• Tidak ada hasil yang ditemukan

Universitas Gadjah Mada, 2019 Diunduh dari DAFTAR PUSTAKA

N/A
N/A
Protected

Academic year: 2022

Membagikan "Universitas Gadjah Mada, 2019 Diunduh dari DAFTAR PUSTAKA"

Copied!
7
0
0

Teks penuh

(1)

150 DAFTAR PUSTAKA

Amarullah, D., 2009, Suatu Pemikiran Untuk Memanfaatkan Potensi Batubara Formasi Tanjung Di Daerah Lemo Kalimantan Tengah Sebagai Kokas, Kelompok Program Penelitian Energi Fosil, Pusat Sumber Daya Geologi, Bandung, v. 4, p. 1-11.

Arslan, V., dan Kemal., M., 2006, The Effect Of Inert Matters And Low Volatile Coal Addition On The Plasticity Of High Volatile Zonguldak Coals, The Journal Of The South African Institute Of Mining And Metallurgy, v. 106, p.

199-204.

American Society for Testing and Materials (ASTM), 1977, Gaseous Fuel; Coal and Coke; Atmospheric Analysis, American Society For Testing and Materials, v. 26, p. 429.

American Society for Testing and Materials (ASTM) D-3302, 2012, Standard Test Method for Total Moisture in Coal.

American Society for Testing and Materials (ASTM) D 3172, 2013, Standard Practice for Proximate Analysis of Coal and Coke.

American Society for Testing and Materials (ASTM) D 5865, 2013, Standard Test Method for Gross Calorific Value of Coal and Coke.

American Society for Testing and Materials (ASTM) D 2639., 2016. Standard Test Method for Plastic Properties of Coal by Constant-Torque Gieseler Plastometer. ASTM International, Philadephia, USA.

American Society for Testing and Materials (ASTM) D 5373, 2016, Standard Test Methods for Determination of Carbon, Hydrogen, and Nitrogen in Analysis Samples of Coal and Carbon in Analysis Samples of Coal and Coke.

American Society for Testing and Materials (ASTM) D 4239, 2018, Standard Test Methods for Sulfur in the Analysis Sample of Coal and Coke Using High- Temperature Tube Furnace Combustion.

Badan Nasional Penanggulangan Bencana, 2009, Peta Pulau Kalimantan : geospasial.bnpb.go.id (diakses pada Mei 2018).

Bandopadhyay, A.K., dan Mohanty, D., 2014, Variation in Hydrogen Content of Vitrinite Concentrates With Rank Advance, Fuel, Elsevier, v. 134, p. 220-225.

Boggs, Jr.S., Pricinple Of Sedimentology and Stratigraphy, Pearson Prentice Hall, United States of America, 662 p.

Belkin, H.E., Tewalt, S.J., Hower, J.C., Stucker, J.D., O’Keefe, J.M.K., 2009, Geochemistry and petrology of selected coal samples from Sumatra,

(2)

151 Kalimantan, Sulawesi and Papua, Indonesia, International Journal of Coal Geology, v. 77, p. 260-268.

Choudhury, N., Mohanty, D., Boral, P., Kumar, S., Hazra, S.K., 2008, Microscopic Evaluation Of Coal And Coke For Metallurgical Usage, Current Science, Research Articles, v. 94, no. 1.

Darman, H., dan Sidi, F.H., 2000, An Outline of The Geology of Indonesia. Ikatan Ahli Geologi Indonesia, Jakarta. 254 p.

Daulay, B., Santoso, B., Ningrum, N.S., 2015, Evaluation of Selected High Rank Coal in Kutai Basin, East Kalimantan Relating to Its Coking Properties, Indonesian Mining Journal, v. 18, No. 1, p. 1-10.

Diaz-Faes, E., Barriocanal, C., Diez, M.A., Alvarez, R., 2007, Applying TGA Parameters in Coke Quality Prediction Model, Journal of Analytical and Applied Pyrolisis, Elsevier, v. 79, p. 154-160.

Diaz-Faes, E., Barriocanal, C., Diez, M.A., Alvarez, R., 2007, Characterization of Different Origin Coking Coals and Their Blends By Gieseler Plasticity and TGA, Journal of Analytical and Applied Pyrolysis, Elsevier, v. 80, p. 203-208.

Diessel, C.F.K. 1992. Coal-Bearing Depositional System. Thompson Press (India) Ltd., New Delhi, 679 p.

Diez, M.A., Alvarez, R., Barriocanal, C., 2002, Coal for Metallurgical Coke Production : Prediction of Coke Quality and Future Requirements for Cokemaking, International Journal of Coal Geology, Elsevier, v.50, p. 389-412.

