최소 단어 이상 선택하여야 합니다.
최대 10 단어까지만 선택 가능합니다.
다음과 같은 기능을 한번의 로그인으로 사용 할 수 있습니다.
NTIS 바로가기청정기술 = Clean technology, v.27 no.4, 2021년, pp.341 - 349
송동훈 (한국생산기술연구원 울산본부 친환경재료공정연구그룹) , 강조홍 (한국생산기술연구원 울산본부 친환경재료공정연구그룹) , 박현식 (한국생산기술연구원 울산본부 친환경재료공정연구그룹) , 송호준 (한국생산기술연구원 울산본부 친환경재료공정연구그룹) , 정용철 (부산대학교 화학공학과)
In combustion facilities, the nitrogen and sulfur in fossil fuels react with oxygen to generate air pollutants such as nitrogen oxides (NOX) and sulfur oxides (SOX), which are harmful to the human body and cause environmental pollution. There are regulations worldwide to reduce NOX and SOX, and vari...
Lee, S. I., Cho, K. C., and Shin, C. K., "Development of Magnetic Fluid Scrubber for NO X and SO X Gas," J. Korea Soc. Environ. Administration, 5(2), 429-436 (1999).
Gong, S. Y., Bae, H. J., Yoon, D. O., Hong, S. P., and Park, H. Y., "A Study on the Health Impact and Management Policy of PM2.5 in Korea I," Korea Enviroment Institute, Research Report, No. 2012-03, 1-209 (2012).
Kwon, J. M., and Lee, C. H., "Novel Adsorbent for Production of Ultra Low Sulfur Diesel," Theories and Applications of Chem. Eng., 12(2), 1717 (2006).
Park, M. S., Hong, R. J., and Han, N. H., "A Study on the International Instruments of Air Pollution Prevention from Ships," Maritime Law & Policy Review, 21(2), 1-36 (2009).
Lee, J. H., Kim, B. J., Jeon, S. B., Cho, J. H., Kang, M. K., and Oh, K. J., "Oxidation and Removal of NO Emission from Ship Using Hydrogen Peroxide Photolysis," Clean Technol., 23(3), 294-301 (2017).
Jung, Y. K., Lee, J. D., Park, N. K., and Lee, T. J., "Effect of Additives on Zinc-based Desulfurization Sorbents for hot Coal Gas Clean-up," J. Korean Ind. Eng. Chem, 7(1), 169-172 (2003).
Kim, S. J., "Low NO X Combustion Technology," Clean Technol., 2(1), 22-31 (1996).
Jeong, H. U., "Development of Funnel Integrated Type SO X Scrubber," BSNAK, 56(1), 34-38 (2019).
Burch, R., Halpin, E., and Sullivan, J., "A Comparison of the Selective Catalytic Reduction of NO X over Al 2 O 3 and Sulphated Al 2 O 3 Using CH 3 OH and C 3 H 8 as Reductants," Appl. Catal. B, 17(1-2), 115-129 (1998).
Pieterse, J. A. Z., van den Brink, R. W., Booneveld, F. A., and de Bruijn, F. A., "Influence of Zeolite Structure on the Activity and Durability of Co-Pd-zeolite Catalysts in the Reduction of NO X with Methane," Appl. Catal. B, 46(2), 239-250 (2003).
Bae, S. W., Roh, S. A., and Kim, S. D., "NO Removal by Reducing Agents and Additives in the Selective Non-catalytic Reduction (SNCR) process," Chemosphere, 65(1), 170-175 (2006).
Ma, X., Kaneko, T., Tashimo, T., Yoshida, T., and Kato, K., "Use of Limestone for SO 2 Removal from Flue Gas in the Semidry FGD Process with a Powder-particle Spouted Bed," Chem. Eng. J., 55(20), 4643-4652 (2000).
Sun, B., Dong, K., Zhao, W., Wang, J., Chu, G., Zhang, L., Zou, H., and Chen, J. F., "Simultaneous Absorption of NO X and SO 2 into Na 2 SO 3 Solution in a Rotating Packed Bed with Preoxidation by Ozone," Ind. Eng. Chem. Res., 58(19), 8332-8341 (2019).
Lee, S. K., and Cho, K. M., "A Circulating Fluidized Bed Scrubbing Technology for Dry Removal of the SO X and NO X of Coal Combustion Gases," KOES SPRING MEETING Proceeding, 69-74 (1999).
Shi, D., Sun, G., and Cui, Y., "Study on the Removal of NO from Flue Gas by Wet Scrubbing Using NaClO 3 ," J. Serb. Chem. Soc., 84(10), 1183-1192 (2019).
Zhao, Y., Liu, F., Guo, T., and Zhao, Y., "Experiments and Reaction Characteristics of Liquid Phase Simultaneous Removal of SO 2 and NO," Sci. China E, 52(6), 1768-1775 (2009).
Han, Z., Liu, B., Yang, S., Pan, X., and Yan, Z., "NO X Removal from Simulated Marine Exhaust Gas by Wet Scrubbing Using NaClO Solution," J. Chem., 2017, 1-10 (2017).
Brogren, C., Karlsson, H. T., and Bjerle, I., "Absorption of NO in an Alkaline Solution of KMnO 4 ," Chem. Eng. Technol., 20(6), 396-402 (1997).
