DAFTAR PUSTAKA. [2] Manfaat Minyak Sawit bagi Perekonomian Indonesia, Laporan World Growth, Februari 2011

DAFTAR PUSTAKA [1] Policy Paper, Saatnya Memajukan Kepentingan Nasional dan Kemakmuran Rakyat Tani, Maret 2011. (Jakarta: Serikat Petani Indonesia, 2...
Author: Chloe Hunt
15 downloads 0 Views 659KB Size
DAFTAR PUSTAKA

[1] Policy Paper, Saatnya Memajukan Kepentingan Nasional dan Kemakmuran Rakyat Tani, Maret 2011. (Jakarta: Serikat Petani Indonesia, 2011). [2] ”Manfaat Minyak Sawit bagi Perekonomian Indonesia”, Laporan World Growth, Februari 2011. [3] N. Abdullah, F. Sulaiman (2013). Biomass Now-Sustainable Growth and Use: The Oil Palm Wastes in Malaysia. Diakses 29 Desember 2014, dari Sciencedirect. http://dx.doi.org/10.5772/55302. [4] Joo-Young Jeong, Sung-Min Son, Jun-Hyeon Pyon, Joo-Yang Park, “Performance Comparison Between Mesophilic and Thermophilic Anaerobic Reactors for Treatment of Palm Oil Mill Effluent”, Bioresource Technology, 165 (2014), hal.74-82. [5] Sumate Chaiprapat, Tanyaluk Laklamsumate, ”Enhancing Digestion Efficiency of POME in Anaerobic Sequencing Batch Reactor with Ozonation Pretreatment and Cycle Time Reduction”, Bioresource Technology, 102 (2011): hal. 4061-4068. [6] R. Borja, ”Biogas Production”, Downstream Processing and Product Recovery, Subbab 2.55 (2011): hal. 785-798. [7] Elizabeth L. Wust. Single-Phase and Two-Phase Cheese Wastewater Treatment by Anaerobic SBRs. Thesis Submitted to the Faculty of the Graduate School, Marquette University, Milwaukee, Wisconsin, 2003. [8] WC Solomon, SU Muhammad, MY Egoh, “A Preliminary Investigation into the Effect of Ambient Temperature on Biogas Generation Using Cow-Dung from Afaka-Kaduna for Household Cooking”, International Journal of Engineering Trends and Technology (IJETT), 6(8) 2013, hal: 405-409. [9] Teodorita Al Seadi, et al. Biogas Handbook. (Biogas for Eastern Europe, 2008). ISBN 978-87-992962-0-0. [10] Bambang Trisakti, Veronica Manalu, Irvan, Taslim, Muhammad Turmuzi. “Acidogenesis of Palm Oil Mill Effluent to Produce Biogas: Effect of Hydraulic Retention Time and pH”, Procedia: Social and Behavioral Sciences, 195 (2015), hal: 2466-2474. [11] Margarita Andreas Dareioti, Aikaterini Ioannis Vavouraki, Michael Kornaros, ”Effect of pH on the Anaerobic Acidogenesis of Agroindustrial Wastewaters for Maximization of Bio-hydrogen Production: a Lab-scale

