GCL技术路线图与创新 高效技术的下一个突破:串联钙钛矿组件.pdf

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1、INNOVATING THE FUTURE:GCLTECHNOLOGY ROADMAP AND INNOVATION.NEXT BREAKTHROUGH IN HIGH-EFFICIENCY TECHNOLOGY:TANDEM PEROVSKITE MODULESAbout GCL Groupamongst global Top 500 New Energy Companiesyears of experience in energy sectorpublic listed companiesNo.4435$27.8 billion+3,000+EV ChargingESS Materials

2、&ProductsNatural GasSemiconductor MaterialPV ManufacturingRenewable Powerpatents and intellectual propertiesin assetsGCL Capacity LayoutGCL SI Hefei Module GCL SI Funing ModuleGCL SI Wuhu Cell30GW16GWModule N-type Cell35GWSilicon Wafer480,000tons200GWFBR SiliconGCL SI BaotouFBR SiliconFully Vertical

3、ly Integrated Value Chain.Upstream.TOPCon Modules TraceabilityCellsModulesWafersIngotSiliconMetallurgical SiliconSilicon Material Accounts for 40%Overall EmissionsCellOptimizedPERCTOPCon69.5%100%81.8%Wafer100%76.6%63.9%MortarDiamond WireSlicing+thin wiresModulePERCTOPConOptimized80.4%94.6%100%*Sourc

4、e:Estimation by GCL Carbon Data Platform.Last/Current Industry GenerationGCLGCL TargetMetallurgical Silicon AC FurnaceDC Furnace100%96%81.64%Ingot100%CzRCzOptimized94.2%80%Polysilicon27%24.2%Improved Siemens MethodFBRFBR Optimized100%Silicon powder and silicon ingotintegratedInnovative Technologies

5、for Continuous Carbon ReductionWhat is FBR(Fluidized Bed Reactor)Silicon?The Siemens Process01.02.03.The“seeds”grow larger and heavier and heavier until they leave the chamber when they have reached sufficient size.Silicon“seeds”are inserted into a chamber filled with hot,high purity silane gas pass

6、ing through it.The gas flow“fluidizes”the silicon seeds which liquefy as the silane gas decomposes and deposits layers of silicon on them:catalytic reaction.Hydrogen consumption(Nm/t)Power Consumption(kwh/kg)Labor(person/10kt)Water Consumption(t/t)61%LaborCost76%Power Consumption18%Water Consumption

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