Related Experiment Video
Updated: Sep 5, 2026

Temperature-programmed Deoxygenation of Acetic Acid on Molybdenum Carbide Catalysts
Published on: February 7, 2017
Phosphate removal by spent low temperature shift catalyst through process optimization and mechanistic study
Fatma E A Hashem1, Abeer M Shoaib2, Walaa A E Omar2
1Chemical Engineering Department, Faculty of Engineering, The British University in Egypt, El-Shorouk City, Cairo, 11837, Egypt.
Abstract:
Natural water bodies become eutrophic due to phosphate pollution from industrial and agricultural sectors. This research addresses waste disposal and water pollution at the same time by recycling spent low-temperature shift catalyst (LTSSC) from the fertilizer industry as a sustainable phosphate adsorbent. High surface area (247 ± 5 m2/g), mesoporous structure, and many metal oxide sites (CuO 49%, ZnO 32.2%, and Al2O₃ 13.9%) were shown by characterization using XRF, XRD, BET, SEM-EDX, FTIR, particle size analysis, and zeta potential. Under optimum conditions (contact time 1.64 h, dose 5 g/L, initial concentration 9.58 mg/L, stirring 278 rpm), Response Surface Methodology optimization achieved 92.95 ± 2.8% phosphate removal. Chemisorption via inner-sphere complexation is established by endothermic spontaneous thermodynamics (ΔH° = 18.42 ± 1.3 kJ/mol, ΔG° = - 7.56 ± 0.6 kJ/mol, ΔS° = 36.6 ± 2.5 J/mol·K), FTIR-detected M-O-P bonds, XRD-confirmed crystalline AlPO₄ formation, and Langmuir isotherm (qmax = 0.174 ± 0.005 mg/g). Over 15 cycles, regeneration using 0.1 M NaOH demonstrated > 75% capacity retention. Heavy metal leaching tests showed concentrations below WHO/USEPA limits. The treatment cost, according to techno-economic study, is $0.52/m3, which is less than that of commercial adsorbents. This study shows how to use a circular economy method to address two environmental concerns by turning hazardous industrial waste into usable phosphate adsorbent.
More Related Videos
07:20Discovery and Synthesis Optimization of Isoreticular Al(III) Phosphonate-Based Metal-Organic Framework Compounds Using High-Throughput Methods
Published on: October 6, 2023
08:21Optimized Procedure for Determining the Adsorption of Phosphonates onto Granular Ferric Hydroxide using a Miniaturized Phosphorus Determination Method
Published on: May 18, 2018