HYDROTREATING OF FULL RANGE FCC GASOLINE.doc
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1、HUNGARIAN JOURNALOF INDUSTRIAL CHEMISTRYVESZPRMVol. 30. pp. 299 - 303 (2002)HYDROTREATING OF FULL RANGE FCC GASOLINEJ. Hancsk, S. Magyar and A. Lengyel1(Department of Hydrocarbon and Coal Processing, University of Veszprm, H-8201 Veszprm, P.O. Box 158, HUNGARY1MOL Hungarian Oil and Gas Co., H-2443 S
2、zzhalombatta, P.O. Box 1, HUNGARY)Received: November 20, 2002Sulphur content of engine gasoline must be reduced below 50 ppm in the European Union from 2005, and gasoline containing 10 ppm sulphur will have tax allowance 1,2. FCC gasoline is one of the blend stocks being applied in largest amount (a
3、bout 20-50%). The sulphur content of this is significant (about 50-2000 ppm), therefore 50-95% of the sulphur species of gasoline originates from this stream. Selective hydrotreating of FCC gasoline may be a favourable technique among the numerous new desulphurising methods. Achievements of a resear
4、ch work, made for hydrotreating a full range of FCC gasoline, are presented in this paper. The authors were able to find combinations of process parameters being suitable to produce gasoline blend stock of 11 ppm sulphur content with only 2 units loss of octane number.Keywords: FCC gasoline, desulph
5、urization, olefin saturation, octane lossIntroductionFurther reduction of the automotive emission can be achieved effectively with complex development of fuels, engine construction, lubricants and other parts of vehicles (catalytic converter, tyre etc.). Currently the sulphur specifications have dom
6、inant importance from the point of view of engine gasoline, because combustion products of sulphur species beside air pollution are poison the vehicle catalysts. Thus further significant reduction of sulphur content can be expected (Table1) 3.Three main long-run methods are offered for reducing sulp
7、hur content of gasoline, each of which results in lower sulphur content of FCC gasoline: reduction by hydrofining of FCC feed, application of new catalysts and catalyst additives in the FCC unit and desulphurisation of FCC gasoline 4, 5. These strategies can be used either in themselves or in combin
8、ation. Nevertheless, desulphurisation of FCC gasoline cannot generally be avoided to meet ultra low sulphur specifications of engine gasoline.The loss of octane number can be very significant (up to 10-15 units) applying conventional hydrotreating of FCC gasoline. Accordingly, this process is not ec
9、onomical from two aspects: partly due to considerable loss of octane number, partly because significant hydrogen consumption. A number of desulphurising processes for FCC gasoline have been developed which can economically be used to produce low sulphur FCC gasoline with acceptable loss of octane nu
10、mber 6-17.The new desulphurising processes are widely diversified in respect of their principle and technical configuration (selective hydrotreating, adsorption, extractive distillation, caustic extraction etc.). Options for desulphurisation of FCC gasoline are summarized in Table2 18. Some of these
11、 processes treat full range FCC gasoline, but others accomplish desulphurisation with only a portion of FCC gasoline. It is extremely important in the latter processes that the column for the distillation of gasoline has to be optimally designed and the cut point well selected 19.Fig.1 illustrates t
12、he major optional pathways for post-treating of FCC gasoline. The main features of the processes indicated on this figure were already presented in Table2. In some cases the light fraction of FCC gasoline is sent to an etherification or alkylation unit for boosting the octane number, while the heavi
13、er fraction is hydrotreated. This kind of combination reduces the overall octane loss of post-treating. These processes were not indicated on Fig.1.During the research, the possibility of desulphurisation of a full range FCC gasoline on Pt,Pd/zeolite has been investigated. The aim of the study was t
14、o examine the effect of process parameters (primarily temperature and liquid hourly space velocity) on the yield and quality of liquid product and to determine the advantageous process parameters.Table1 Actual and planned motor gasoline specificationsRegion,country,stateMaximum sulphur content ppm(a
15、ctual)(planned)Maximum olefin content V/V%(actual)(planned)USA50030 (2006)25no changeCalifornia3015 (end of 2002)4no changeEU15050 (2005)18still not decidedJapan10010 (2008?)not specifiedstill not decidedTable2 Options for the desulphurisation of FCC gasolineProcessKey featureIndustrialapplicationH2
16、-consumptionOctane lossName of processLicensorsNaphtha hydro-treating (NHT)conventionalyeshighhighvariousa number of firmsNHT+ octane increasezeolite + isomerisationyeshighlowOctgain, IsalExxonMobil, UOPSelective NHTRT-225yesmediumlowSCANfiningExxonMobildual catalyst yesmediumlowPrime-G+IFPcatalytic
17、 distillationyesmediumlowCDHydro/CDHDSCDTechSelective NHT + octane increasecombinationyesmediumlowSCANfining IIExxonMobilAdsorptionZn adsorbentyeslowlowS ZorbPhilipsalumina adsorbentpilotlowlowIrvadAlcoaExtractive distillationselective solvent sys.yesnonelowGT-DeSulfGTCOxidationperoxyacidpilotnonelo
18、wCEDPetrostarultrasoundpilotnonelowSulphCoBechtelAlkylationsolid acidpilotlowlowOATSBPBio processingbio catalysisnononelowEnchiraFig.1 Major optional pathways for the desulphurisation of FCC gasolineFig.2 Simplified drawing of the test apparatus. Notations: 1, 6, 11, 13, 14, 18, 20, 22, 30, 34, 36,
19、37, 38: closing valves; 2, 8, 31, 39: control valves; 3, 7, 9, 15: manometers, 4: oxygen converter; 5: dryer; 10, 32: gas filter; 12: gas flow meter/controller; 16, 23: back valve; 17, 19: liquid feeds burettes; 21: liquid pump; 24: pre-heater; 25: reactor, 26: sampling valve, 27, 29: cooler, 28: se
20、parator; 33: pressure recorder; 35: pressure controller; 40: wet gas flow meterExperimentalApparatusDesulphurisation of FCC gasoline has been carried out in a high-pressure reactor system (Fig.2) at the Department of Hydrocarbon and Coal Processing, University of Veszprm. This consists of a tubular
21、reactor of 100cm3 efficient volume and is free of back mixing. It contains the same equipments and devices applied in the reactor system of desulphurising plants (pumps, separators, heat exchangers, as well as regulators of temperature, pressure and gas flow).CatalystsThe hydrodesulphurising experim
22、ents were carried out on Pt,Pd/zeolite catalyst, applying 80cm3 of it.FeedstockAs feedstock of the desulphurising experiments a full boiling range (data of simulated distillation: 6-228C) FCC gasoline were used. The major quality features are summarised in Table3.MethodsCompositions of feedstock and
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