Vol 14, Issue 3S, 1997
WHERE SHOULD THE OIL SHALE POWER ENGINEERING BE DIRECTED?; pp. 193–194
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THERMAL ENGINEERING DEPARTMENT OF TALLINN TECHNICAL UNIVERSITY; pp. 195–208
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CIRCULATING FLUIDIZED BED COMBUSTION –THE TECHNOLOGY EXACT FOR ESTONIAN OIL SHALE; pp. 209–214
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CIRCULATING FLUIDIZED BED TECHNOLOGY – TEST COMBUSTION OF ESTONIAN OIL SHALE; pp. 215–217
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ON THE FOULING OF HEAT TRANSFER SURFACES OF CFB OIL SHALE BOILER; pp. 218–224
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GRAIN COMPOSITION AND CORROSIVE ACTIVITY OF ASH FROM CFB OIL SHALE BOILER; pp. 225–235
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LABORATORY INVESTIGATIONS OF HIGH TEMPERATURE CORROSION OF BOILER ALLOYS UNDER THE IMPACT OF ESTONIAN OIL SHALE ASH; pp. 236–245
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RECOMMENDATIONS FOR DESIGN OF ESTONIAN OIL SHALE FIRED CFB BOILERS; pp. 246–253
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CIRCULATING FLUIDIZED BED BOILERS; pp. 254–264
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SULPHATION OF ESTONIAN AND ISRAELI OIL SHALE ASHES UNDER ATMOSPHERIC AND PRESSURIZED COMBUSTION CONDITIONS; pp. 265–283
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THE INFLUENCE OF PRESSURE ON THE BEHAVIOUR OF OIL SHALE CARBONATES; pp. 284–298
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SOME DESIGN ASPECTS OF RECOVERY BOILER FOR OIL SHALE RETORTING UNIT SHC-3000; pp. 299–306
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THE INFLUENCE OF CHLORINE IN ASH DEPOSITS ON 12Cr1MoV ALLOY HIGH TEMPERATURE CORROSION; pp. 307–316
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CORROSION RESISTANCE OF FERRITIC ALLOYS 13 CrMo 44 AND 10 CrMo 910 IN CONDITIONS OF SUPER HEATERS OF PF OIL SHALE BOILER; pp. 317–327
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CRACK IN RECOVERY BOILER; pp. 328–334
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