Hydrogen energy pilot introduction – Technology competition
Tài liệu tham khảo
2020, The national hydrogen strategy, Ger Fed Minist Econ Energy Aff
Falcone, 2021, Hydrogen economy and sustainable development goals: review and policy insights, Curr Opin Green Sustainable Chem, 31, 100506, 10.1016/j.cogsc.2021.100506
Egeland-Eriksen, 2021, Hydrogen-based systems for integration of renewable energy in power systems: achievements and perspectives, Int J Hydrogen Energy, 46, 31963, 10.1016/j.ijhydene.2021.06.218
Reale, 2021, Water and steam injection in micro gas turbine supplied by hydrogen enriched fuels: numerical investigation and performance analysis, Int J Hydrogen Energy, 46, 24366, 10.1016/j.ijhydene.2021.04.169
Whiston, 2021, Paths to market for stationary solid oxide fuel cells: expert elicitation and a cost of electricity model, Appl Energy, 304, 117641, 10.1016/j.apenergy.2021.117641
Arshinov, 1996, Results of the long-term testing of the ‘Photon’ fuel cell generator, Int J Hydrogen Energy, 21, 293, 10.1016/0360-3199(95)00049-6
2006, Plug Power links with Russian firms to work on fuel cell technology, Fuel Cell Bull, 12, 8
2006, Plug Power links with Russian firms to work on fuel cell technology, Fuel Cell Bull, 12, 8
Nefedkin, 2021, Effect of the corrugated bipolar plate design on the self-humidification of a high power density PEMFC stack for UAVs, Fuel Cell, 1
Аваков, 1998, Зинин В.И. Подводным лодкам XXI века – совершенные энергоустановки, Военный парад., 5, 26
Grigoriev, 2020, Current status, research trends, and challenges in water electrolysis science and technology, Int J Hydrogen Energy, 45, 26036, 10.1016/j.ijhydene.2020.03.109
2021, Концепция развития водородной энергетики в Российской Федерации, распоряжение Правительства Российской Федерации от 5 августа 2021 г. № 2162-р
Brinkmann, 2014, JRC91156
Philippov, 2017, Demand of the power industry of Russia for gas turbines: the current state and prospects, Therm Eng, vol. 64, 829, 10.1134/S0040601517110052
Verhage, 2013, 30,000 h operation of a 70 kW stationary PEM fuel cell system using hydrogen from a chlorine factory, Int J Hydrogen Energy, 38, 4714, 10.1016/j.ijhydene.2013.01.152
Ihonen, 2017, Operational experiences of PEMFC pilot plant using low grade hydrogen from sodium chlorate production process, Int J Hydrogen Energy, 42, 27269, 10.1016/j.ijhydene.2017.09.056
2015, Nedstack wins China order for world's first 2 MW PEMFC plant, Fuel Cell Bull, 3, 6
Kiseleva, 2021, Hydrogen energy in Russia - industrial waste gases utilization potential, J Phys Conf, 1960, 10.1088/1742-6596/1960/1/012010
2020, Анализ производства кальцинированной и каустической соды в 2019 г, СДЕЛАНО
Ulleberg, 2009, The wind/hydrogen demonstration system at Utsira in Norway: evaluation the system performance using operation data and updated hydrogen energy modeling tools, Int J Hydrogen Energy, 35, 1841, 10.1016/j.ijhydene.2009.10.077
Ayaz, 2021, Enhanced life cycle modelling of a micro gas turbine fuelled with various fuels for sustainable electricity production, Renew Sustain Energy Rev, 149, 111323, 10.1016/j.rser.2021.111323
Xiao-long, 2019, Standby and shutdown cycles modeling of SOFC lifetime prediction, Energy Proc, 158, 1573, 10.1016/j.egypro.2019.01.368
Ito, 2022, Chapter 8 – chlor-alkali electrolysis, 281
Ihonen, 2017, Operational experiences of PEMFC pilot plant using low grade hydrogen from sodium chlorate production process, Int J Hydrogen Energy, 42, 27269, 10.1016/j.ijhydene.2017.09.056
2019, Рынок хлора в России в 2018 году, динамика объемов, производители
Takahashi, 2001, New electrolizer design for high current density//modern chlor-alkali technology, Soc Chem Ind, vol. 8, 213
Verhage, 2013, 30,000 h operation of a 70 kW stationary PEM fuel cell system using hydrogen from a chlorine factory, Int J Hydrogen Energy, 38, 4714, 10.1016/j.ijhydene.2013.01.152
Chen, 2014, Characteristic studies of a PBI/H3PO4 high temperature membrane PEMFC under simulated reformate gases, Int J Hydrogen Energy, 39, 13757, 10.1016/j.ijhydene.2014.02.090
Suha Yazici, 2021, Sümeyye Dursun, Irina Borbáth, András Tompos, Reformate gas composition and pressure effect on CO tolerant Pt/Ti0.8Mo0.2O2–C electrocatalyst for PEM fuel cells, Int J Hydrogen Energy, 46, 13524, 10.1016/j.ijhydene.2020.08.226
Rodrigues, 2013
Guandalinia, 2017, Simulation of a 2 MW PEM fuel cell plant for hydrogen recovery from chlor-alkali industry, Energy Proc, 105, 1839, 10.1016/j.egypro.2017.03.538
2020
Haseltalab, 2021, Component sizing and energy management for SOFC-based ship power systems, Energy Convers Manag, 245, 114625, 10.1016/j.enconman.2021.114625
Sampietro, 2019, Optimal sizing of storage elements for a vehicle based on fuel cells, supercapacitors, and batteries, Energies, 12, 925, 10.3390/en12050925
2020, Fuel cell power for a sustainable planet. Ballard power systems Inc. Management's discussion and analysis, Third Quarter
Weidner, 2019, EUR 29693 EN
Dincer, 2020, A review of hydrogen usage in internal combustion engines (gasoline-Lpg-diesel) from combustion performance aspect, Int J Hydrogen Energy, 45, 35257, 10.1016/j.ijhydene.2020.02.001
Zhu, 2020, Effect of excess hydrogen on hydrogen fueled internal combustion engine under full load, Int J Hydrogen Energy, 45, 20419, 10.1016/j.ijhydene.2019.12.022
Yadav, 2012, Performance and emission studies of direct injection C.I. engine in dual fuel mode (diesel-hydrogen) with EGR, Int J Hydrogen Energy, 37, 3807, 10.1016/j.ijhydene.2011.04.163
Koç, 2020, Analysing the performance, fuel cost and emission parameters of the 50 MW simple and recuperative gas turbine cycles using natural gas and hydrogen as fuel, Int J Hydrogen Energy, 45, 22138, 10.1016/j.ijhydene.2020.05.267
Steward, 2009
2021, Capstone turbine, Hydrogen microturbines
Homel, 2010, Carbon monoxide-fueled solid oxide fuel cell, J Power Sources, 195, 6367, 10.1016/j.jpowsour.2010.04.020
2016, Manufacturing cost analysis of 100 and 250 kW fuel cell systems for primary power and combined heat and power applications/DOE contract No. DE-EE0005250, Energy
Joo, 2015, NOx emissions characteristics of the partially premixed combustion of H2/CO/CH4 syngas using artificial neural networks, Appl Therm Eng, 80, 436, 10.1016/j.applthermaleng.2015.01.057
Oh, 2010, EINOx scaling in a non-premixed turbulent hydrogen jet with swirled coaxial air, Int J Hydrogen Energy, 35, 8715, 10.1016/j.ijhydene.2010.04.159