维普资讯 http://www.cqvip.com 中国电力 第40卷 [3]朱爱民,宫为民,刘书海,等.氨与脉冲电晕等离子体脱除S0:的 协同效应[J].中国环境科学,1997,17(1):37-4O. ZHU Ai-min,GONG Wei-rain,LIU Shu-hai,et a1.Syneric efgfect on S02 removal by pulsed corona w ammonia[J].China Environmental Science,1997,17(1):33 -40. 剂的研究进展[J].电力环境保护,2002,18(3):46—51. DENG De-bing,MA Xin-ling,XIANG Jun,et a1.Development of CuO/A1203 FGD technology and desulfurization sorbent[J].Electirc PowerEnvironmentl aProtection,2002,18(3):46-51. [8]DENG S G,LIN Y S.Synthesis,stability and sulfation properties of s0l-gel-derived regenerative sorbents for lfue gas desulfurization[J]. Ind Eng Chem Res,1996,35(4):1429-1437. [4]赵君科,王保健,任先文,等.脉冲电晕等离子体烟气脱硫工业试 验研究[J].中国工程科学,2002,4(2):74—78. ZHAO Jun-ke,WANG Bao-jin,REN Xian-awen,et a1.SO2 removal experiment from industril-ascale lue fgas using pulsed comna process [9]US Department of Energy.Technologies or fthe combined control of sulfur dioxide and nitrogen oxides emissions from coal-fied broilers [J].EngineeringScience,2002,4(2):74-78. [5]罗永刚,李大骥,杨亚非.活性炭联合脱硫脱硝工艺[J].热能动 力工程 2001,7(4):444—446. [R].TopicalReportNumber13,WashingtonDC,1999(5):8-18. [10]US Department of Energy.ABB environmental system SNOXTM lfue gas cleaningdemonstrationproject[R].ProjectPerformanceSummary, DOE ̄E-0395,Washington DC,1999(6):3-5. LUO Yong・gang,LI Da-ji,YANG Ya‘fei.Activated carbon・based combined desulfurization and denitrifieation technology[J].Journal ofEngineeringforThermalEnergyandPower,2001,7(4):444-446. [11]US Department of Energy.SO;NOx-RoxBoxTM flue gas cleanup demonstration project[R].Project Performance Summary,DOE/ FE-0395,Washington DC,1999(6):4-5. [6]WOODS M C,HARKINS S M,MA W T.The NOXSO flue gas treatment process:Simultaneous removal of NO and SO2 from lue f[12]姚强.洁净煤技术[M].北京:化学工业出版社,2005. gas[C]//Proceedings of the Intersociety Energy Conversion Engineering Conference,1990:161-170. YAO Qing.Claean coal technology[M].Beijing:Chemical Industry Press,2005. [7]邓德兵,马新灵,向 军,等.CuO/^J:O,烟气脱硫技术及其脱硫 (责任编辑孙家振) Process characteristic analysis on simultaneous desulfurization and deultriication ff0r coal—fired boilers DU Li-ming,LIU Jin-rong (School of Environment Science and Engineering,North China Electric Power University,Baoding 07 1003,China) Abstract:Several simultaneous desulfurization and denitriifcation technologies were introduced and analyzed.It includes two high-energy electronic activation and oxidization such as the electron beam with ammonia and pulsed corona with ammonia,and three solid phase absorbent/regenerate techniques such s actaivated carbon adsorption with ammonia,NOXSO techniue and CuO metqhod.The basic principles nd aprocess lfow of SNOX,SNRB craft gas/solid catalyst and wet simultaneous desulfurization and denitriifcation technologies were discussed.Based on speciifc industiral application and update development,the process characteristics,advantages and disadvantages were analyzed in detail.Compared wiht the single desulfurization or denitrification technology,the above mentioned simulaneoust technologies is f simploer process,limited coverage,less investment and production cost.Wid1 the increasingly strict requirements for SO2 and N emision, the integrated desulfurization and denitriifcation technology takes on prospective development in he tfuture. Key words:coal-fired boiler;,lfue gas;simultaneous desulfurization and denitriifcation 堆、快中子试验堆、磁约束核聚变研究等.继续推进“国际 热核实验反应堆计划”的国际合作。 ▲我国确定能源等技术为国际科技合作重点 领域节能和资源节约方面:合作重点包括工业节能技 ・・十一五”国际科技合作实施纲要提出.“十一五” 术、建筑节能技术、生活节能技术以及低能耗与新能源 期间(2006—20l0年1,中国国际科技合作将以发展能源、 汽车等。清洁生产和循环经济方面:合作重点包括重污染行业 水资源和环境保护技术为优先合作重点.努力为解决制约 国民经济发展的关键技术问题提供支撑。 清洁能源方面:合作重点包括清洁煤技术.石油、天然 气的开采与综合利用技术,以中国为主实施风能、太阳能、 生物质能等可再生能源国际合作计划.推进清洁发展机制 项目的国际合作 清洁生产关键技术和工艺、重点城市大气复合污染综合防 治技术与技术集成、固体废弃物的处理处置与综合利用技 术等。 。 水资源与矿产资源方面:合作重点包括水资源优化配 置技术、重点流域水污染防治技术与示范、节水技术、海水 先进核能开发与利用方面:合作重点包括高温气冷 淡化和综合利用技术以及复杂金属矿的关键技术等。