57 Universitas Sumatera Utara

Evaluation Using Batch Tests”, Bioresource Technology, 162 (2014): hal. 218227. [12] Dhanalakshmi Sridevi V, Srinivasan S V, ”Energy from BiomassComparison of Biogas Production at Ambient Temperature and at Mesophilic Temperature in Semicontinuous Anaerobic Digester Using Vegetable Market Wastes”, Carbon-Science and Technology, 6/1(2014): hal. 349-355. [13] Jianguo Jiang, Yujing Zhang, Kaimin Li, Quan Wang, Gong Changxiu, Menglu Li (2013), ”Volatile Fatty Acid Production from Food Waste: Effects of pH, Temperature, and Organic Loading Rate”, Bioresource Technology, 143 (2013), hal: 525–530. [14] Wayan R. Susila, Peluang Pengembangan Kelapa Sawit di Indonesia: Perspektif Jangka Panjang 2025, Lembaga Riset Perkebunan Indonesia, Bogor, 2008. [15] Willy Verheye,”Growth and Production of Oil Palm”, Soils, Plants Growth and Crop Production, II (2011). [16] Badan Pusat Statistik. 2012. Statistik Kelapa Sawit Indonesia. [17] Bambang Drajat, Upaya Mengatasi Black Campaign Kelapa Sawit dan Langkah Strategis ke depan, Lembaga Riset Perkebunan Nusantara, Bogor, 2012. [18] Peraturan Menteri Perindustrian Republik Indonesia, 2010, nomor: 13/MIND/PER/1/2010. [19] Heinz Stichnothe, Frank Schuchardt, Greenhouse Gas Reduction Potential Due to Smart Palm Oil Mill Residue Treatment, Institute of Agricultural Technology and Biosystems Engineering, Germany, 2010. [20] United States Department of Agriculture, Oilseeds: World Markets and Tradee, Desember 2014. [21] Ta Yeong Wu, Abdul Wahab Mohammad, Jamaliah Md. Jahim, Nurina Anuar, “Pollution Control Technologies for the Treatment of Palm Oil Mill Effluent (POME) Through end-of-pipe Processes”, Journal of Environmental Management, 91 (2010): hal. 1467-1490. [22] A.N. Ma, Augustine S.H. Ong, “Treatment of Palm Oil Steriliser Condensate by an Anaerobic Process”, Biological Wastes, XXIII (1988) hal. 8597. [23] Man Kee lam, Keat Teong Lee, “Renewable and Sustainable Bioenergies Production from Palm Oil Mill Effluent (POME): Win-Win Strategies Toward Better Environmental Protection”, Biotechnology Advances, 29 (2011): hal. 124141.

58 Universitas Sumatera Utara

[24] Yee-Shian Wong, Soon-An Ong, Kok-Keat Lim and Hong-Chen Lee, “Acclimatization and Performance Study of Acidogenesis Anaerobic Degradation Process for Palm Oil Mill Effluent”, International Conference on Environmental and Industrial Innovation, 12 (2011). [25] Jeremiah David Bala, Japareng Lalung, Norli Ismail, “Palm Oil Mill Effluent (POME) Treatment Microbial Communities in an Anaerobic Digester: a Review”, International Journal of Scientific and Research Publications, 4 (juni 2014). ISSN 2250-3153. [26] Jurnal Sumatera (2013). ”Pemkab Muratara Imbau Perusahaan Kendali Limbah Sawit”. Diakses 06 Januari 2015 dari Google. http://www.jurnalsumatra. com/2014/05/28/pemkab-muratara-imbau-perusahaan-kendali-limbah-sawit/. [27] Henry Loekito, “Teknologi Pengelolaan Limbah Industri Kelapa Sawit”, Jurnal Teknologi Lingkungan, 3(3) 2002: hal. 242-250. [28] Nasiman Sapari, T.Y. Chew, M.I. Yaziz, “Treatment of Palm Oil Mill Effluent by Mesophilic Anaerobic Digestion with Flocculant Addition”, Pertanika Journal Science and Technology, 4(2) 1996: hal. 263-273. [29] Keputusan Menteri Negara Lingkungan Hidup, 1995, Nomor: KEP51/MENLH/10/1995. [30] Thomas B. Fricke. Buku Panduan Pabrik Kelapa Sawit Skala Kecil untuk Produksi Bahan Baku Bahan Bakar Nabati (BBN). Environmental Services Program, Agustus 2009. [31] Edwi Mahajoeno, Bibiana Widiyati Lay, Surjono Hadi Sutjahjo, Siswanto, “Potensi Limbah Cair Pabrik Minyak Kelapa Sawit untuk Produksi Biogas”, Biodiversitas, 9(1) 2008: hal. 48-52. ISSN: 1412-033X. [32] Chin May Ji, Poh Phaik Eong, Tey Beng Ti, Chan Eng Seng, Chin Kit Ling, “Biogas from Palm Oil Mill Effluent (POME): Opportunities and Challenges from Malaysia’s Perspective”, Renewable and Suistainable Energy Reviews, 26 (2013): hal. 717-726. [33] Ziyan Teng, Jing hua, Changsong Wang, Xiaohua Lu, “Design and Optimization Principles of Biogas Reactors in large Scale Applications”, Reactor and Process Design in Sustainavle Energy Technology, Chapter 4 (2014): hal. 99134. [34] Volkmar Schroeder, Bernd Schalau, Maria Molnarne, “Explosion Protection in Biogas and Hybrid Power Plants”, Procedia Engineering, 84 (2014): hal. 259272.

