会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 5. 发明授权
    • Selective catalytic reduction of NOx enabled by sidestream urea decomposition
    • 通过侧流尿素分解进行NOx的选择性催化还原
    • US07829033B2
    • 2010-11-09
    • US11275989
    • 2006-02-08
    • William H. SunWilliam E. Cummings, Jr.Piers de HavillandPaul G. CarmignaniJohn M. Boyle
    • William H. SunWilliam E. Cummings, Jr.Piers de HavillandPaul G. CarmignaniJohn M. Boyle
    • B01D53/34B01D53/56B01D53/86B01D50/00B01J8/00C01B21/00F01N3/00F01N3/10
    • B01D53/8631B01D53/90
    • A preferred apparatus arrangement utilizes the enthalpy of the flue gas, which can be supplemented if need be, to convert urea (30) into ammonia for SCR. Urea (30), which decomposes at temperatures above 140 .degree. C., is injected (32) into a flue gas stream split off (28) after a heat exchanger (22), such as a primary superheater or an economizer. Ideally, the side stream would gasify the urea without need for further heating; but, when heat is required it is far less than would be needed to heat either the entire effluent (23) or the urea (30). This side stream, typically less than 3% of the flue gas, provides the required temperature and residence time for complete decomposition of urea (30). A cyclonic separator can be used to remove particulates and completely mix the reagent and flue gas. This stream can then be directed to an injection grid (37) ahead of SCR using a blower (36). The mixing with the flue gas is facilitated due to an order of magnitude higher mass of side stream compared to that injected through the AIG in a traditional ammonia-SCR process.
    • 优选的装置装置利用烟道气的焓,如果需要,可以补充将尿素(30)转化成氨用于SCR。 尿素(30),其在高于140℃的温度下分解。 在诸如初级过热器或节能器的热交换器(22)之后,将(32)注入(32)到分离(28)的烟道气流中。 理想地,侧流将气化尿素而不需要进一步加热; 但是当需要加热时,它远远小于加热整个流出物(23)或尿素(30)所需要的热量。 通常小于3%烟道气的侧流提供了完全分解尿素(30)所需的温度和停留时间。 旋风分离器可用于除去微粒并完全混合试剂和烟道气。 然后可以使用鼓风机(36)将该流引导到SCR前方的注入格栅(37)。 与通过传统氨SCR工艺中的AIG注入的侧流相比,与烟道气的混合更容易。
    • 8. 发明申请
    • Selective Catalytic NOx Reduction Process and Control System
    • 选择性催化NOx还原过程和控制系统
    • US20100061907A1
    • 2010-03-11
    • US12266373
    • 2008-11-06
    • William H. SunPaul G. CarmignaniJohn M. Boyle
    • William H. SunPaul G. CarmignaniJohn M. Boyle
    • B01D53/56
    • B01D53/8625B01D53/8696B01D53/90B01D2251/2067F23J15/003F23J2219/10
    • Disclosed is a system which enables the efficient utilization of urea for selective catalytic reduction (SCR) of NOx by gasifying it and feeding it to a plurality of selective catalytic reduction units associated with a plurality of gas turbines. The invention enables feeding a gasified product of the urea with the ability to fully control separate SCR units without excessive reagent usage or loss of pollution control effectiveness. Controllers determine the amount of reagent required for each turbine to control NOx emissions and then mixes the gasified urea with the correct amount of carrier gas for efficient operation of each separate SCR unit despite the demand variation between the turbines. In this manner the gasification unit can be properly controlled to provide urea on demand without the need for storing large inventories of ammonia-containing gasses to correct for fluctuations in demand.
    • 公开了一种能够有效地利用尿素用于NOx的选择性催化还原(SCR)的系统,其通过气化并将其供给到与多个燃气轮机相关联的多个选择性催化还原单元。 本发明能够使尿素的气化产物能够完全控制单独的SCR单元,而不会过多的试剂使用或污染控制有效性的损失。 控制器确定每个涡轮机控制NOx排放所需的试剂的量,然后将气化的尿素与正确量的载气混合,以有效地操作每个单独的SCR单元,尽管涡轮机之间的需求变化。 以这种方式,可以适当地控制气化单元以根据需要提供尿素,而不需要存储大量含氨气体的清单来校正需求的波动。
    • 10. 发明授权
    • Selective catalytic NOx reduction process and control system
    • 选择性催化NOx还原过程和控制系统
    • US08591848B2
    • 2013-11-26
    • US12266373
    • 2008-11-06
    • William H. SunPaul G. CarmignaniJohn M. Boyle
    • William H. SunPaul G. CarmignaniJohn M. Boyle
    • B01D53/56B01D53/58C01B21/00
    • B01D53/8625B01D53/8696B01D53/90B01D2251/2067F23J15/003F23J2219/10
    • Disclosed is a system which enables the efficient utilization of urea for selective catalytic reduction (SCR) of NOx by gasifying it and feeding it to a plurality of selective catalytic reduction units associated with a plurality of gas turbines. The invention enables feeding a gasified product of the urea with the ability to fully control separate SCR units without excessive reagent usage or loss of pollution control effectiveness. Controllers determine the amount of reagent required for each turbine to control NOx emissions and then mixes the gasified urea with the correct amount of carrier gas for efficient operation of each separate SCR unit despite the demand variation between the turbines. In this manner the gasification unit can be properly controlled to provide urea on demand without the need for storing large inventories of ammonia-containing gasses to correct for fluctuations in demand.
    • 公开了一种能够有效地利用尿素用于NOx的选择性催化还原(SCR)的系统,其通过气化并将其供给到与多个燃气轮机相关联的多个选择性催化还原单元。 本发明能够使尿素的气化产物能够完全控制单独的SCR单元,而不会过多的试剂使用或污染控制有效性的损失。 控制器确定每个涡轮机控制NOx排放所需的试剂的量,然后将气化的尿素与正确量的载气混合,以有效地操作每个单独的SCR单元,尽管涡轮机之间的需求变化。 以这种方式,可以适当地控制气化单元以根据需要提供尿素,而不需要存储大量含氨气体的清单来校正需求的波动。