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Ditemukan 63756 dokumen yang sesuai dengan query
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Vincent Lee
"Combustion synthesis, or more specifically self-propagating high temperature synthesis, is an efficient manufacturing process that is used for a variety of advanced materials including powders, near-net shape products and functionally graded materials. This project investigated the combustion synthesis of one nonstoichiometric titanium carbide system with the aim to produce high surface-area porous materials. The system investigated was the (1+x)Ti + C system where x = 1.4, x = 1.6 and x = 1.7 and were successful SHS reactions. The combusted samples produced from the x = 1.4 system were qualitatively analysed with Scanning Electron Microscopy, showing porosity variation in the distance from the ignition point. X-Ray Powder Diffraction was performed on one of the samples and shows similar composition yet differing crystal structures to some comparable TiCx compounds. Velocity Profiles were taken to determine that the reaction wavefront begins in the middle of the sample and after ignition travels more rapidly on the outside. 500W of power is required to heat the Tungsten filament to the temperature required to initiate propagation of the reaction. The x = 1.6 and x = 1.7 velocity profiles were analysed and it was concluded that the x = 1.6 reaction wavefront is faster than the x = 1.7 reaction wavefront."
Depok: Fakultas Teknik Universitas Indonesia, 2014
S57389
UI - Skripsi Membership  Universitas Indonesia Library
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Chandra Pratama Wiyaga
"Pengembangan baterai listrik sebagai sumber energi utama untuk electricity-vehicle menjadi fokus utama dalam industri otomotif terkini. Salah satu dari sumber energi listrik yang paling banyak dikembangkan adalah baterai ion lithium. Komponen penting pada Baterai Ion-Lihium yakni katoda merupakan salah satu komponen yang banyak dilakukan pengembangan pada bidang industri, katoda yang paling banyak digunakan pada pengembangan industri baterai ion-lihium adalah LiCoO2 dan NMC 622. NMC material memiliki keuntungan dibandingkan LiCoO2 terutama dalam keseimbangan energy density, power capability, dan cost dari produk. Material NMC juga memiliki kesetimbangan termal yang lebih baik dibandingkan LiCoO2 sehinga lebih safety dalam proses sintesis material. Penelitian kali ini, menggunakan NMC 622 sebagai katoda utama dengan disintesis menggunakan metode solution combustion (SCS) dengan variasi suhu sintering. Metode solution combustion digunakan karena metode ini sederhana dalam pengunaannya, cost yang cenderung murah, dan proses sintesis tidak memakan waktu yang lama. Untuk mendapatkan data penelitian, mengenai performa terbaik pada hasil sisntesis dilakukan variasi suhu sintering pada 3 variasi suhu 700 oC, 800 oC, dan 900 oC. Hasil dari uji SEM-EDS menyatakan bahwa material memiliki distribusi partikel yang baik. Hasil XRD menunjukkan hasil struktur material yang berbentuk hexagonal. NMC 622 800 oC memiliki kapasitas 137.24787 mAh/g, NMC 622 700 oC sebesar 101.56644 mAh/g dan kapasitas NMC 622 900 oC sebesar 66.61218 mAh/g.

The development of electric batteries as the main energy source for electricity-vehicles is a major focus in the current automotive industry. One of the most widely developed sources of electrical energy is the lithium-ion battery. An important component in the Ion-Lihium Battery, cathode is one of the components that is widely developed in the industrial field, the cathode that is most widely used in the development of the ion-lihium battery industry is LiCoO2 and NMC 622. NMC material has advantages over LiCoO2 especially in the balance of energy density, power capability, and cost of the product. NMC material also has a better thermal equilibrium than LiCoO2 so that it is more safety in the material synthesis process. This research uses NMC 622 as the main cathode by synthesizing it using the solution combustion (SCS) method with variations in sintering temperature. The solution combustion method is used because this method is simple in its use, the cost tends to be cheap, and the synthesis process does not take a long time. To obtain research data, regarding the best performance in the synthesis results, sintering temperature variations were carried out at 3 temperature variations of 700 oC, 800 oC, and 900 oC. The results of the SEM-EDS test state that the material has a good particle distribution. XRD results show the results of hexagonal material structure. NMC 622 800 oC has a capacity of 137.24787 mAh/g, NMC 622 700 oC of 101.56644 mAh/g and a capacity of NMC 622 900 oC of 66.61218 mAh/g."
Depok: Fakultas Teknik Universitas Indonesia, 2023
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UI - Skripsi Membership  Universitas Indonesia Library
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Glassman, Irvin
New York: Academic Press, 1977
541.361 GLA c
Buku Teks SO  Universitas Indonesia Library
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Glassman, Irvin
""The parameters essential for the evaluation of combustion systems are the equilibrium product temperature and composition. If all the heat evolved in the reaction is employed solely to raise the product temperature, this temperature is called the adiabatic flame temperature. Because of the importance of the temperature and gas composition in combustion considerations, it is appropriate to review those aspects of the field of chemical thermodynamics that deal with these subjects"-- Provided by publisher."
