Artículos de revistas sobre el tema "Explosives, fuels, related products"
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Zhou, Hui Sheng, Xing Hua Xie, Shao Bo Yan y Zeng Yuan Li. "Ceramic Oxides from Liquid Explosive Reaction". Key Engineering Materials 807 (junio de 2019): 176–81. http://dx.doi.org/10.4028/www.scientific.net/kem.807.176.
Texto completoŠtimac Tumara, Barbara, Mario Dobrilović, Vinko Škrlec y Muhamed Sućeska. "Determination of detonation front curvature radius of ANFO explosives and its importance in numerical modelling of detonation with the Wood-Kirkwood model". Rudarsko-geološko-naftni zbornik 38, n.º 2 (2022): 97–107. http://dx.doi.org/10.17794/rgn2022.2.9.
Texto completoBajcar, Marcin, Bogdan Saletnik, Grzegorz Zaguła y Czesław Puchalski. "Analysis of the Effect of the Biomass Torrefaction Process on Selected Parameters of Dust Explosivity". Molecules 25, n.º 15 (1 de agosto de 2020): 3525. http://dx.doi.org/10.3390/molecules25153525.
Texto completoMotrichuk, R., O. Kyrychenko, O. Dibrova, V. Vashchenko y S. Kolinko. "THE RESEARCH OF IGNITION AND COMBUSTION OF ALUMINUM AND MAGNESIUM ALLOYS IN THE PRODUCTS OF DECOMPOSITION OF SOLID PYROTECHNICAL FUELS". Scientific bulletin: Сivil protection and fire safety 1, n.º 2 (18 de febrero de 2020): 81–85. http://dx.doi.org/10.33269/nvcz.2019.2.81-85.
Texto completoXie, Xing Hua, Xiao Jie Li, Shi Long Yan, Meng Wang, Ming Xu, Zhi Gang Ma, Hui Liu y Zi Ru Guo. "Low Temperature Explosion for Nanometer Active Materials". Key Engineering Materials 324-325 (noviembre de 2006): 193–96. http://dx.doi.org/10.4028/www.scientific.net/kem.324-325.193.
Texto completoViktorov, S. D., A. E. Frantov y I. N. Lapikov. "Development of the Potential for the Cheap Explosives in Russia". Occupational Safety in Industry, n.º 8 (agosto de 2021): 7–14. http://dx.doi.org/10.24000/0409-2961-2021-8-7-14.
Texto completoYan, Shi Long, Xing Hua Xie y Hui Sheng Zhou. "Deflagration of Emulsion Explosive". Advanced Materials Research 1082 (diciembre de 2014): 18–21. http://dx.doi.org/10.4028/www.scientific.net/amr.1082.18.
Texto completoAkinin, N. I., A. S. Garmashov y D. I. Mikheev. "Ecotoxicity Assessment of the Industrial Explosives Explosion Products". Occupational Safety in Industry, n.º 2 (febrero de 2021): 36–40. http://dx.doi.org/10.24000/0409-2961-2021-2-36-40.
Texto completoDamdinsuren, Erdenechimeg. "Automation of Producing Explosives for Mining Industry". Applied Mechanics and Materials 513-517 (febrero de 2014): 4378–81. http://dx.doi.org/10.4028/www.scientific.net/amm.513-517.4378.
Texto completoPermana, Sidik, Novi Trian, Abdul Waris, Su'ud Zaki, I. Mail y Mitsutoshi Suzuki. "Irradiation and Cooling Process Effects on Material Barrier Analysis Based on Plutonium Composition of LWR". Advanced Materials Research 772 (septiembre de 2013): 513–18. http://dx.doi.org/10.4028/www.scientific.net/amr.772.513.
Texto completoYuan, Xiaoxia, Hongliang Ma, Lei Zhang y Fang Li. "Study on the cylinder test of aluminized explosives with different content of Al powder". Journal of Physics: Conference Series 2478, n.º 3 (1 de junio de 2023): 032019. http://dx.doi.org/10.1088/1742-6596/2478/3/032019.
Texto completoMiliukiene, Valė y Narimantas Čėnas. "Cytotoxicity of Nitroaromatic Explosives and their Biodegradation Products in Mice Splenocytes: Implications for their Immunotoxicity". Zeitschrift für Naturforschung C 63, n.º 7-8 (1 de agosto de 2008): 519–25. http://dx.doi.org/10.1515/znc-2008-7-809.
