Pilot-scale evaluation of a novel TiO-supported VO catalyst for DeNOx at low temperatures at a waste incinerator.

Waste Manag

Center for Environment, Health and Welfare Research, Korea Institute of Science and Technology, 5 Hwarang-ro 14-gil, Seongbuk-gu, Seoul 02792, Republic of Korea; Green School (Graduate School of Energy and Environment), Korea University-KIST, 145 Anam-ro, Seongbuk-gu, Seoul 136-701, Republic of Korea. Electronic address:

Published: March 2017

The removal of NOx by catalytic technology at low temperatures is significant for treatment of flue gas in waste incineration plants, especially at temperatures below 200°C. A novel highly active TiO-supported vanadium oxide catalyst at low temperatures (200-250°C) has been developed for the selective catalytic reduction (SCR) de-NOx process with ammonia. The catalyst was evaluated in a pilot-scale equipment, and the results were compared with those obtained in our previous work using laboratory scale (small volume test) equipment as well as bench-scale laboratory equipment. In the present work, we have performed our experiments in pilot scale equipment using a part of effluent flue gas that was obtained from flue gas cleaning equipment in a full-scale waste incineration plant in South Korea. Based on our previous work, we have prepared a TiO-supported VO catalyst coated (with a loading of 7wt% of impregnated VO) on a honeycomb cordierite monolith to remove NOx from a waste incinerator flue gas at low temperatures. The NOx (nitrogen oxides) removal efficiency of the SCR catalyst bed was measured in a catalyst fixed-bed reactor (flow rate: 100mh) using real exhaust gas from the waste incinerator. The experimental results showed that the VO/TiO SCR catalyst exhibited good DeNOx performance (over 98% conversion at an operating temperature of 300°C, 95% at 250°C, and 70% at 200°C), and was much better than the performance of commercial SCR catalysts (as low as 55% conversion at 250°C) under the same operating conditions.

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Source
http://dx.doi.org/10.1016/j.wasman.2016.11.006DOI Listing

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