas oil into ASTM-compliant biodiesel.

Read PDF

Similar papers

Sep 2026

Pt–Sb Bimetallic Catalysts for Base-Free Aerobic Oxidation of Diethylene Glycol to Diglycolic Acid

Diglycolic acid (DGA) has emerged as a promising feedstock for the synthesis of biomass-derived platform molecules, yet its high cost remains a major barrier to practical implementation. Hence, we developed a series of PtSb/CeO2 catalysts for the selective oxidation of diethylene glycol (DEG) to value-added DGA. Unde...

Yu-Jie Huang, Meng-Lu Cai, Xiao-Zhong Wang et al. · 0 citations
Review Open access Sep 2026

Which modification for which feedstock? a strategy-by-strategy review of Zr-MOF catalysts for biodiesel production

Catalyst design is central to producing sustainable biodiesel from waste feedstocks. Homogeneous bases such as NaOH and KOH are highly active but cause corrosion, saponification, and difficult separation, while conventional heterogeneous catalysts suffer from low surface area and poor tunability. Zirconium-based metal–...

B. Keshta, Eida S. Al-Farraj, Fatimah Bukola Shittu et al. · 0 citations
Open access Sep 2026

Bifunctional covalent organic framework as a heterogeneous acid photocatalyst for solvent-free microwave-assisted synthesis of isobornyl methacrylate

Isobornyl methacrylate (IBOMA) is a bio-based specialty monomer with broad applications in coatings, adhesives, and dental materials. However, its conventional synthesis via the acid-catalyzed esterification of camphene with methacrylic acid suffers from poor catalyst recyclability, corrosive waste generation, and low...

Quang Tam Huynh, Yu-Fang Lin, Q. T. Vo et al. · 0 citations
Aug 2026

Metal-Acid Balance Enables Earth-Abundant Metal Upcycling of Polyolefins to Jet Fuel.

Hydrocracking over bifunctional metal-acid catalysts offers a promising route for converting polyolefin waste into liquid fuels, but highly active and economically viable non-noble-metal catalysts remain scarce. Here we show that such catalysts can be developed by independently tuning metal and acid sites to balance th...

Ji-Cong Yan, Shu-Heng Tian, Qi Zhang et al. · 0 citations
Open access Sep 2026

Supported Bimetallic Pt/X Catalysts for the Hydrodeoxygenation of N ‐(2‐hydroxyethyl)Succinimide

Biomass presents an attractive resource for a sustainable production of platform chemicals and monomers. Especially N‐containing compounds are broadly utilized as solvents, in polymer production and as fine chemicals or pharmaceutics. An important compound is N‐vinyl‐pyrrolidone used for polyvinylpyrrolidone produc...

Matthias Urban, M. S. Lehnertz, Joby Sebastian et al. · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.