第20屆國際化訂燃燒會議論文集(I、II)英文版

出版時間:1970-1  出版社:清華大學(xué)出版社  

前言

The Proceedings of the 20th International Conference on Fluidized Bed Combustion (FBC) collect 9plenary lectures and 175 peerreviewed technical papers presented in the conference held in Xi'an China inMay 18-21, 2009. The conference was the 20th conference in a series, covering the latest fundamental researchresults, as well as the application experience from pilot plants, demonstrations and industrial units regarding tothe FBC science and technology. It was co-hosted by Tsinghua University, Southeast University, ZhejiangUniversity, China Electricity Council and Chinese Machinery Industry Federation.A particular feature of the proceedings is the balance between the papers submitted by experts fromindustry and the papers submitted by academic researchers, aiming to bring academic knowledge to applicationas well as to define new areas for research.The authors of the proceedings are the most active researchers, technology developers, experienced andrepresentative facility operators and manufacturers. They presented the latest research results, state-of-the-artdevelopment and projects, and the useful experience.

內(nèi)容概要

《第20屆國際化訂燃燒會議論文集(英文版)(套裝共2冊)》內(nèi)容簡介:The Proceedings of the 20th International Conference on Fluidized Bed Combustion (FBC) collect 9plenary lectures and 175 peer reviewed technical papers presented in the conference held in Xi'an China in May 18-21, 2009. The conference was the 20th conference in a series, covering the latest fundamental research results, as well as the application experience from pilot plants, demonstrations and industrial units regarding to the FBC science and technology. It was co-hosted by Tsinghua University, Southeast University, Zhejiang University, China Electricity Council and Chinese Machinery Industry Federation.