Texto completoWilliams, Richard E., Deborah A. Rathbone, Nigel S. Scrutton y Neil C. Bruce. "Biotransformation of Explosives by the Old Yellow Enzyme Family of Flavoproteins". Applied and Environmental Microbiology 70, n.º 6 (junio de 2004): 3566–74. http://dx.doi.org/10.1128/aem.70.6.3566-3574.2004.
Texto completoKarp, Grażyna y Wojciech Dzięgielewski. "The Use of Instrumental Methods to Identify Liquid Fuels Applied in the Polish Armed Forces". Journal of KONBiN 49, n.º 2 (1 de junio de 2019): 421–29. http://dx.doi.org/10.2478/jok-2019-0043.
Texto completoKrivosheeva, Alina R., Anna V. Ananeva, Elvira N. Tarazova, Tatiana A. Eneykina y Rose F. Gatina. "An algorithm development for producing of standard samples of explosives". Butlerov Communications 59, n.º 8 (31 de agosto de 2019): 69–77. http://dx.doi.org/10.37952/roi-jbc-01/19-59-8-69.
Texto completoWang, Mingyang, Songlin Yue, Ning Zhang, Kanghua Gao y Derong Wang. "A Method of Calculating Critical Depth of Burial of Explosive Charges to Generate Bulging and Cratering in Rock". Shock and Vibration 2016 (2016): 1–11. http://dx.doi.org/10.1155/2016/6860743.
Texto completoBayseytov, D. A., A. A. Prikhodko, B. Zh Shirinbekova, B. U. Bayzakova y E. L. Iovleva. "Chemical Marking of Explosives to Improve the Safety of Blasting Operations". Occupational Safety in Industry, n.º 2 (febrero de 2023): 48–54. http://dx.doi.org/10.24000/0409-2961-2023-2-48-54.
Texto completoMathur, Shivangi, Hunny Waswani, Deeksha Singh y Rajiv Ranjan. "Alternative Fuels for Agriculture Sustainability: Carbon Footprint and Economic Feasibility". AgriEngineering 4, n.º 4 (19 de octubre de 2022): 993–1015. http://dx.doi.org/10.3390/agriengineering4040063.
Texto completoHidalgo, José, Michal Zbuzek, Radek Černý y Petr Jíša. "Current uses and trends in catalytic isomerization, alkylation and etherification processes to improve gasoline quality". Open Chemistry 12, n.º 1 (1 de enero de 2014): 1–13. http://dx.doi.org/10.2478/s11532-013-0354-9.
Texto completoGhezavati, VR, A. Sahihi y A. Barzegar. "Using an the intelligent self-modifier of probability of section approach to study the revenue influence of the pricing scheme of recyclable items in a green vehicle routing problem". SIMULATION 94, n.º 4 (26 de junio de 2017): 359–72. http://dx.doi.org/10.1177/0037549717714332.
Texto completoKazakov, Petar, Atanas Iliev y Emil Marinov. "DIESEL ENGINE OPERATION IN USE OF FUEL WITH ADDITIVES". International Conference on Technics, Technologies and Education, n.º 1 (2018): 18–24. http://dx.doi.org/10.15547/10.15547/ictte.2018.01.003.
Texto completoRashid Khan, Haroon ur, Usama Awan, Khalid Zaman, Abdelmohsen A. Nassani, Mohamed Haffar y Muhammad Moinuddin Qazi Abro. "Assessing Hybrid Solar-Wind Potential for Industrial Decarbonization Strategies: Global Shift to Green Development". Energies 14, n.º 22 (15 de noviembre de 2021): 7620. http://dx.doi.org/10.3390/en14227620.
Texto completoKrawczyk, Piotr, Krzysztof Badyda y Aleksandra Mikołajczak. "The environmental impact of refuse derived fuel co-combustion with lignite". MATEC Web of Conferences 240 (2018): 05013. http://dx.doi.org/10.1051/matecconf/201824005013.
Texto completoKazakov, Petar, Atanas Iliev y Emil Marinov. "DIESEL ENGINE OPERATION IN USE OF FUEL WITH ADDITIVES". International Conference on Technics, Technologies and Education, n.º 1 (2018): 18–24. http://dx.doi.org/10.15547/ictte.01.003.
Texto completoRus, Daniela-Carmen, Claudia Miron, Olga Miclea, Claudia Ilici y Mircea Grecea. "Computerized simulations and modelling for evaluation of ballistic and security parameters of explosives for civil use". MATEC Web of Conferences 373 (2022): 00047. http://dx.doi.org/10.1051/matecconf/202237300047.
Texto completoZhang, Xiao Xiong, Guan Yi Chen y Yi Wang. "Review of Reactor and Catalyst in the Pyrolysis of Biomass for Liquid Fuels". Advanced Materials Research 512-515 (mayo de 2012): 552–57. http://dx.doi.org/10.4028/www.scientific.net/amr.512-515.552.