59 Universitas Sumatera Utara

[35] American Biogas Council, “Advantages of vehicle Fuel vs Other Biogas Uses in Agricultural AD Systems”, Conference Indianapolis IN (2013). [36] Dieter Deublein, Angelika Steinhauster, 2008 Biogas from Waste and Renewable Resources. An Introduction (Singapore: WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)., 2008. [37] Mario Andres Hernandez, Manuel Rodriguez Susa, Yves Andres, “Use of Coffee Mucilage as a New Substrate for Hydrogen Production in Anaerobic Codigestion with Swine Manure”, Bioresource Technology, 168 (2014): hal. 112118. [38] Aliyu Salihu, Md. Zahangir alam, “Palm Oil Mill Effluents: a Waste or a Raw Material”, Journal of Applied Sciences Research, 8(1) 2012: hal. 466-473, ISSN 1819-544X. 44 (2013): hal. 1-7. [39] NREL. 2013. Biogas Potential in the United States. National Laboratory of the U.S Department of Energy. [40] DJ Batstone, PD Jensen, “Anaerobic Processes”, Subbab 4.17 (2011): hal. 615-639. [41] N. Gray, “Anaerobic Treatment”, Chapter 19 (2005): hal. 518-534. [42] Anna Schurer, Asa Jarvis. Microbiological Handbook for Biogas Plants. (Svenskt Gastekniskt Center AB: Victoria, British Columbia, Canada, 2009). [43] D.Buntner, A.Sanchez, J.M.Garrido, “Feasibility of Combined UASB and MBR System in Dairy Wastewater Treatment at Ambient Temperatures”, Chemical Engineering Journal, 230 (2013): hal. 475-481. [44] Joshua Rapport, Ruihong Zhang, Bryan M.Jenkins, Robert B.Williams. Current Anaerobic Digestion Technologies Used for Treatment of Municipal Organic Solid Waste. Contractor’s Report to the Board, 2008. [45] XJ Zhang, “Anaerobic Process”, Comprehensive Water Quality and Purification, Volume 3 Subbab 3.7 (2014): hal. 108-122. [46] Ken Anderson, Paul Sallis, Sinan Uyanik, “Anaerobic Treatment Processes” The Handbook of Water and Wastewater Microbiology, Chapter 24 (2003): hal. 391-426, ISBN 0-12-470100-0. [47] Alistair David Broughton, Hydrolysis and Acidogenesis of Farm Dairy Effluent for Biogas Production at Ambient Temperatures, Thesis for Master of Engineering in Environmental Engineering, 2009.

