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The most favorable corrosion prevention ingredient was calcium acetate because its resistance value was lower than that of the calcium acetate-sodium chloride mixture.
A rapid test using a EGME-water-sodium chloride mixture for screening corrosion inhibitive pigments is outlined.
Conventional fluxing operation is done on wire surface using zinc and ammonium chloride mixture before dipping in molten zinc bath.
Finally, the developed modified electrode was successfully applied in the potentiometric titration of bromide and chloride mixture and direct determination of silver content in radiological film and different environmental water samples with satisfactory results.
The discharge kinetics of cadmium, cobalt and silver ions during the phase transition of the solvent (lithium chloride potassium chloride mixture) from solid to molten state has been studied.
A polypyrrole-mercury/mercury chloride reference electrode was initially constructed by in situ electropolymerization of pyrrole on a mercury pool anode in a 0.5 M sodium para-toluene sulfonate and 1.0 M sodium chloride mixture solution.
Similar(49)
Two electrochemical techniques, potentiodynamic polarisation (PP) and electrochemical impedance spectroscopy (EIS), were used to evaluate AA2024-T3 corrosinn in 0.1 M NaCl with the addition of 10−3 M of rare earth chloride mixtures at time periods up to 18 h.
Solubilities of bivalent metal oxides in molten alkalinc chloride mixtures at 600 and 700°C have been studied by potentiometric titration techniques using an oxygen electrode Pt(O2)|ZrO2.
Experiments in a laboratory scale reactor, which are carried out for the oxidation of ethene/methyl chloride mixtures, reveal a complex nonlinear reactor behavior.
The electrochemical interfaces of several deep eutectic solvents based on choline chloride mixtures with 1,2-ethanediol, 1,2-propanediol, 1,3-propanediol, urea or thiourea, and mixtures of acetylcholine chloride with urea were studied at a Hg electrode.
A potentiometric titration method was used to determine the solubility products (pP=−log P) of some oxides at 700°C in molten chloride mixtures of the following compositions, CaC12 KCl (0.235:0.765); SrCl2–KCl–Nand (0.22:0.42:0.36); BaCl2 KCl–NaCl (0.43:0.29:0.28); and BaCl2 KCl (0.26:0.74).
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CEO of Professional Science Editing for Scientists @ prosciediting.com