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PERANCANGAN CONTROLLER ALGORITHM OF INNOVATIVE GUNNER (AIG) PADA HEXACOPTER UNTUK KONTROL AUTOMATIC LANDING - Repository ITK

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DAFTAR PUSTAKA

Abraham, E., Deepa, B.,Pothan, L.A., Jacob, M., Thomas, S., Cvelbar, U., dan Anadawijala, R. (2011). “Extraction of Nanocellulose Fibrils from Lignocellulosic Fibres: a novel approach”. Carbohydrate Polymers. 86(4), 1468-1475.

Azeh, Y. (2017). “Synthesis and Chracterization of Cellulose Nanoparticles and its Derivatives Using a Combination of Spectro-analytical Techniques”.

International Journal of Nanotechnology in Medicine and Engineering, 2, 6-6.

Cheng, Chong. (2012). “The hydrodynamic permeability and surface property of polyether sulfone ultrafiltration membranes with musselinspired polydopamine coatings”. Journal Of Membrane Science. TIB.

Amsterdam.

Duran, N., Lemes, A. dan Baeza, J. (2011). “A Minireview of Cellulose Nanocrystals and its Potential Integration as co-Product in Bioethanol Production”, Journal of the Chilean Chemical Society, 6(2), 672-677.

George, j., Raman, K., Bawa, A.S. (2011). “Bacterial Cellulose Nanocrystal Exhibiting High Thermal Stability and Their Polymer Nanocomposites”.

International Journal of Biological Macromolecules: 50-57.

Giorgi, L., dan Leccese, F. (2013). “Fuel Cells: Technologies and Applications”.

The Open Fuel Cells Journal. 6(1) : 1–20.

Han, J., Chengjun, Z., Alfred, D., Guangping, h., Qinglin, W. (2013).

Characterization of Cellulose II Nanoparticles Regenerated from 1-butyl- 3-methylimidazolium chloride”. Carbohydrate Polymers: 773-781.

Handayani. (2009). “Proton Transport Properties at High of Modified Sulfonated Polyether-ether Ketone Membrane for Direct Methanol Fuel Cell Application”. Journal of Chemical Engineering of Japan.

Hendrana, Sunit., Morina Septiviani Semboor, Christi Liamita Natanael, Iman Rahayu, Mashadi, dan Sudirman. (2017). “Roles of Preparation Method On Characteristic Of Supramolecular-Structured Polymer Electrolyte

(2)

Membrane Fuel Cell Based On Sulfonated Polystyrene”. Jurnal Sains Materi Indonesia Vol. 18, No 4. Research Centre for PhysicsLIPI.

Tangerang Selatan.

Idris, A, Mieow., Ahmed. (2008). “The Effect of Monosodium Glutamate Additive On Performance Of Dialysis Membrane”. J. Sci. Technol. Vol 3(

2): 172 – 179.

Ioelovich, M. (2012). “Optimal Conditions for Isolation of Nanocrystalline Cellulose Particles”. Nanoscience and Nanotechnology. 9-13.

Isroi, Wibowo, N. A., Millati, R., Syamsiah, S., Bachrudin, Z. (2013). “Effect of manganese and copper on biological preatreatment of oil palm empty fruit bunches”. Pleurotus floridanus LPIMC996.

Jahan, M. S., Sadeed, A., He, Z., Ni, Y., (2011). “Jute as Raw Material for the Preparation of Microcrystalline Cellulose”. Cellulose, 18, 451-459.

Johar, N., Ahmad, I., Dufresne, A., (2012). “Extraction, Preparation and Characterization of Cellulose fibres and Nanocrystals from Rice Husk”.

Industrial Crops and Product, 37, 93-99.

Klemm, D., Kramer, F., Mortiz, S., Lindstrom, T., Ankerfos, M., Gray, D, dan Dorris, A. (2011). “Nanocellulose : a New Family of Nature –based materials”. Angewandte Chemie International Edition, 50(24), 5438-5466.

Li, J., Wei, X., Wang, Q. (2012). “Homogeneous Isolation of nanocellulose from Sugarcane Bagasse by High Pressure Homogenization”. Carbohydrate Polymers: 1609-1613.

Liun, Edwaren., Sumardi. (2014). “Perbandingan Harga Energi Dari Sumber Energi Baru Terbarukan dan Fosil”. Jurnal Pengembangan Energi Nuklir Volume 16 Nomor 2. Pusat Kajian Sistem Energi Nuklir –BATAN.

Jakarta.

Meyer, W. H. (1998). “Polymer Electrolytes for Lithium-Ion Batteries. Adbanced Materials”. WILEY-VCH Verlag GmbH: 439-48.