60 Universitas Sumatera Utara

[48] Jin-Young Jung, Sang-Min Lee, Pyong-Kyun Shin, Yun-Chul Chung, “Effect of pH on Phase Separated Anaerobic Digestion”, Biotechnology Bioprocess Engineering, 5(6) 2000: hal 456-459. [49] Denise Cysneiros, Charles J.Banks, Sonia Heaven, Kimon-Andreas G.Karatzas, “The Role of Phase Separation and feed Sysle Length in Leach Beds Coupled to Methanogenic Reactors for Digestion of a Solid Substrate (part 1): Optimisation of Reactor Performance”, Bioresource Technology, 103(2012): hal. 56-63. [50] Noha Nasr, Elsayed Elbeshbishy, Hisham Hafez, George Nakhla, M.Hesham El Naggar, “Comparative Assessment of Single-Stage and Two-Stage Anaerobic Digestion for the Treatment of Thin Stillage”, Bioresource Technology, 111 (2012): hal. 122-126. [51] JE Hernandez, RGJ Edyvean, “Comparison Between a Two-Stage and Single-Stage Digesters When Treating a Synthetic Wastewater Contaminated With Phenol”, Water SA, 37(1) 2011: hal. 27-32. ISSN 1816–7950. [52] Prawit Kongjan, Rattana Jariyaboon, Sompong O-Thong, “Anaerobic Digestion of Skim Latex Serum (SLS) for Hydrogen and Methane Production Using a Two-Stage Process in a Seies of Up-Flow Anaerobic Sludge Blanket (UASB) Reactor”, International Journal of Hydrogen Energy, 39 (2014): hal. 19343-19348. [53] K. Stamatelatou G.Antonopoulou, G.Lyberatos, “Production of Biogas Via Anaerobic Digestion”, Handbook of Biofuels Production, Chapter 12 ( 2011): hal. 266-304. [54] Michael H Gerardi, “The Microbiology of Anaerobic Digesters”, Wastewater Microbiology Series, Part I (John Willey and Sons: New Jersey 2003). [55] Qigui Niu, Toshimasa Hojo, Wei Qiao, Hong Qiang, Yu-You Li,” Characterization of Methanogenesis, Acidogenesis and Hydrolysis in Thermophilic Methane Fermentation of Chicken Manure”, Chemical Engineering Journal, 244 (2014): hal. 587–596. [56] Rene Moletta. 2011. Anaerobic Digestion Monitoring and Control. Laboratoire de Biotechnologie de l’Environment. [57] A.K. Kivaisi dan M. Mtila, ”Production of Biogas from Water Hyacinth (Eichhornia crassipes) (Mart) (Solms) in a Two-Stage Bioreactor”, World Journal of Microbiology and Biotechnology, 14 (1998), hal: 125–131. [58] Rongpin Li, Shulin Chen, Xiujiu Li, ” Biogas Production from Anaerobic

Co-digestion of Food Waste with Dairy Manure in a Two-Phase Digestion System”, Biochem Bioethanol, 160 hal: 643–654.