Texto completoYadav, Vikramaditya G., Ganapati D. Yadav y Saurabh C. Patankar. "The production of fuels and chemicals in the new world: critical analysis of the choice between crude oil and biomass vis-à-vis sustainability and the environment". Clean Technologies and Environmental Policy 22, n.º 9 (21 de septiembre de 2020): 1757–74. http://dx.doi.org/10.1007/s10098-020-01945-5.
Texto completoMargellou, Antigoni y Konstantinos Triantafyllidis. "Catalytic Transfer Hydrogenolysis Reactions for Lignin Valorization to Fuels and Chemicals". Catalysts 9, n.º 1 (4 de enero de 2019): 43. http://dx.doi.org/10.3390/catal9010043.
Texto completoNaim, I. y T. Mahara. "Fuel Substitution for Energy Saving: A Case Study of Foundry Plant". Engineering, Technology & Applied Science Research 8, n.º 5 (13 de octubre de 2018): 3439–44. http://dx.doi.org/10.48084/etasr.2298.
Texto completoSilva, Susmita, Abdi Seno y Andy Hermanto. "Kinerja Inert Gas Generator Untuk Mendapatkan Oksigen Konten 3% Pada Gas Lembam". Jurnal Sains Teknologi Transportasi Maritim 4, n.º 1 (30 de mayo de 2022): 7–13. http://dx.doi.org/10.51578/j.sitektransmar.v4i1.43.
Texto completoPark, Myung Ho y Dae Yong Shin. "The Combustion Characteristics of Refuse Derived Fuels Using Coke/Waste Tire". Materials Science Forum 486-487 (junio de 2005): 265–68. http://dx.doi.org/10.4028/www.scientific.net/msf.486-487.265.
Texto completoSlavinskaya, N. A., U. Riedel, V. E. Messerle y A. B. Ustimenko. "Chemical Kinetic Modeling in Coal Gasification Processes: an Overview". Eurasian Chemico-Technological Journal 15, n.º 1 (24 de diciembre de 2012): 1. http://dx.doi.org/10.18321/ectj134.
Texto completoHubbe, Martin A. "Retro-,' An emerging prefix for future technological development?" BioResources 4, n.º 1 (2009): 1–2. http://dx.doi.org/10.15376/biores.4.1.1-2.
Texto completoJohnson, Eric y Carl Vadenbo. "Modelling Variation in Petroleum Products’ Refining Footprints". Sustainability 12, n.º 22 (10 de noviembre de 2020): 9316. http://dx.doi.org/10.3390/su12229316.
Texto completoSaletnik, Bogdan, Grzegorz Zaguła, Marcin Bajcar, Maria Tarapatskyy, Gabriel Bobula y Czesław Puchalski. "Biochar as a Multifunctional Component of the Environment—A Review". Applied Sciences 9, n.º 6 (18 de marzo de 2019): 1139. http://dx.doi.org/10.3390/app9061139.
Texto completoKumar, Brajesh, Shashi Kumar y Surendra Kumar. "Butanol reforming: an overview on recent developments and future aspects". Reviews in Chemical Engineering 34, n.º 1 (20 de diciembre de 2017): 1–19. http://dx.doi.org/10.1515/revce-2016-0045.
Texto completoNair, Reena Das, Pamela Mondliwa y Simon Roberts. "The inter-relationships between regulation and competition enforcement in the South African liquid fuels industry". Journal of Energy in Southern Africa 26, n.º 1 (23 de marzo de 2015): 11–19. http://dx.doi.org/10.17159/2413-3051/2015/v26i1a2216.
Texto completoAndrade, Larissa Renata Santos, Raul José Alves Felisardo, Ianny Andrade Cruz, Muhammad Bilal, Hafiz M. N. Iqbal, Sikandar I. Mulla, Ram Naresh Bharagava, Ranyere Lucena de Souza, Lucas Carvalho Basilio Azevedo y Luiz Fernando Romanholo Ferreira. "Integrated Biorefinery and Life Cycle Assessment of Cassava Processing Residue–From Production to Sustainable Evaluation". Plants 11, n.º 24 (18 de diciembre de 2022): 3577. http://dx.doi.org/10.3390/plants11243577.
Texto completoLai, Zi, Li Lee y Hong Li. "Electroreforming of Biomass for Value-Added Products". Micromachines 12, n.º 11 (16 de noviembre de 2021): 1405. http://dx.doi.org/10.3390/mi12111405.
