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1

Technology Information Forecasting and Assessment Council (India), ed. Underground coal gasification: Status, prospects & challenges. New Delhi: Technology Information, Forecasting, and Assessment Council, 2007.

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2

V, Stefanik I͡U. Geotekhnologii͡a nekondit͡sionnykh tverdykh topliv. Kiev: Nauk. dumka, 1990.

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3

Eugene, Boysen John, University of North Dakota. Energy and Environmental Research Center., and Gas Research Institute, eds. Detailed evaluation of process and environmental data from the Rocky Mountain 1 underground coal gasification field test: Final report. [Grand Forks, ND (P.O. Box 9018, Grand Forks, 58202-9018): Energy & Environmental Research Center, University of North Dakota, 1998.

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4

Gosnold, William D. Postgasification thermal regime of the Rocky Mountain 1 underground coal gasification test site: Topical report. [Grand Forks, ND (P.O. Box 9018, Grand Forks, 58202-9018): Energy & Environmental Research Center, University of North Dakota, 1998.

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5

Hassett, David J. Leaching and attenuation characteristics of unaltered and thermally altered materials from the Rocky Mountain 1 underground coal gasification field site: Topical report. [Grand Forks, ND (P.O. Box 9018, Grand Forks, 58202-9018): Energy & Environmental Research Center, University of North Dakota, 1998.

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6

United States. Mine Safety and Health Administration. Belt entry ventilation review: Report of findings and recommendations. [Washington, D.C.?]: U.S. Dept. of Labor, Mine Safety and Health Administration, 1989.

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7

A, Kühnel R., Gas Research Institute, and Federal Energy Technology Center (U.S.), eds. Atlas of minerals and related phases in unaltered and thermally altered materials from the Rocky Mountain 1 underground coal gasification field site. Chicago, Ill: Gas Research Institute, 1998.

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8

Underground Coal Gasification and Combustion. Elsevier, 2018. http://dx.doi.org/10.1016/c2014-0-03452-1.

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9

Klimenko, Alexander Y., and Michael S. Blinderman. Underground Coal Gasification and Combustion. Elsevier Science & Technology, 2017.

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10

Klimenko, Alexander Y., and Michael S. Blinderman. Underground Coal Gasification and Combustion. Elsevier Science & Technology, 2017.

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11

Aghalayam, Preeti. Mathematical Modeling for Underground Coal Gasification. Momentum Press, 2017.

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12

Ranade, Vivek V., Sanjay M. Mahajani, and Ganesh Arunkumar Samdani. Computational Modeling of Underground Coal Gasification. Taylor & Francis Group, 2019.

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13

Ranade, Vivek V., Sanjay M. Mahajani, and Ganesh Arunkumar Samdani. Computational Modeling of Underground Coal Gasification. Taylor & Francis Group, 2019.

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14

Ranade, Vivek V., Sanjay M. Mahajani, and Ganesh Arunkumar Samdani. Computational Modeling of Underground Coal Gasification. Taylor & Francis Group, 2019.

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15

Ranade, Vivek V., Sanjay M. Mahajani, and Ganesh Arunkumar Samdani. Computational Modeling of Underground Coal Gasification. Taylor & Francis Group, 2019.

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16

Computational Modeling of Underground Coal Gasification. Taylor & Francis Group, 2019.

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17

Underground Coal Gasification Test, Hanna Wyoming, Summary Report, Operations (Pb90149030). Natl Technical Information, 1989.

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18

Characterization of thermally altered materials from the Rocky Mountain 1 underground coal gasification field test in Wyoming: Topical report. [Grand Forks, ND (P.O. Box 9018, Grand Forks, 58202-9018): Energy & Environmental Research Center, University of North Dakota, 1999.

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19

Asep Bahtiar Purnama, Sarif Subarna Yudha, Bagaraja Sirait, R. M. Nendaryono Madiutomo, Hasniati Astika, Zulfahmi, Miftahul Huda, et al. Pertambangan Gasifikasi Batubara Bawah Tanah: Teknologi Non Konvensional Batubara. Edited by Retno Damayanti and Tatang Wahyudi. Penerbit BRIN, 2022. http://dx.doi.org/10.55981/brin.447.

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Abstract:
Batubara merupakan salah satu sumber energi potensial yang dapat menggantikan minyak dan gas bumi di masa depan. Dengan makin menipisnya kondisi cadangan minyak dan gas bumi Indonesia, diversifikasi dalam pemanfaatan energi perlu mendapat perhatian yang serius. Terkait hal tersebut, buku ini memperkenalkan metode baru penyediaan energi dari batubara tanpa melakukan penambangan terbuka, tetapi melakukan gasifikasi komoditas tersebut di bawah tanah (underground coal gasification/UCG) sehingga dapat digunakan untuk keperluan energi listrik. Buku ini memberikan informasi sumber daya batubara bawah tanah Indonesia ditinjau dari kondisi geologi, proses ekstraksi dengan cara gasifikasi in situ, hingga studi kasus pengembangan teknologinya yang dilaksanakan oleh Puslitbang Teknologi Mineral dan Batubara (tekMIRA). Selain itu, kajian keekonomian, regulasi, dan antisipasi kemungkinan timbulnya permasalahan lingkungan juga diulas dengan menggabungkan studi literatur dan hasil penelitian di lapangan. Hadirnya buku ini diharapkan dapat dijadikan referensi dan sumber informasi yang bisa memenuhi kebutuhan pengguna serta memberikan kontribusi dalam upaya pembangunan ekonomi secara nasional.
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