61 Universitas Sumatera Utara

[59] Cavinato C, Bolzonella D, Fatone F, Cecchi F dan Pavan P, ”Optimization of Two-Phase Thermophilic Anaerobic Digestion of Biowaste for Bio-Hythane Production Through Reject Water Recirculation”, Bioresource Technology, 102 (18), hal: 8.605–8.611. [60] Pertamina (2015). Harga LPG 12 kg Ditingkat Agen tmt 1 April 2015. http://www.pertamina.com. [61] APHA. 1999. Standard Methods for the Examination of Water and Waste Water. Edisi 20. Washington DC : APHA, AWWA, WEF. [62] Yoshimassa, Tomiuchi. 2009. Current Strategy of Metawater on Methane Fermentation of Palm Oil Plant Wastewater. Metawater Co.,Ltd. [63] Standar Nasional Indonesia. Air dan Air Limbah – Bagian 15: Cara uji Kebutuhan Oksigen Kimiawi (KOK) Refluks Terbuka dengan Refluks Terbuka secara Titrimetri. SNI 06-6989.15-2004. [64] Chris O. Nwoko, Sola Ogunyemi, ”Evaluation of Palm Oil Mill Effluent to Maize (Zea mays. L) Crop: Yields, Tissue Nutrient Content and Residual Soil Chemical Properties”, Australian Journal of Crop Sciences, 4 (1), hal: 16–22 (2010). [65] Yin Jing Chan, Mei Fong Chong, Chung Lim Law, “An Integrated Anaerobic-Aerobic Bioreactor (IAAB) for the Treatment of Palm Oil Mill Effluent (POME): Start-up and Steady State Performance”, Process Biochemistry, 47 (2012), hal: 485–495. [66] Hina Rizvi, Nasir Ahmad, Farhat Abbas, Iftikhar Hussain Bukhari, Abdullah Yasar, Shafaqat Ali, Tahira Yasmeen, Muhammad Riaz, “Start-Up of UASB Reactors Treating Municipal Wastewater and Effect of Temperature/Sludge Age and Hydraulic Retention Time (HRT) on Its Performance”, Arabian Journal of Chemistry, 2014. [67] Thomas Schmidt, Ayrat M. Ziganshin, Marcell Nikolausz, Frank Scholwin, Michael Nelles, Sabine Kleinteuber, Jurgen Proter, ”Effects og the Reduction of the Hydraulic Retention Time to 1,5 Days at Constant Organic Loading in CSTR, ASBR, and Fixed-Bed-Reactor – Performance and Methanogenic Community Composition”, Biomass and Bioenergy, 69 (2014), hal: 241–248. [68] Jingxin Zhang, Yaobin Zhang, Xie Quan, Shuo Chen, “Enhancement of Anaerobic Acidogenesis by Integrating an Electrochemical System into an Acidogenic Reactor: Effect of Hydraulic Retention Times (HRT) and Role of Bacteria and Acidophilic Methanogenic Archaea”, Bioresource Technology, 179 (2015), hal: 43–49. [69] Yee-Shian Wong, Tjoon Tow Teng, Soon-An Ong, M. Norhashimah, M. Rafatullah, Hong-Chen Lee, “Anaerobic Acidogenesis Biodegradation of Palm

62 Universitas Sumatera Utara

Oil Mill Effluent Using Suspended Closed Anaerobic Bioreactor SCABR) at Mesophilic Temperature”, Procedia Environmental Sciences, 18 (2013), hal: 433– 441. [70] Chunseng Zhang, Haija Su, Jan Baeyens, Tianwei Tan, “Reviewing the anaerobic digestion of food waste for biogas production”, Renewable and Suistainable Energy Reviews, 38 (2014), hal: 383–392. [71] R. E. Speece, 1996. Anaerobic Biotechnology for Industrial Wastewaters. Archae Press: USA. ISBN 0–9650226–0–9. [72] Kaushalya C. Wijekoon, Chettiyappan Visvanathan, Amila Abeynayaka, “Effect of Organic Loading Rate on VFA Production, Organic Matter Removal and Microbial Activity of a Two-Stage Thermophilic Anaerobic Membrane Bioreactor”, Bioresouce Technology, 102 (2011): 5353–5360. [73] A.E. Ghaly, D.R. Ramkumar, S.S. Sadaka, J.D. Rochon, “ Effect of Reseeding and pH Control on The Performance of a Two-Stage Mesophilic Anaerobic Digester Operating on Acid Cheese Whey”, Canadian Agricultural Engineering, vol 42, no.4, hal: 173–183. [74] Han Qing Yu, Herbert H.P. Fang, “Acidogenesis of Gelatin-Rich Wastewater in an Upflow Anaerobic Reactor: Influence of pH and Temperature”, Water Research, 37 (2003), hal: 55–66. [75] Jey-R Sabado Ventura, Jehoon Lee, Deokjin Jahng, “A Comparative Study on the Alternating Mesophilic and Thermophilic Two-Stages Anaerobic Digestion on Food Waste”, Journal of Environmental Sciences, 26 (2014), hal: 1274-1283. [76] Joseph R. Asztalos, Younggy Kim, “Enhanced Digestion of Waste Activated Sludge Using Microbial Electrolysis Cells at Ambient Temperature”, Water Research, (2015), hal: 1–10.

63 Universitas Sumatera Utara