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Environmental-impact assessment for the proposed oil-shale integrated tri-generation plant

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  • Jaber, J. O.
  • Probert, S. D.

Abstract

Air, land and water impacts for a proposed commercial-sized oil-shale integrated tri-generation system (OSITGS) are predicted. A preliminary analysis of the processes incurred was conducted to determine the nature and expected rates of various effluent streams emerging from the OSITGS. Mining and the processing of the oil-shale will significantly disturb the environment, as a result of pollution by dust particles and ash derived from the oil-shale as well as various gaseous emissions from the proposed development. However, it is likely that solid-waste handling (including ultimate disposal) as well as land-use impacts will be of greater concern than emissions to the atmosphere from the proposed oil-shale operations. Preliminary predictions indicate that the proposed integrated process will be financially attractive, as well as an environmentally-acceptable technique for producing synthetic (liquid and gaseous) fuels and electricity from oil-shale, compared with conventional utilisation methods. But significant information gaps exist, so inhibiting the making of accurate environmental assessments concerning the behaviour of the OSITGS at this time.

Suggested Citation

  • Jaber, J. O. & Probert, S. D., 1999. "Environmental-impact assessment for the proposed oil-shale integrated tri-generation plant," Applied Energy, Elsevier, vol. 62(3), pages 169-209, March.
  • Handle: RePEc:eee:appene:v:62:y:1999:i:3:p:169-209
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    References listed on IDEAS

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    1. Jaber, J. O. & Probert, S. D. & Badr, O., 1997. "Water scarcity: A fundamental crisis for Jordan," Applied Energy, Elsevier, vol. 57(2-3), pages 103-127, June.
    2. Barabaner, N. I. & Kaganovich, I. Z., 1993. "Oil shale production and power generation in Estonia Economic and environmental dilemmas," Energy Policy, Elsevier, vol. 21(6), pages 703-709, June.
    3. Jaber, J. O. & Probert, S. D., 1997. "Exploitation of Jordanian oil-shales," Applied Energy, Elsevier, vol. 58(2-3), pages 161-175, October.
    4. Wallman, P.H., 1992. "Coproduction of oil and electric power from Colorado oil shale," Energy, Elsevier, vol. 17(4), pages 313-319.
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    6. Han, X.X. & Jiang, X.M. & Cui, Z.G., 2009. "Studies of the effect of retorting factors on the yield of shale oil for a new comprehensive utilization technology of oil shale," Applied Energy, Elsevier, vol. 86(11), pages 2381-2385, November.
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    9. Kang, Zhiqin & Zhao, Yangsheng & Yang, Dong, 2020. "Review of oil shale in-situ conversion technology," Applied Energy, Elsevier, vol. 269(C).
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