Waltham, MA: Academic Press , 2015
541.361 GLA c
Buku Teks SO  Universitas Indonesia Library
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Glassman, Irvin
New York, N.Y: Academic Press, 1996
541.361 GLA c
Buku Teks SO  Universitas Indonesia Library
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Kanury, A. Murty
New York: Gordon and Breach, 1984
541.361 KAN i
Buku Teks SO  Universitas Indonesia Library
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Kuo, Kenneth Kuan-Yun
New York : John Wiley & Sons, 1986
541.361 KUO p
Buku Teks SO  Universitas Indonesia Library
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Arum Ma`Rifatun Khikmah
"Sintesis Periodic Mesoporous Organosilica dengan jembatan biphenylene telah berhasil dilakukan menggunakan metode sol gel dengan kehadiran surfaktan sebagai template. Selanjutnya fungsionalisasi Bph-PMO dengan gugus amina telah berhasil dilakukan dengan dua langkah reaksi kimia yaitu reaksi nitrasi menggunakan HNO3 65%/H2SO4 96% dan reduksi menggunakan menggunakan SnCl2/HCl 37%. Hasil sintesis kemudian dikarakterisasi menggunakan FTIR, XRD, dan TEM EDX. Karakterisasi TEM mengkonfirmasi struktur material Bph-PMO memiliki struktur mesopori 2D hekasogonal dengan periodisitas molekuler, setelah difungsionalisasi dengan ukuran rata-rata diamater partikel sebesar 223.7 nm. Modifikasi permukaan pada NH2-Bph-PMO dengan nanopartikel perak telah dilakukan dengan metode impregnasi dan reduksi menggunakan AgNO3 sebagai prekursor perak dan NaBH4 sebagai agen pereduksi. Hasil karakterisasi XRD mengkonfirmasi keberadaan nanopartikel perak pada nilai 2θ = 38.1o, 44.2o, 64.5o dan 77,4o. Perhitungan besar ukuran kristal rata-rata dari nanopartikel perak dalam Ag/NH2-Bph-PMO adalah 8,05 nm berdasarkan persamaan Debye- Scherer. Kemampuan adsorpsi CO2 pada material Bph-PMO, NH2-Bph-PMO dan Ag/NH2-Bph-PMO ditentukan menggunakan metode titrimetri. Banyaknya CO2 yang teradsorpsi selama 15 menit dari masing masing material adalah 33.44, 8.392, dan 16.4 mmol. Reaksi karboksilasi fenilasetilena dengan CO2 dilakukan dengan variasi suhu (25oC, 50oC, dan 70oC). Hasil reaksi dianalisa menggunakan HPLC dan menunjukkan %konversi terbaik pada suhu 50oC yaitu 46.74%.

Synthesis of Biphenyl Periodic Mesoporous Organosilica (Bph-PMO) has been successfully carried out using the sol gel method in the presence of surfactants as a template. Furthermore, the functionalization of Bph-PMO with an amine group has been successfully carried out with two steps of a chemical reaction, nitration reaction (HNO3 65%/H2SO4 96%) and reduction (SnCl2/HCl 37%). Results of the synthesis were characterized using FTIR, XRD, and TEM EDX. TEM characterization confirmed that Bph-PMO material having a 2D hekasogonal mesoporous structure with molecular periodicity, after functionalized the material have average particle size of 223.7 nm. Surface modification of NH2-Bph-PMO with silver nanoparticles has been carried out by impregnation and reduction method using AgNO3 as a silver precursor and NaBH4 as a reducing agent. The result of XRD characterization confirmed the presence of silver nanoparticles at 2θ = 38.1o, 44.2o, 64.5o and 77.4o. Based of Debye-Scherer Calculation the average crystal size of silver nanoparticles in Ag/NH2-Bph-PMO is 8.05 nm. The capacity adsorption of CO2 on Bph-PMO, NH2-Bph-PMO and Ag/NH2-Bph-PMO materials was determined using the titrimetry method. The amount of CO2 adsorbed for 15 minutes from each material is 33.44, 8,392 and 16.4 mmol. The carboxylation reaction of phenyl acetylene with CO2 was carried out with variation of temperature (25oC, 50oC, and 70oC). The results of the reaction were analyzed using HPLC and showed the best conversion at 50oC at 46.74%."
Depok: Fakultas Matematika dan Ilmu Pengetahuan Alam Universitas Indonesia, 2020
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UI - Skripsi Membership  Universitas Indonesia Library
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