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equipment retrofit
相关语句
  设备改造
     Equipment Retrofit and Energy Saving Analysis of Cold End System of 110MW Turbine Unit
     110MW机组冷端系统设备改造及节能分析
短句来源
     Frequent Cracking Problem Analyses and Equipment Retrofit of Motor Rotor' s SquirrelCage Bars of Pulverized Fuel Exhauster
     排粉电动机笼条频繁断裂问题分析及设备改造
短句来源
     PM4 type EHV middle-reheating natural circulating fluidized bed drug boiler in Kaifeng power plant which belongs to Chinese electric power investment group company,the related situation of equipment retrofit,the reason of large-area pipe explosion of high temperature reheater and Ⅱ grade overheater heating surface are analyzed.
     PM4型超高压中间再热自然循环流化床汽包锅炉(2号炉)设备和实际运行情况,分析高温再热器、Ⅱ级过热器受热面大面积爆管原因及设备改造相关情况。
短句来源
     In Shimen Thermal Power Plant,through equipment retrofit and operation optimization adjustment etc technical measures,with the quality of actually burned coal much lower than that of designed coal,the tested regulating load of 300 MW generating unit reached 160 MW,exceeding the guaranteed value by the manfacturer minimum steady state combustion load 180 MW,with coal saving effect abtained as a result of optimized adjustment
     石门电厂通过设备改造及运行优化调整等技术措施,使300 M W 机组在实际燃用的煤质明显低于设计煤种的情况下,使调峰试验负荷达到160 M W,突破了制造厂最低稳燃负荷保证值180 M W ,取得了优化调整所产生的节煤降耗效果。
短句来源
     At the same time, this paper documents that co-firing low-temperature pyrolyzed biomass with coal can, on one hand, reduce the operating cost by lowering the cost of transportation, storage, biomass handling, equipment retrofit and coal saving, on the other hand, increase the cost for production of the low-temperature pyrolyzed biomass and maintenance for the problems made by fouling and slagging.
     同时 ,二者共燃可以在运输成本、存储成本、电厂生物质处理费用、设备改造费用和节约煤炭等方面降低电厂的运营成本 ,但也可能在生物质低温热解产品加工上提高生产费用以及在因燃用热解生物质可能造成的积灰结渣上提高设备维护费用。
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In Shimen Thermal Power Plant,through equipment retrofit and operation optimization adjustment etc technical measures,with the quality of actually burned coal much lower than that of designed coal,the tested regulating load of 300 MW generating unit reached 160 MW,exceeding the guaranteed value by the manfacturer minimum steady state combustion load 180 MW,with coal saving effect abtained as a result of optimized adjustment

石门电厂通过设备改造及运行优化调整等技术措施,使300 M W 机组在实际燃用的煤质明显低于设计煤种的情况下,使调峰试验负荷达到160 M W,突破了制造厂最低稳燃负荷保证值180 M W ,取得了优化调整所产生的节煤降耗效果。

This paper introduces the boiler,turbine,electrotechnics and control system retrofit of Luohe power plant's NO.1 300MW unit,analyzes the appraisal result after equipment retrofit and presents some shortcomings in running.

叙述了洛河电厂 30 0MW机组炉、机、电及热控设备的技术改造 ,分析了改造后达到的效果 ,同时指出了改造后机组在运行中存在的不足。

Based on the co-firing significances of biomass with coal, this paper gives the pollution and economy evaluation of co-firing low-temperature pyrolyzed biomass with coal. This paper suggests that co-firing low-temperature pyrolyzed biomass (sawdust, rice hull and peanut shell) with coal will reduce the emission of greenhouse gas (such as CO 2 and CH 4), and else air pollution (such as NO x and SO 2). It also will reduce the release of heavy metal and other poisonous trace elements. At the same time, this...

Based on the co-firing significances of biomass with coal, this paper gives the pollution and economy evaluation of co-firing low-temperature pyrolyzed biomass with coal. This paper suggests that co-firing low-temperature pyrolyzed biomass (sawdust, rice hull and peanut shell) with coal will reduce the emission of greenhouse gas (such as CO 2 and CH 4), and else air pollution (such as NO x and SO 2). It also will reduce the release of heavy metal and other poisonous trace elements. At the same time, this paper documents that co-firing low-temperature pyrolyzed biomass with coal can, on one hand, reduce the operating cost by lowering the cost of transportation, storage, biomass handling, equipment retrofit and coal saving, on the other hand, increase the cost for production of the low-temperature pyrolyzed biomass and maintenance for the problems made by fouling and slagging. We can believe that the co-firing of biomass and coal will be one of the most important measures for energy sources sustainable development.

在简要说明生物质与煤共燃意义的基础上 ,对低温热解生物质和煤共燃的污染性能和经济性能进行了研究和评价。认为低温热解生物质 (锯屑、谷壳和花生壳 )与煤共燃能够减排CO2 、CH4 等温室气体及NOX 和SO2 等大气污染物 ,减排重金属污染物和其它微量有毒有害元素 ;同时 ,二者共燃可以在运输成本、存储成本、电厂生物质处理费用、设备改造费用和节约煤炭等方面降低电厂的运营成本 ,但也可能在生物质低温热解产品加工上提高生产费用以及在因燃用热解生物质可能造成的积灰结渣上提高设备维护费用。可以预见 ,生物质与煤共燃的研究将是实现能源可持续发展的有效措施之一。

 
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