書籍目錄

LATEST DEVELOPMENT OF CFB BOILERS IN CHINAGASIFICATION OF BIOMASS IN FLUIDISED BED: REVIEW OF MODELLINGPOTENTIALS OF BIOMASS CO-COMBUSTION IN COAL-FIRED BOILERSFormation and Reduction of Pollutants in CFBC: From Heavy Metals, Particulates, Alkali,  NOx, N20, SOx, HC1LATEST EVOLUTION OF OXY-FUEL COMBUSTION TECHNOLOGY IN CIRCULATING FLUIDIZED BEDFOSTER WHEELER'S SOLUTIONS FOR LARGE SCALE CFB BOILER TECHNOLOGY: FEATURES AND OPERATIONAL PERFORMANCE OF LAGISZA 460 MWe CFB BOILERFLUIDIZED COMBUSTION OF LIQUID FUELS: PIONEERING WORKS, PAST APPLICATIONS,TODAY'S KNOWLEDGE AND OPPORTUNITIESDIRECT NUMERICAL SIMULATION OF VERTICAL PARTICULATE CHANNEL FLOW IN THE TURBULENT REGIMEGASIFICATION IN FLUIDIZED BEDS - PRESENT STATUS & DESIGN CFB Boiler Technology, Operation and DesignRESEARCH AND DEVELOPMENT OF LARGE CAPACITY CFB  BOILERS IN TPRIEXPERIENCE FROM THE 300 MWe CFB DEMONSTRATION PLANT IN CHINAPROJECT MAXAU - FIRST APPLICATION OF HYBRID CFB TECHNOLOGY BY AUSTRIAN ENERGY & ENVIRONMENT1300°F 800 MWe USC CFB BOILER DESIGN STUDYSTRUCTURE AND PERFORMANCE OF A 600MWe SUPERCRITICAL CFB BOILER WITH WATER COOI.ED PANELSSTARTUP, COMMISSIONING AND OPERATION OF FENYI 100MW CFB BOILERDESIGN AND OPERATION OF LARGE SIZE CIRCULATING FLUIDIZED BED BOILER FIRED SLURRY AND GANGUEPERFORMANCE IMPROVEMENT OF 235 MWe AND 260 MWe CIRCULATING FLUIDIZEI3 BED BOILERSB&W IR-CFB: OPERATING EXPERIENCE AND NEW DEVELOPMENTSNOx EMISSION REDUCTION BY THE OPTIMIZATION OF THE PRIMARY AIR DISTRIBUTION IN THE 235MWe CFB BOILERHEAT TRANSFER COEFFICIENT DISTRIBUTION IN THE FURNACE OF A 300MWe CFB BOILERCALCULATION AND ANALYSIS OF HEAT TRANSFER COEFFICIENTS IN A CIRCULATING FLUIDIZED BED BOILER FURNACERESEARCH ON THE HYDRAULIC CHARACTERISTICS OF A 600MW SUPERCRITICAL PRESSURE CFB BOILERSTUDY OF NOX EMISSION CHARACTERISTICS OF A 1025t/h COAL-FIRED CIRCULATING FLUIDIZED BED BOILERMERCURY EMISSION AND REMOVAL OF A 135 MW CFB UTILITY BOILERNOVEL CFB BOILER TECHNOLOGY WITH RECONSTRUCTION OF ITS FLUIDIZATION STATEDEVELOPMENT OF FLEXI-BURNTM CFB POWER PLANT TO MEET THE CHALLENGE OF CLIMATE CHANGEDESIGN AND APPLICATION OF NOVEL HORIZONTAL CIRCULATING FLUIDIZED BED BOILERDESIGN AND OPERATION OF CFB BOILERS WITH LOW BED INVENTORYOPERATIONAL STATUS OF 135MWe CFB BOILERS IN CHINAIN DEVELOPPING A BENCH-SCALE CIRCULATING FLUIDIZED BED COMBUSTOR TO BURN HIGH ASH BRAZILIAN COAL-DOLOMITE MIXTURESINDUSTRIAL APPLICATION STUDY ON NEW-TYPE MIXED-FLOW FLUIDIZED BED BOTTOM ASH COOLEROPERATION EXPERIENCE AND PERFORMANCE OF THE FIRST 300MWe CFB BOILER DEVELOPED BY DBC IN CHINAOPERATIONAL STATUS OF 300MWe CFB BOILER IN CHINAADVANCED REFRACTORY AND ANTI-WEARING TECHNOLOGY OF CYCLONE SEPARATOR IN CFB BOILERABRASION-RESISTANT TECHNOLOGY AND ITS PROSPECT FOR CFB BOILERSCOMPARION OF MERCURY EMISSIONS BETWEEN CIRCULATING FLUIDIZED BED BOILERAND PULVERIZED COAL BOILERCO-COMBI JSTION OF REFI JSE DERIVED FI JEL WITH ANTHRACITES IN A CFB BOILERCOMRI JSTION OF POl II,TRY-DERIVED FI JEI, IN A CFBCTHERMAL EFFECTS BY FIRING OIL SHALE FUEL IN CFB BOILERSECONOMICAL COMPORISON PC AND CFB BOILERS FOR RETROFIT AND NEW POWER PLANTS IN RUSSIACHARACTERIZATION OF FINE POWDERSVELOCITY OF COMPLETE FLUIDIZATION OF A POLYDISPERSE MIXTURE OF VARIOUS FUELSEFFECTS OF TEMPERATURE AND PARTICLE SIZE ON MINIMUM FLUIDIZATION AND TRANSPORT VELOCITIES IN A DUAL FLUIDIZED BEDFLUIDIZATION CHARACTERISTICS OF STALK-SHAPED BIOMASS IN BINARY PARTICLE SYSTEMBOTTOM ZONE FLOW PROPERTIES OF A SQUARE CIRCULATING FLUIDIZED BED WITH  AIR STAGINGEXPERIMENTAL STUDY ON PARTICLE FEEDING AND MIXING IN THE BOTTOM ZONE OF A CIRCULATING FLUIDIZED BEDAN EXPERIMENTAL INVESTIGATION INTO THE FRAGMENTATION OF COAL PARTICLES IN A FLUIDIZED-BED COMBUSTORAXIAL AND RADIAL SOLIDS HOLDUP MODELING OF CIRCULATING FLUIDIZED BED RISERSRESEARCH ON FLOW NON-UNIFORMITY IN MAIN CIRCULATION LOOP OF A CFB BOILER  WITH MULTIPLE CYCLONESFLOW REGIME STUDY IN A CIRCULATING FLUIDIZED BED RISER WITH AN ABRUPT EXIT: FULLY DEVELOPED FLOW IN CFB RISERHEAT TRANSFER AT A LONG ELECTRICALLY-SIMULATED WATER WALL IN A CIRCUL ATING FLUIDISED BEDDESIGN AND OPERATION OF EXPERIMENTAL SYSTEM FOR STUDYING HEAT TRANSFER IN A SMOOTH TUBE AT NEAR- AND SUPER CRITICAL PRESSUREEXPERIMENTAL AND MODELING INVESTIGATION OF LIGNITE DRYING IN A FLUIDIZED RED DRYEREXPERIMENTAL RESEARCH ON GAS-SOLID FLOW IN AN EXTERNAL HEAT EXCHANGER WITH DOT IRI,E fit ITI,ETSTHE EXPERIMENTAL STUDY ON HEAT TRANSFER CHARACTERISTICS OF THE EXTERNAL HEAT EXCHANGEREXPERIMENTAL STUDY ON MASS AND HEAT TRANSFER CHARACTERISTICS IN A HORIZONTAL CIRCULATING DIVISIONAL FLUIDIZED BEDEXPERIMENTAL STUDY OF GAS SOLID FLOW CHARACTERISTICS IN CYCLONE INLET DUCTS OF A 300MWE CFB BOILEREXPERIMENTAL RESEARCH ON GAS-SOLID FLOW IN A SQUARE CYCLONE SEPARATOR WITH DOUBLE INLETSGAS-PHASE COMBUSTION IN THE FREEBOARD OF A FLUIDIZED BED-FREEBOARD CHARACTERIZATIONCHARACTERISTICS OF PYROLYTIC TOPPING IN FLUIDIZED BED FOR DIFFERENT VOLATILE COALSFLUIDISED BED COMBUSTION OF TWO SPECIES OF ENERGY CROPSPREDICTION OF AGGLOMERATION, FOULING, AND CORROSION TENDENCY OF FUELS IN CFB CO-COMBUSTIONENVIRONMENTAL IMPACT OF ESTONIAN OIL SHALE CFB FIRINGSTUDY ON COMBUSTION CHARACTERISTICS OF LIGNITE IN A CFB BOILERSTUDY OF HEAVY METALS  CONDENSATION BY CONSIDERING VARIANT CONDITIONS OF INCINERATOR COOLING ZONEDUAL-FUEL FLUIDIZED BED COMBUSTOR PROTOTYPE FOR RESIDENTIAL HEATING: STEADY-STATE AND DYNAMIC BEHAVIOREXPERIMENTAL STUDY ON GAS-SOLID FLOW CHARCTERISTICS IN A CFB RISER OF 54m IN HEIGHTSTUDY OF AIR JET PENETRATION IN A FLUIDIZED BEDSOLIDS MIXING IN THE BOTTOM ZONE OF FLUIDIZED BEDSEFFECT OF RISER GEOMETRY STRUCTURE ON LOCAL FLOW PATTERN IN A RECTANGULAR CIRCULATING FLUIDIZED BEDEXPERIMENTAL STUDY ON COAL FEEDING PROPERTY OF 600MW CFB BOILERTHE HEAT RELEASE RATIO AND PERFORMANCE TEST AT A SMALL-SCALE RDF-5 BUBBLING FLUIDIZED BED BOILERINTEGRATED USE OF FLUIDIZED BED TECHNOLOGY FOR OIL PRODUCTION FROM OIL SHALETHE INFLUENCE OF SORBENT PROPERTIES AND REACTION CONDITIONS ON ATTRITION OF LIMESTONE BY IMPACT LOADING IN FLUIDIZED BEDSCHARACTERISTICS OF A MODIFIED BELL JAR NOZZLE DESIGNEDFOR CFB BOILERSHEAT BALANCE ANALYSIS OF BAIMA'S 300 MWe CFB BOILER IN CHINAC02 Capture and Chemical LoopingDIFFERENT METHODS OF MANUFACTURING FE-BASED OXYGEN CARRIER PARTICLES FOR REFORMING VIA CHEMICAL LOOPING, AND THEIR EFFECT ON PERFORMANCEKINETICS OF OXIDATION OF A REDUCED FORM OF THE Cu-BASED OXYGEN-CARRIER FOR USE IN CHEMICAL-LOOPING COMBUSTIONREDUCTION KINETICS OF A CaSO4 BASED OXYGEN CARRIER FOR CHEMICAL-LOOPING COMRI ISTIONINVESTIGATION OF COAL FUELED CHEMICAL LOOPING COMBUSTION USING Fe304 AS OXYGEN CARRIER……GasificationModling and SimulationSustainable Fuels-Combustion and New Concept