Huang, H., Hu, H., Fan, M., Chen, J., Yuan, S., and Annanurov, S., "Mechanistic Research on NO Removal by K 2 S 2 O 8 with Electrochemical Catalysis," Chem. Eng. J., 382, 122873 (2020).
Ding, J., Zhong, Q., Zhang, S., Song, F., and Bu, Y., "Simultaneous Removal of NO X and SO 2 from Coal-fired Flue Gas by Catalytic Oxidation-removal Process with H 2 O 2 ," Chem. Eng. J., 243, 176-182 (2014).
Johansson, J., Heijnesson Hulten, A., Ajdari, S., Nilsson, P., Samuelsson, M., Normann, F., and Andersson, K., "Gas-Phase Chemistry of the NO-SO 2 -ClO 2 System Applied to Flue Gas Cleaning," Ind. Eng. Chem. Res., 57(43), 14347-14354 (2018).
Kang, M. S., Shin, J., Yu, T. U., and Hwang, J., "Simultaneous Removal of Gaseous NO X and SO 2 by Gas-phase Oxidation with Ozone and Wet Scrubbing with Sodium Hydroxide," Chem. Eng. J., 381, 122601 (2020).
Jang, J. H., Song, H. J., Ankur, G., Shin, S. B., Lee, J. H., Park, J. W., and Jang, H. Y., "Physicochemical Nitrate Removal for High Strength Industrial Wastewaters," Theor. Appl. Chem. Eng., 13(2), 1783-1786 (2007).
Chang, M. B., Lee, H. M., Wu, F., and Lai, C. R., "Simultaneous Removal of Nitrogen Oxide/Nitrogen Dioxide/Sulfur Dioxide from Gas Streams by Combined Plasma Scrubbing Technology," J. Air Waste Manage. Assoc., 54(8), 941-949 (2004).
Cha, H. S., "Present State and Future Prospect for Microbubble Technology," Bulletin of Food Technology, 22(3), 544-552 (2009).
Takahashi, M., Chiba, K., and Li, P., "Free-Radical Generation from Collapsing Microbubbles in the Absence of a Dynamic stimulus," J. Phys. Chem. B, 111(6), 1343-1347 (2007).
Shoji, T., Li, L., Abe, Y., Ogata, M., Ishimoto, Y., Gonda, R., Mashino, T., Mochizuki, M., Uemoto, M., and Miyata, N., "DMPO-OH Radical Formation from 5, 5-Dimethyl-1-pyrroline N-Oxide (DMPO) in Hot Water," Anal. Sci., 23(2), 219-221 (2007).
Adewuyi, Y. G., Khan, M. A., and Sakyi, N. Y., "Kinetics and Modeling of the Removal of Nitric Oxide by Aqueous Sodium Persulfate Simultaneously Activated by Temperature and Fe 2+ ," Ind. Eng. Chem. Res., 53(2), 828-839 (2014).
Lin, T. J., Tsuchiya, K., and Fan, L. S., "Bubble Flow Characteristics in Bubble Columns at Elevated Pressure and Temperature," AIChE J., 44(3), 545-560 (1998).
Wilhelm, E., Battino, R., and Wilcock, R. J., "Low-Pressure Solubility of Gases in Liquid Water," Chem. Rev., 77(2), 219-262 (1977).
Xiao, Z., Li, D., Zhu, Q., and Sun, Z., "Simultaneous Removal of NO and SO 2 through a New Wet Recycling Oxidation-reduction Process Utilizing Micro-nano Bubble Gas-liquid Dispersion System Based on Na 2 SO 3 ," Fuel (Lond), 263, 116682 (2020).
Takeuchi, H., Ando, M., and Kizawa, N., "Absorption of Nitrogen Oxides in Aqueous Sodium Sulfite and Bisulfite Solutions," Ind. Eng. Chem. Process Des. Dev., 16(3), 303-308 (1977).
Weisweiler, W., and Blumhofer, R., "Absorption of NO X in Aqueous Solutions of Na 2 SO 3 /NaHSO 3 and Simultaneous Absorption of NO X and SO 2 in NaOH (by means of a double stirred cell)," Ger. Chem. Eng, 4, 241-247 (1984).
Xiong, Y., Zeng, Y., Cai, W., Zhang, S., Ding, J., and Zhong, Q., "Experimental Study on Reaction Characteristics of NO in (NH 4 ) 2 SO 3 Solution," J. Ind. Eng. Chem., 65, 380-386 (2018).
Zhao, Y., Guo, T., Chen, Z., and Du, Y., "Simultaneous Removal of SO 2 and NO Using M/NaClO 2 Complex Absorbent," Chem. Eng. J., 160(1), 42-47 (2010).
Brogren, C., Karlsson, H. T., and Bjerle, I., "Absorption of NO in an Aqueous Solution of NaClO 2 ," Chem. Eng. Technol., 21(1), 61-70 (1998).
*원문 PDF 파일 및 링크정보가 존재하지 않을 경우 KISTI DDS 시스템에서 제공하는 원문복사서비스를 사용할 수 있습니다.
오픈액세스 학술지에 출판된 논문
※ AI-Helper는 부적절한 답변을 할 수 있습니다.