The electrochemical reduction characteristics of nitrobenzene were investigated using cyclic voltammetry. Performance & security by Cloudflare, Please complete the security check to access. To reduce nitrobenzene directly at the copper electrode is easier than to reduce it by the hydrogen evolved at cathode, copper could be regarded as the electrocatalyst in this case. The reduction of the nitrobenzene compounds (NBCs) by the catalyzed Fe-Cu process and the relationship between the electrochemical reduction characteristics of NBCs at copper electrode and reduction rate were studied in alkaline medium (pH=11). 2.Alkaline medium:-When reduced in alkaline medium,nitro benzene forms some intermediate products like Nitrosobenzene and Phenyl hydroxylamine which undergo bi-molecular condensation reaction. Cloudflare Ray ID: 5f7c72e9dab0082c Copyright © 2005 Elsevier B.V. All rights reserved. • Electrocatalytic reduction of nitrobenzene using TiO2 nanotube electrodes with different morphologies: Kinetics, mechanism, and degradation pathways. https://doi.org/10.1016/j.jhazmat.2005.04.011. In addition, the difference in reduction mechanisms between Master Builders’ iron and the catalyzed Fe–Cu process was discussed in this paper. Reduction of aromatic nitro compounds to primary amines has been carried out with hydrazine hydrate under moderate nitrogen pressure. Another way to prevent getting this page in the future is to use Privacy Pass. Copyright © 2020 Elsevier B.V. or its licensors or contributors. • If you are at an office or shared network, you can ask the network administrator to run a scan across the network looking for misconfigured or infected devices. These react with each other in alkaline medium to first form azoxybenzene, then azobenzene and finally hydrazobenzene. If you are on a personal connection, like at home, you can run an anti-virus scan on your device to make sure it is not infected with malware. If you are on a personal connection, like at home, you can run an anti-virus scan on your device to make sure it is not infected with malware. Reduction in Alkaline medium Reduction of nitro group in alkaline medium first forms nitrosobenzene and phenyl hydroxylamine. Performance & security by Cloudflare, Please complete the security check to access. Your IP: 64.250.91.98 Another way to prevent getting this page in the future is to use Privacy Pass. Cloudflare Ray ID: 5f7c72585b8f855e This advantage was particular noticeable under alkaline conditions. Completing the CAPTCHA proves you are a human and gives you temporary access to the web property. The results showed that nitrobenzene was reduced directly on the surface of copper rather than by the hydrogen evolved at cathode in the catalyzed Fe–Cu process. • The reduction was realized largely by the hydrogen evolved at cathode in Master Builders’ iron. Reduction of nitrobenzene is proposed to occur by a succession of two electron steps as shown below.The second step of this reaction has been proposed as a reversible reaction. Completing the CAPTCHA proves you are a human and gives you temporary access to the web property. ScienceDirect ® is a registered trademark of Elsevier B.V. ScienceDirect ® is a registered trademark of Elsevier B.V. Your IP: 51.255.203.190 pH of alkaline nitrobenzene-containing wastewater does not need to be adjusted to 2–3 before it is treated by the catalyzed Fe–Cu process. This phenomenon was basically caused by the difference in reduction mechanisms between these two technologies . If you are at an office or shared network, you can ask the network administrator to run a scan across the network looking for misconfigured or infected devices. The catalyzed Fe–Cu process was superior to Master Builders’ iron in treating nitrobenzene-containing water, withal. 13. The mechanism of the reduction of nitrobenzene in DMF/TEAP differs from that reported at a Cu cathode (covered with oxides – cathode polished in air) in basic methanol-water. The catalyzed Fe–Cu process is of practical value. We use cookies to help provide and enhance our service and tailor content and ads. The influence of copper usage on the treatment efficiency by the catalyzed Fe–Cu process was also studied. The number of sigma (σ) and pi (pi) bonds in 'X' is: Under optimized 'reaction conditions of 2.0 MPa of nitrogen pressure at ISO"C nitrobenzene is reduced to aniline in 89.7% yield. The reduction was investigated in the cathode and anode compartments, respectively, and the experimental results showed that the direct pathway had a large role in the reduction by the catalyzed Fe–Cu process.

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