Doust, H., Sumner, H.S., 2007. Petroleum systems in rift basins – a collective approach in Southeast Asian basins, Petroleum Geoscience, v. 13, p. 127–144.

Friedrich, M.C., Moore, T.M., Flores, R.M., 2016, A Regional Review And New Insights Into SE Asian Cenozoic Coal-Bearing Sediments: Why Does Indonesia Have Such Extensive Coal Deposits?, International Journal of Coal Geology, Elsevier, v. 166, p. 2-35.

Friedrich, M.C., dan van Leeuwen, T., 2017, A Review of The History of Coal Exploration, Discovery and Production in Indonesia : The Interplay of Legal Framework, Coal Geology and Exploration Strategy, International Journal of Coal Geology, Elsevier, v. 178, p. 56-73.

Gayo, F., Garcia, R., Diez, M.A., 2016, Modelling The Gieseler Fluidity of Coking Coals Modified By Multicomponent Plastic Wastes, Fuel, Elsevier, v. 165, p.

134-144.

(3)

152 Gransden, J.F., Jorgensen, J.G., Manery, N., Price, J.T., Ramey, N.J., 1991, Applications of Microscopy to Coke Making, International Journal of Coal Geology, Elsevier, v. 19, p. 77-107.

Hall, R., Morley, C.K., 2004, Sundaland Basins. In: Clift, P., Wang, P., Kuhnt, W., Hayes, D. E. (Eds.), Continent-Ocean Interactions within the East Asian Marginal Seas, AGU Geophysical Monograph, v. 149, p. 55–85.

Hamilton, W., 1979, Tectonics of the Indonesian Region, U.S.G.S. Prof. Paper, 1078, 345 p.

Heryanto, R., 2009, Karakteristik dan Lingkungan Pengendapan Batubara Formasi Tanjung Di Daerah Binuang dan Sekitarnya, Kalimantan Selatan, Jurnal Geologi Indonesia, v. 4, p. 239-252.

Heryanto, R., 2010, Geologi Cekungan Barito, Badan Geologi, Kementerian Energi Dan Sumber Daya Mineral, Bandung, 139 p.

Huda, M., 2013, Potensi Coking Coal Indonesia Untuk Mendukung Industri Peningkatan Nilai Tambah (PNT) Mineral, M&E, v. 11, p. 44-53.

Hutchison, C.S., 1989, Geological evolution of South East Asia. Oxford Monograph

on Geology and Geophysics, v. 13, 376 p.

http://dx.doi.org/10.1016/j.palaeo.2011.04.008.

International Committee for Caol and Organic Petrology (ICCP), 2001, The Inertinite Classification (ICCP System 1994), FUEL, Elsevier, v. 80, p. 459- 471.

Junaidi, C., 2010, Titik Persentase Distribusi t : junaidichaniago.wordpress.com (diakses pada November 2019).

Komorek, J., Morga, R., 2002, Relationship Between The Maximum and The Random Reflectance of Vitrinite For Coal From The Upper Silesian Coal Basin, Poland, Fuel, Elsevier, v. 81, p.969-971.

Kustituanto, B., Badarudin, R., 1994, Statistika 1, Gunadarma, Jakarta, 368 p.

Lamberson, M.N., Bustin, R.M., Kalkreuth, W. 1991. Lithotype (maceral) Composition and Variation As Correlated With Paleo-Wetland Environments, Gates Formation, Northeastern British Columbia, Canada. International Journal of Coal Geology, Elsevier, v. 18, p. 87-124.

McCabe, P.J., 1984, Depositional Environments of Coal and Coal-Bearing Strata, The International Association of Sedimentologists, v. 7, p. 13-42.

(4)

153

Miller, B.G., 2005, Coal Energy Systems, Elsevier Academic Press, USA, 526 p.

Mochizuki, Y., Ono, Y., Uebo, K., Tsubouchi, N., 2013, The Fate of Sulfur in Coal During Carbonization and Its Effect on Coal Fluidity, International Journal of Coal Geology, Elsevier, v. 120, p. 50-56.

Mochizuki, Y., Naganuma R., Uoebo, K., Tsubouchi, N., 2017, Some Factors Influencing The Fluidity of Coal Blends : Particle Size, Blend Ratio and Inherent Oxygen Species, Fuel Processing Technology, Elsevier, v. 159, p. 67- 75.

Nas, C., and Hindartan, 2010, The Quality of Central Kalimantan Coking Coals, Kalimantan Coal and Mineral Resources, Proceeding MGEI-IAGI, Balikpapan, p. 1-11.

