2009
DOI: 10.1089/ees.2008.0282
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Combination of Nonthermal Plasma and Low Temperature-C3H8-Selective Catalytic Reduction over Co-In/H-beta Catalyst for Nitric Oxide Abatement

Abstract: Nitric oxide (NO x ) abatement by a two-stage system composed of nonthermal plasma (NTP) followed by the selective catalytic reduction with C 3 H 8 (C 3 H 8 -SCR) over the Co-In=H-beta catalyst was investigated at a relativity low temperature range from 548 to 598 K. The combination system shows better synergy at low temperature. Optimum active temperature of Co-In=H-beta in the complex system is shifted from 648 to 598 K compared with that in C 3 H 8 -SCR. The highest NO x conversion is over 98%. In contrast … Show more

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Cited by 6 publications
(6 citation statements)
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References 33 publications
(24 reference statements)
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“…For Co-In/H-Beta and Co-In/H-USY, the synergetic effect showed at temperatures from 548 to 623 K and from 523 to 573 K, respectively. According to our and other studies [9,16,24], the NO 2 formed through NO oxidation in the plasma is more susceptible to HC-SCR at low temperatures. In the HC-SCR reaction, the formation of NO 2 is the first important step [25][26][27], and subsequently the resulting NO 2 reacts with hydrocarbon-derived species to form N 2 [28] or the key intermediate species (e.g.…”
Section: Promotion Of Ntpsupporting
confidence: 57%
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“…For Co-In/H-Beta and Co-In/H-USY, the synergetic effect showed at temperatures from 548 to 623 K and from 523 to 573 K, respectively. According to our and other studies [9,16,24], the NO 2 formed through NO oxidation in the plasma is more susceptible to HC-SCR at low temperatures. In the HC-SCR reaction, the formation of NO 2 is the first important step [25][26][27], and subsequently the resulting NO 2 reacts with hydrocarbon-derived species to form N 2 [28] or the key intermediate species (e.g.…”
Section: Promotion Of Ntpsupporting
confidence: 57%
“…The detailed setup of the PF-C 3 H 8 -SCR hybrid system, which consists of a dielectric barrier discharge (DBD) plasma reactor and a fixed-bed catalytic microreactor, was described in our previous paper [9]. Approximately 3 mL of catalyst powder (weight: 1.8051 g Co-In/H-(Beta/USY), 1.8186 g Co-In/H-Beta, and 1.7902 g Co-In/H-USY) was held on a quartz frit at the center of the SCR reactor.…”
Section: Methodsmentioning
confidence: 99%
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“…Beta zeolite with an atomic ratio Si/Al = 25 was purchased commercially in H-form from Nankai University (Tianjin, China). Co-Zn/H-Beta catalysts were synthesized according to the method described elsewhere [40], using Co(NO 3 ) 2 and Zn(NO 3 ) 2 as precursors. All the chemicals were purchased from Macklin Inc. (Shanghai, China).…”
Section: Catalyst Preparationmentioning
confidence: 99%