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Merck

Energy characterisation of ultrasonic systems for industrial processes.

Ultrasonics (2014-12-03)
Raed A Al-Juboori, Talal Yusaf, Leslie Bowtell, Vasantha Aravinthan
ABSTRACT

Obtaining accurate power characteristics of ultrasonic treatment systems is an important step towards their industrial scalability. Calorimetric measurements are most commonly used for quantifying the dissipated ultrasonic power. However, accuracy of these measurements is affected by various heat losses, especially when working at high power densities. In this work, electrical power measurements were conducted at all locations in the piezoelectric ultrasonic system equipped with ½″ and ¾″ probes. A set of heat transfer calculations were developed to estimate the convection heat losses from the reaction solution. Chemical dosimeters represented by the oxidation of potassium iodide, Fricke solution and 4-nitrophenol were used to chemically correlate the effect of various electrical amplitudes and treatment regimes. This allowed estimation of sonochemical-efficiency (SE) and energy conversion (XUS) of the ultrasonic system. Results of this study showed overall conversion efficiencies of 60-70%. This correlated well with the chemical dosimeter yield curves of both organic and inorganic aqueous solutions. All dosimeters showed bubble shielding and coalescence effects at higher ultrasonic power levels, less pronounced for the ½″ probe case. SE and XUS values in the range of 10(-10) mol/J and 10(-3) J/J respectively confirmed that conversion of ultrasonic power to chemical yield declined with amplitude.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
4-Nitrophenol solution, 10 mM
Iron, IRMM®, certified reference material, 0.5 mm wire
Sigma-Aldrich
4-Nitrophenol, ReagentPlus®, ≥99%
Sigma-Aldrich
4-Nitrophenol, spectrophotometric grade
Supelco
4-Nitrophenol, PESTANAL®, analytical standard
Supelco
Acetaminophen Related Compound F, Pharmaceutical Secondary Standard; Certified Reference Material
Sigma-Aldrich
Iron, foil, thickness 0.1 mm, ≥99.9% trace metals basis
Iron, rod, 25mm, diameter 10.0mm, as drawn, 99.99+%
Iron, rod, 100mm, diameter 100mm, as drawn, armcO« soft ingot 99.8%
Sigma-Aldrich
Iron, puriss. p.a., carbonyl-Iron powder, low in magnesium and manganese compounds, ≥99.5% (RT)
Iron, rod, 100mm, diameter 30mm, as drawn, armcO« soft ingot 99.8%
Iron, rod, 100mm, diameter 2.0mm, as drawn, 99.95%
Iron, foil, 25x25mm, thickness 1.0mm, as rolled, 99.5%
Iron, foil, 100x100mm, thickness 2.0mm, as rolled, 99.95%
Iron, foil, 300x300mm, thickness 0.1mm, hard, 99.5%
Iron, wire reel, 1m, diameter 0.5mm, as drawn, 99.95%
Iron, foil, 5m coil, thickness 0.1mm, hard, 99.5%
Iron, foil, 10m coil, thickness 0.25mm, hard, 99.5%
Iron, rod, 50mm, diameter 5.0mm, as drawn, 99.99+%
Sigma-Aldrich
Iron, chips, 99.98% trace metals basis
Iron, wire reel, 5m, diameter 0.5mm, hard, 99.99+%
Iron, rod, 100mm, diameter 30mm, as drawn, 98+%
Iron, rod, 500mm, diameter 19mm, as drawn, soft ingot 99.8%
Iron, rod, 200mm, diameter 50mm, as drawn, 98+%
Iron, rod, 300mm, diameter 6.0mm, as drawn, 99.99+%
Iron, tube, 1000mm, outside diameter 12.0mm, inside diameter 9mm, wall thickness 1.5mm, annealed, 99.5%
Iron, rod, 100mm, diameter 40mm, as drawn, armcO« soft ingot 99.8%
Iron, foil, 25x25mm, thickness 0.20mm, hard, 99.5%
Iron, rod, 200mm, diameter 50mm, as drawn, armcO« soft ingot 99.8%
Iron, rod, 100mm, diameter 4.8mm, as drawn, 98+%