Texto completoBeskoski, Vladimir, Valerija Matic, Jelena Milic, Dejan Godjevac, Boris Mandic y Miroslav Vrvic. "Oxidation of dibenzothiophene as a model substrate for the removal of organic sulphur from fossil fuels by iron(III) ions generated from pyrite by Acidithiobacillus ferrooxidans". Journal of the Serbian Chemical Society 72, n.º 6 (2007): 533–37. http://dx.doi.org/10.2298/jsc0706533b.
Texto completoKamarova, Saule, Saule Abildinova, Angel Terziev y Aliya Elemanova. "The efficiency analysis of the SH-25A ball drum mill when grinding industrial products of fossil fuels". E3S Web of Conferences 180 (2020): 01003. http://dx.doi.org/10.1051/e3sconf/202018001003.
Texto completoPietrzyk, Damian y Anna Klepacz-Smółka. "The use of out-of-date frozen food as a substrate for biogas in anaerobic methane fermentation". Acta Innovations, n.º 29 (1 de octubre de 2018): 67–75. http://dx.doi.org/10.32933/actainnovations.29.7.
Texto completoFeng, Da-Ming, Ying Sun, Zhao-Qing Liu, Yun-Pei Zhu y Tian-Yi Ma. "Designing Nanostructured Metal-Based CO2 Reduction Electrocatalysts". Journal of Nanoscience and Nanotechnology 19, n.º 6 (1 de junio de 2019): 3079–96. http://dx.doi.org/10.1166/jnn.2019.16648.
Texto completoXu, Runsheng, Jianliang Zhang, Wei Wang, Bowen Dai, Haibin Zuo, Zhengliang Xue y Mingming Song. "Evolutional behavior of carbonaceous material during dissolution in molten iron of COREX". Metallurgical Research & Technology 115, n.º 4 (2018): 418. http://dx.doi.org/10.1051/metal/2018020.
Texto completoPETROV, Sergei A., Natali L. MAMAEVA y Maksim V. NARUSHKO. "PROBLEM-DIALOGUE TECHNOLOGY OF FORMING ENVIRONMENTAL COMPETENCE AMONG SPECIALISTS FOR WORK IN THE ARCTIC AND SUBARCTIC CONDITIONS OF THE RUSSIAN FEDERATION". Periódico Tchê Química 16, n.º 32 (20 de agosto de 2019): 362–74. http://dx.doi.org/10.52571/ptq.v16.n32.2019.380_periodico32_pgs_362_374.pdf.
Texto completoSivriu, Ana Maria, Doinita Roxana Tarpan, Claudia-Irina Koncsag, Alina Monica Mares y Cosmin Jinescu. "Analytical Semi-Empirical Model for the Prediction of Products Yields at the Fast Pyrolysis of Waste Palm Oil". Revista de Chimie 70, n.º 6 (15 de julio de 2019): 1992–95. http://dx.doi.org/10.37358/rc.19.6.7261.
Texto completovan Damme, Irene M., Pol Mestres-Fitó, Henk-Jan Ramaker, Annemieke W. C. Hulsbergen, Antoine E. D. M. van der Heijden, Ruben F. Kranenburg y Arian C. van Asten. "Rapid and On-Scene Chemical Identification of Intact Explosives with Portable Near-Infrared Spectroscopy and Multivariate Data Analysis". Sensors 23, n.º 8 (7 de abril de 2023): 3804. http://dx.doi.org/10.3390/s23083804.
Texto completoCasa, Marcello, Michele Miccio, Giovanni De Feo, Andrea Paulillo, Roberto Chirone, Dalia Paulillo, Paola Lettieri y Riccardo Chirone. "A brief overview on valorization of industrial tomato by-products using the biorefinery cascade approach". Detritus, n.º 15 (6 de junio de 2021): 31–39. http://dx.doi.org/10.31025/2611-4135/2021.14088.
Texto completoSameh, Abdel-Hadi Ali. "Production Cycle for Large Scale Fission Mo-99 Separation by the Processing of Irradiated LEU Uranium Silicide Fuel Element Targets". Science and Technology of Nuclear Installations 2013 (2013): 1–14. http://dx.doi.org/10.1155/2013/704846.
Texto completoNivinskas, H., R. L. Koder, Z. Anusevicius, J. Sarlauskas, A. F. Miller y N. Cenas. "Two-electron reduction of nitroaromatic compounds by Enterobacter cloacae NAD(P)H nitroreductase: description of quantitative structure-activity relationships." Acta Biochimica Polonica 47, n.º 4 (31 de diciembre de 2000): 941–49. http://dx.doi.org/10.18388/abp.2000_3949.
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