章節(jié)摘錄

插圖:Recently, clean utilization of lowrank fuel is a key issue in energy and thermal power system due tounstable prices of fossil fuels and environmental problems. Biomass utilization is a very promising technologybecause it is carbon neutral and one of the most abundant resources in the world. Among various ways of usingbiomass as energy, gasification technology is known to be very effective process because syngas from thegasification process can be applied to polygeneration: combustion, power generation, synthetic fuel andchemical production. Korea Institute of Industrial Technology (KITEHC) has been focused on the clean use of lowquality fuels such as coal, waste, and biomass and we launched an extensive research project on biomassgasification including gas cleaning and biomass-to-liquid (BTL) with F-T process. For biomass gasification,we are developing dual bed gasification system consist of a bubbling fluidized bed gasifier and a circulatingfluidized bed combustor. Our goal is to develop a gasification process which satisfies the requirement of F-Tprocess which needs high contents of hydrogen with less impurity such as sulfuric compounds, tar andparticular matters.There have been extensive researches on biomass gasification with fluidized bed gasifier and variousgasifying medium. Generally, high temperature gasification with steam or oxygen has been used for gettinghydrogen-rich syngas. To maximize gasification and tar removing efficiency, combined system which has lowvelocity fluidized bed & high velocity pneumatic riser (Xu et al., 2006) is known to have an excellentperformance (Hofbauer et al., 1995; Fang et al., 1998; Murakami and Xu, 2006). A dual fluidized bed (DFB)reactor has two fluidized beds: gasifier (bubble fluidized beds) and combustor (circulating fluidized beds)which produces syngas and combustion gas respectively. This combined system has many advantages, such ascold gas efficiency, tar removing performance, and gas composition. By separating gasification and combustionprocesses, we can produce middle-caloric-value syngas without nitrogen dilution and less carbon dioxide. Byadding steam or oxygen to the gasifier, we can control the caloric value of syngas. In this study, we investigatedhydrodynamics of DFB reactor for developing an auto-thermal biomass gasifier.

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