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Reduction of nitrogen oxide emissions using nickel-copper alloy catalyst in diesel engines
Results of experiments conducted for the reduction of NO sub x in diesel engine exhaust using Ni-Cu alloy, marketed under the name Monel, are reported. At temperatures > 600K, and space velocities up to 40 000 h exp -1 , Monel is found to reduce approx70% of NO sub x in diesel engine exhaust. Mon...
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Published in: | Indian journal of engineering and materials sciences 1995-08, Vol.2 (4), p.167-171 |
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container_issue | 4 |
container_start_page | 167 |
container_title | Indian journal of engineering and materials sciences |
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creator | NEDUNCHEZHIAN, N BALAGURUNATHAN, K SRINIVASA RAO, P GANESAN, V |
description | Results of experiments conducted for the reduction of NO sub x in diesel engine exhaust using Ni-Cu alloy, marketed under the name Monel, are reported. At temperatures > 600K, and space velocities up to 40 000 h exp -1 , Monel is found to reduce approx70% of NO sub x in diesel engine exhaust. Monel in wire form, have been used for minimized swelling effect and thereby increasing its life, as the catalyst life is limited by physical deteriorations of catalyst, which causes increase in exhaust back pressure. Study on warmup characteristics of the catalyst show rapid bed warmup and possible reduction in catalyst mass without affecting the NO sub x reduction performance. |
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At temperatures > 600K, and space velocities up to 40 000 h exp -1 , Monel is found to reduce approx70% of NO sub x in diesel engine exhaust. Monel in wire form, have been used for minimized swelling effect and thereby increasing its life, as the catalyst life is limited by physical deteriorations of catalyst, which causes increase in exhaust back pressure. Study on warmup characteristics of the catalyst show rapid bed warmup and possible reduction in catalyst mass without affecting the NO sub x reduction performance.</description><identifier>ISSN: 0971-4588</identifier><language>eng</language><publisher>New Delhi: Council of Scientific & Industrial Research</publisher><subject>Air pollution caused by fuel industries ; Applied sciences ; Energy ; Energy. 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At temperatures > 600K, and space velocities up to 40 000 h exp -1 , Monel is found to reduce approx70% of NO sub x in diesel engine exhaust. Monel in wire form, have been used for minimized swelling effect and thereby increasing its life, as the catalyst life is limited by physical deteriorations of catalyst, which causes increase in exhaust back pressure. Study on warmup characteristics of the catalyst show rapid bed warmup and possible reduction in catalyst mass without affecting the NO sub x reduction performance.</description><subject>Air pollution caused by fuel industries</subject><subject>Applied sciences</subject><subject>Energy</subject><subject>Energy. 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At temperatures > 600K, and space velocities up to 40 000 h exp -1 , Monel is found to reduce approx70% of NO sub x in diesel engine exhaust. Monel in wire form, have been used for minimized swelling effect and thereby increasing its life, as the catalyst life is limited by physical deteriorations of catalyst, which causes increase in exhaust back pressure. Study on warmup characteristics of the catalyst show rapid bed warmup and possible reduction in catalyst mass without affecting the NO sub x reduction performance.</abstract><cop>New Delhi</cop><pub>Council of Scientific & Industrial Research</pub><tpages>5</tpages></addata></record> |
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issn | 0971-4588 |
language | eng |
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source | Freely Accessible Journals |
subjects | Air pollution caused by fuel industries Applied sciences Energy Energy. Thermal use of fuels Exact sciences and technology Pollution reduction Stack gas and industrial effluent processing |
title | Reduction of nitrogen oxide emissions using nickel-copper alloy catalyst in diesel engines |
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