Nomura, S., 2016, Coal Briquette Carbonization in A Slot-Type Coke Oven, Fuel, Elsevier, v. 185, p. 649-655.

Nomura, S., Nakagawa, T., 2016, The Yield of Coke Oven Gas From Hard and Semi-soft Coking Coals, International Journal of Coal Geology, Elsevier, v.

168, p. 179-185.

Nugroho B.A., 2005, Strategi Jitu Memilih Metode Statistik Penelitian Dengan SPSS, C.V. Andi Offset (Penerbit Andi), Yogyakarta, 142 p.

Nurudin, M., Mara, M.N., Kusnandar, D., 2014, Ukuran Sampel Dan Distribusi Sampling Dari Beberapa Variabel Random Kontinu, Buletin Ilmiah Matematika Statistik dan Terapannya, v. 03, no. 1, p. 1-6.

Oktaviani, M.A., dan Notobroto, H.B., 2014, Perbandingan Tingkat Konsistensi Normalitas Distribusi Metode Kolmogorov-Smirnov, Liliefors, Shapiro-Wilk dan Skewness-Kurtosis, Jurnal Biometrik dan Kependudukan, v. 3, no. 2, p.

127-135.

Oni, O.S., dan Ehinola, A.O., 2017, Estimation and Assesment of Free Swelling Index and Some Petrographic Properties From Chemical Analysis of Coals Across River Niger, Petroleum an Coal, v. 59 (30), p. 273-287.

Paludi, S., 2009, Identifikasi dan Pengaruh Keberadaan Data Pencilan (outlier), Majalah Ilmiah Panorama Nusantara VI, p. 56-62.

Pickel, W., Kus, J., Flores, D., Kalaitzidis, S., Christanis, K., Cardott, B.J., Misz- Kennan, M., Rodrigues, S., Hentschel, A., Hamor-Vido, M., Crosdale, P., Wagner, N., ICCP, 2017, Calssification of Liptinite – ICCP System 1994, International Journal of Coal Geology, Elsevier, v. 169, p. 40-61.

(5)

154 Permana, A.K., Ward, C.R., Gurba, L.W., 2013, Maceral Characteristics and Vitrinite Reflectance Variation of The High Rank Coals, South Walker Creek, Bowen Basin, Australia, Indonesian Journal of Geology, v. 8, no. 2, p. 63-74.

Riddell, J., dan Han, T., 2017, Ash Chwmistry Database For British Columbia Rocky Mountain Bituminous Coals, British Columbia Geological Survey, v.

10, 15 p.

Ryan, B., Gransden J., dan Price, J., 1998, Fluidity of Western Canadian and Its Relationship to Other Coal and Coke Properties, British Columbia Geological Survey, 17 p.

Ryemshak, S.A., dan Jauro, A., 2013, Prximate Analysis, Rheological Properties and Technological Applications of Some Nigerian Coals, International Journal of Industrial Chemistry, v. 4, p. 1-7.

Sarwono, J., 2017, Mengenal Prosedur – Prosedur Popula Dalam SPSS 23, PT.

Gramedia, Jakarta, 272 p.

Satyana, A.H., and Silitonga, P.D., 1994, Tectonic reversal in East Barito Basin, South Kalimantan: consideration of the types of inversion structures and petroleum system significance: in Proceedings of the IPA 23rd Annual Convention, p. 57-74.

Satyana, A.H., Eka, M.P.M, Imron, M., 2001, Eocene Coals of the Barito Basin, Southeast Kalimantan : Sequence Stratigraphic Framework and Potential for Sources of Oil, Berita Sedimentologi, v. 3, No. 17, p. 1-15.

Shui, H., Li, H., Chang, H., Wang, Z., Gao, Z., Lei, Z., Ren, S., 2011, Modification of Sub-Bituminous Coal By Steam Treatment : Caking and Coking Properties, Fuel Processing technology, Elsevier, v. 92. p. 2299-2304.

Smedowski, L., dan Piechaczek, M., 2016, Impact Of Weathering On Coal Properties And Evolution Of Coke Quality Described By Optical And Mechanical Parameters, International Journal Of Coal Geology, Elsevier, v.

168, p. 119-130.

Smith J.R., dan Smith, J.W., 2007, A Relationship Between The Carbon and Hydrogen Content of Coals and Their Vitrinite Reflectance, International Journal of Coal Geology, Elsevier, v. 70, p. 79-86.

Soetrisno, Supriatna, S., Rustandi, E., Sanyoto, P., Hasan, K., 1994, Geological Map of The Buntok Quadrangle, Kalimantan, Geological Research and Development Center, 1 p.

