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다양한 등급의 17종 석탄의 CO<sub>2</sub> 가스화 반응특성 연구
김수현,유지호,전동혁,이시훈,이영우,Kim, Soohyun,Yoo, Jiho,Chun, Donghyuk,Lee, Sihyun,Rhee, Young Woo 한국청정기술학회 2013 청정기술 Vol.19 No.3
휘발분 21~57 wt%를 포함하는 17종의 다양한 등급의 석탄에 대하여 $CO_2$ 가스화 반응을 수행하였다. TGA를 이용하여 $CO_2$ 가스화 반응을 실시한 후 열분해 조건($N_2$)에서의 거동과 비교하였다. $N_2$ 분위기에서 온도 증가에 따른 무게 감량은 석탄 내 휘발분 함량에 비례하였고, $CO_2$가스화 반응성도 휘발분 증가에 따라 증가하였으나 열분해 대비 분산된 모습을 보였다. 석탄 내 산소 기능기들은 상대적으로 반응성이 크며, 이에 따라 O/C 비율의 증가는 $CO_2$ 가스화 반응성의 증가로 나타났다. 하지만 H/C 비율 및 가스화 반응의 촉매 역할을 담당할 수 있는 회분의 함량은 $CO_2$ 반응성과 유의할만한 상관관계를 나타내지 않았다. 이러한 반응 특징은 수증기 가스화 반응과 유사하였으며 고정층 반응기에서 얻어진 $CO_2$ 가스화 결과와 일치하였다. This paper presents results on $CO_2$ gasification of 17 raw coals containing a wide range of volatile matter (21-57 wt%). The gasification is performed using a TGA under $CO_2$ and also under $N_2$ atmosphere. An amount of weight loss with increasing temperature is proportional to that of volatile matter in a coal under $N_2$ atmosphere. Reactivity of $CO_2$ gasification also increases with a content of volatile matter. However, the correlation is a little scattered. Oxygenated functional groups in a coal are generally reactive and therefore, an increase in O/C ratio leads to enhanced reactivity. However, $CO_2$ reactivity is affected by neither H/C ratio nor a content of ashes that possibly activate the gasification reaction. These findings are also applicable to steam coal gasification and the reactivity series are confirmed in the test at a fixed bed reactor.
고정층 흡착탑에서 다성분 휘발성 유기화합물의 활성탄 흡착 특성
조종훈 ( Jong Hoon Cho ),이시훈 ( Sihyun Lee ),이영우 ( Young Woo Rhee ) 한국화학공학회 2016 Korean Chemical Engineering Research(HWAHAK KONGHA Vol.54 No.2
This study aims to examine absorption characteristics of toluene, isopropyl alcohol (IPA), ethyl acetate (EA), and ternary-compounds, all of which are widely used in industrial processes, by means of four types of commercial activated carbon substances. It turned out that among the three types of volatile organic compounds, the breakthrough point of activated carbon and that of IPA, whose affinity was the lowest, were the lowest, and then that of EA and that of toluene in the order. With the breakthrough point of IPA, which was the shortest, as the standard, changes in the breakthrough points of unary-compounds, binary-compounds, and ternary-compounds were examined. As a result, it turned out that the larger the number of elements, the lower the breakthrough point. This resulted from competitive adsorption, that is, substitution of substances with a low level of affinity with those with a high level of affinity. Hence, the adsorption of toluene-IPA-EA and ternary-compounds require a design of the activated carbon bed based on the breakthrough of IPA, and in the design of activated carbon beds in actual industries as well, a substance whose level of affinity is the lowest needs to be the standard.
유다연(Dayeon Yu),이천성(Cheonseong Lee),김성곤(Songgon Kim),이병화(Byounghwa Lee),송주헌(Juhun Song),장영준(Youngjune Chang),이시훈(Sihyun Lee),전충환(Chunghwan Jeon) 대한기계학회 2010 대한기계학회 춘추학술대회 Vol.2010 No.11
In order to investigate devolatilization characteristics for ashless coal with relatively low ash content and high heating value, an experiment was performed in different bed configurations of TGA and DTF(Drop Tube Furnace) at atmospheric pressure condition. The heating rate was 10℃/min up to 950℃ in TGA, while temperatures varied from 500 to 1300℃ in DTF. A weight loss and particle temperature were obtained to be used for kinetic analysis of the devolatilization. The kinetic parameters including an activation energy and pre-exponential factor for ashless coal were obtained using Coats-Redfern method in TGA and single step method in DTF. Furthermore, the devolatilization kinetics of the ashless coal were compared with the results of different kinds of conventional coal such as sub-bituminous and bituminous.