303 - 305 |
DEVELOPMENT OF OIL SHALE COMBUSTION TECHNOLOGIES FOR POWER PRODUCTION IN ESTONIA Talumaa R |
306 - 321 |
SOURCE REGIONS AND THE SEDIMENTARY PALEOENVIRONMENT OF MARINE OIL SHALE FROM THE BILONG CO AREA, NORTHERN TIBET, CHINA: AN SR-ND ISOTOPIC STUDY Fu XG, Wang J, Zeng YH, Tan FW, Feng XL |
322 - 333 |
ANALYSIS AND IDENTIFICATION OF OXYGEN COMPOUNDS IN LONGKOU SHALE OIL AND SHENMU COAL TAR Geng CC, Li SY, Ma Y, Yue CT, He JL, Shang WZ |
334 - 343 |
HYDROFLUORIC ACID-BASED ULTRASONIC UPGRADING OF OIL SHALE AND ITS STRUCTURE CHARACTERIZATION Song WN, Dong YL, Xue LM, Ding HX, Li Z, Zhou GJ |
344 - 356 |
AN ATR-FTIR PROCEDURE FOR QUANTITATIVE ANALYSIS OF MINERAL CONSTITUENTS AND KEROGEN IN OIL SHALE Palayangoda SS, Nguyen QP |
357 - 367 |
A MICRO-CT STUDY OF CHANGES IN THE INTERNAL STRUCTURE OF DAQING AND YAN'AN OIL SHALES AT HIGH TEMPERATURES Zhao J, Yang D, Kang ZQ, Feng ZC |
368 - 375 |
PYROLYSIS OF YAOJIE OIL SHALE IN A SANJIANG-TYPE PILOT-SCALE RETORT Shi YY, Li SY, Ma Y, Yue CT, Shang WZ, Hu HQ, He JL |
376 - 403 |
OPEN-AIR DEPOSITION OF ESTONIAN OIL SHALE ASH: FORMATION, STATE OF ART, PROBLEMS AND PROSPECTS FOR THE ABATEMENT OF ENVIRONMENTAL IMPACT Kuusik R, Uibu M, Kirsimae K, Motlep R, Meriste T |