(6)

155 Speight, J.G., 2005, Handbook of Coal Analysis, John Wiley and Sons, Inc.,

Hoboken, New Jersey, 222 p.

SRK Consulting, 2010, Coal Project in Central Kalimantan, Indonesia, SRK Consulting Pty Ltd, Australia, 36 p.

Subekti, J., 2015, Perbandingan Analisis Perhitungan Matematika dan SPSS Analisis Regresi Linear : Pengaruh IQ Mahasiswa Terhaddap IPK, Seminar Nasional Teknologi Informasi, Komunikasi dan Aplikasinya, Malang, v. 3, p.

70-75.

Suarez Ruiz, I., Crelling, C.J., 2008, Applied Coal Petrology, Elsevier, 388 p.

Suganal, Supriatna, W., Rustomo, G., Paidi, Yuyu, E., 2009, Operasi Protype Plant Kokas, Puslitbang Teknologi Mineral Dan Batubara, Bandung, 39 p.

Suganal, 2011, Kokas Dari Batubara Non Coking : Menghilangkan Ketergantungan Kokas Impor, M&E, v. 9, p. 18-26.

Sukandarrumidi, 2009, Batubara dan Pemanfaatannya, Gadjah Mada University Press, Yogyakarta, 247 p.

Sukandarrumidi, 2014, Batubara Dan Gambut, Gadjah Mada University Press, Yogyakarta, 150 p.

Supriatna, S., Sudrajat, A., Abidin H.Z., 1995, Geological Map of The Muara Teweh Quadrangle, Kalimantan, Geological Research and Development Center, 1 p.

Sykorova, I., Pickel, W., Christanis, K., Wolf, M., Taylor, G.H., Flores, D., 2005, Classification of Huminite – ICCP System 1994, International Journal of Coal Geology, Elsevier, v. 62, p. 85-106.

Taylor, G.H., Teichmuller, M., Davis, A., Diessel, C.F.K., Littke, R., Robert, P., 1998, Organic Petrology, Gebruder Borntraeger, Stuttgart, 704 p.

Thomas, L., 2002, Coal Geology First Edition, John Wiley dan Sons, Ltd, West Sussex, United Kingdom, 384 p.

Thomas, L., 2013, Coal Geology Second Edition, John Wiley dan Sons, Ltd, West Sussex, United Kingdom, 444 p.

Tsubouchi, N., Mochizuki, Y., Ono, Y., Eebo, K., Takanohashi, T., Sakimoto, N., 2014, Sulfur And Nitrogen Distribution During Coal Carbonization And The Influence Of These Unsurs On Coal Fluidity And Coke Strength, ISIJ International, v. 54, p. 2439-2445.

(7)

156

Vassilev, S.V., Vassileva, C.G., Baxter, D., Andersen, L.K., 2010, Relationship Between Chemical and Mineral Composition of Coal and Their Potential Application As Genetic Indicators, Geological Balcanica, v. 39, p. 21-41.

Vega, M.F., Fernandez, A.M., Diaz-Faes, E., Barriocanal, C., 2017, Improving The Properties Of High Volatile Coking Coals By Controlled Mild Oxidation, Fuel, Elsevier, v. 191, p. 574-582.

Winsway Coking Coal Holdings Limited, 2011, Offering Memorandum, 276 p.

Witts, D., Hall, R., Nichols, G., dan Morley, R., 2012, A New Depositional and Provenance Model For The Tanjung Formation, Barito Basin, SE Kalimantan, Indonesia, Journal oaf Asia Earth Science, v. 56, p. 77-104.

Referensi

Dokumen terkait

[r]

Segala puji bagi Allah SWT yang telah memberikan kemudahan, karunia, dan rahmat dalam penyusunan Skripsi dengan judul "Penerapan Teori Self Care Terhadap

[r]

Gedung H, Kampus Sekaran-Gunungpati, Semarang 50229 Telepon: (024)

Kemudian diisi dengan  banyak cara yang mungkin orang dapat menduduki kursi tersebut sesuai dengan cerita..  banyak cara yang mungkin orang dapat menduduki kursi tersebut sesuai

media permainan ular tangga melalui Penelitian Tindakan Kelas yang bertujuan untuk.. membuktikan Efektifitas permainan Ular tangga untuk meningkatkan

Pemantauan pengendalian utama dilaksanakan melalui pengujian atas keberadaan atribut pengendalian utama. Dasar pemikiran yang digunakan adalah bahwa atribut merupakan

Minimisasi fungsi kriteria tidak lagi dilakukan dengan menggunakan gradien seperti pada kasus tanpa constraints, tetapi dilakukan supaya nilai perubahan sinyal optimal dari