Montanari, S., Mohamad, R., Laurent, H., Michel, R. (2005). ”Topochemistry of Carboxylated Cellulose Nanocrystals Resulting from TEMPO-Mediated Oxidation”. Maromolecules: 1665-1671.

(3)

Radiman, Cynhia L, (2012). “Pengaruh Perendaman Terhadap Permeabilitas Membran Polisulfon”. Jurnal Penelitian matematika dan sains Vol-7. ITB.

Rosa, M. Youssef, H., Naceur, M. B. (2010). “Cellulose Nanowhiskers from Coconut Husk Fiber: Effect of Preparation Condition on Their Thermal and Morphological Behaviour”. Carbhydrate Polymers. 81, 83-92.

Rosnelly, Cut Meurah. (2012). “Pengaruh Rasio Aditif Polietilen Glikol Terhadap Selulosa Asetat pada Pembuatan Membran Selulosa Asetat Secara Inversi Fasa”. Jurnal penelitian rekayasa kimia dan lingkungan Vol-9 Jurusan Teknik Kimia Universitas Syiah Kuala, Halm. 25-29.

Sadeghifar, H., Ilari, F., Sarah, P. C., Dermot, F., Dimitris, S, A. (2011).

Production of Cellulose Nanocrystals Using Hydrobromic acid and Click Reactions on Their Surface”. Springer. Journal Material Science.

Saputra, Muhammad Imam., (2012). “Studi Eksperimen dan Simulasi CFD Karakteristik Arus Tegangan dan Arus Daya Proton Exchange Membrane Fuel Cell”. Jurusan Teknik Mesin. Fakultas Teknik Universitas Sebelas Maret. Surakarta.

Septevani, Athanasia Amanda., Dian Burhani., Yulianti Sampora., Yenny Apriliany Devy., Gita Novi Ariani., Sudirman., Dewi Sondari., Khairatun Najwa Mohd Amin. (2019). “The Effect of Acid Hydrolysis Treatment on the Production of Nanocellulose Based Oil Palm Empty Fruit Bunches”.

Jurnal Kimia Terapan Indonesia. 31-37. LIPI. Serpong.

Silva, V. S., Mendes, A., Madeira, L. M., and Nunes, S. P. (2010). “Proton Exchange Membranes for Direct Methanol Fuel Cells: properties Critical Study Concerning Methanol Crossover and Proton Conductivity”. Journal of Membrane Science. 276: 126-134.

Solikhin, A., Hadi, Y. S., Massijaya, M. Y., dan Nikmatin, S. (2016).

Morphological and chemothermal changes of oven-heat treated oil palm empty fruit bunch fibers during dry disk milling”. Indian Acad. Wood Sci.

1-9. doi:10.007/s13196-016-0182-6.

Spiegel, Colleen. (2007). “PEM Fuel Cell Modeling and Simulation Using MATLAB”. Elsevier’s Science & Technology Rights Department in Oxford. UK.

(4)

Wang, H., Changbin, Z., Hong, H., Lian, W. (2012). “Glucose Production from Hydrolysis of Cellulose Over a Novel Silica Catalyst Under Hydrothermal Conditions”. Journal of Environtment Science: 473-478.

Wicaksono, Aris. (2012). “Sintesis dan Karakterisi Membran Komposit Polistirena Tersulfonasi dengan Zeoli Untuk Aplikasi Membran Polimer Elektrolit”. Fakultas Matematika Dan Ilmu Pengetahuan Alam.

Universitas Sebelas Maret. Surakarta.

Xiong, R., Xinxing, Z., Dong, T., Zehang, Z., Canhui, L. Comparing (2012).

Microcrystalline With Spherical Nanocrystalline Cellulose From Waste Cotton Fabrics”. Cellulose. 1189-1198.

Yang, H.C., Huang, Q., Hua, C.H., Lan, Y.K., Chen, C.L. (2003). “A Molecular Dynamics Simulation Study on Ion-Conducting Polymer sPBI-PS(Li+ )”.

Journal of the Chinese Chemical Society, 50, 529-538.

Yu, H., Qin, Z., Liang, B., Liu, N., Zhou, Z., Chen, L. (2013). “Facile extraction of Thermally Stable Cellulose Nanocrystals with a High Yield of 93%

Through Hydrocloric Acid Hydrolysis under Hydrotermal Condition”.

Journal of Materials Chemistry A. 1. 3938-3944

Zugenmaier, P. 2008. “Crystalline Cellulose and Derivatives”. Jerman: Springer –Verlag.

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