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Book Chapter
Series: AIPP Books, Principles
Published: October 2021
10.1063/9780735423114_013
EISBN: 978-0-7354-2311-4
ISBN: 978-0-7354-2308-4
...Chauhan, P. S., Sundriyal, P., and Bhattacharya, S., “Carbon-based materials for hydrogen storage,” in Carbon Nanostructures: Fundamentals to Applications, edited by R. Thiruvengadathan, P. Sundriyal, S. C. Roy, and S. Bhattacharya (AIP Publishing, Melville, New York, 2021), pp. 13-1–13-22...
Images
(a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst.
Published: December 2022
FIG. 11.3 (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst. More about this image found in (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction...
Images
(a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst.
Published: December 2022
FIG. 11.3 (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst. More about this image found in (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction...
Images
(a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst.
Published: December 2022
FIG. 11.3 (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst. More about this image found in (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction...
Images
(a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst.
Published: December 2022
FIG. 11.3 (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction kinetics of a catalytic reaction. (c) Steps to identify the hydrogen storage material. (d) Steps to identify photocatalyst. More about this image found in (a) Steps to identify a 2D sensor material. (b) Steps to study the reaction...
Book Chapter

Series: AIPP Books, Principles
Published: February 2023
10.1063/9780735425163_009
EISBN: 978-0-7354-2516-3
ISBN: 978-0-7354-2513-2
..., pumped hydro, hydrogen storage devices, and superconducting magnetic energy storage (SMEs). Mechanical, electrical, chemical, and electrochemical energy storage systems are all on the energy storage technology list. Batteries are among the most successful energy storage devices for maintaining...
Book Chapter

Series: AIPP Books, Principles
Published: February 2023
0
EISBN: 978-0-7354-2516-3
ISBN: 978-0-7354-2513-2
...References References Acakpovi , A. , Adjei , P. , Nwulu , N. , and Asabere , N. Y. , “ Optimal hybrid renewable energy system: A comparative study of wind/hydrogen/fuel-cell and wind/battery storage ,” J. Electr. Comput. Eng.   2020 , 1756503 ( 2019 ). 10.1155/2020/1756503...
Book Chapter
Book cover for Toward Better Photovoltaic Systems:  Design, Simulation, Optimization, Analysis, and Operations

Series: AIPP Books, Principles
Published: March 2023
0
EISBN: 978-0-7354-2561-3
ISBN: 978-0-7354-2560-6
....   et al. , “ Optimal design of multi-energy systems with seasonal storage ,” Appl. Energy   219 , 408 – 424 ( 2018 ). 10.1016/j.apenergy.2017.07.142 Gaikwad , S. D. and Ghosh , P. C. , “ Sizing of a fuel cell electric vehicle: A pinch analysis-based approach ,” Int. J. Hydrogen...
Book Chapter
Book cover for Toward Better Photovoltaic Systems:  Design, Simulation, Optimization, Analysis, and Operations
Series: AIPP Books, Principles
Published: March 2023
10.1063/9780735425613_004
EISBN: 978-0-7354-2561-3
ISBN: 978-0-7354-2560-6
... the design and operation of heat exchanger networks, water distribution networks and hydrogen distribution networks but also be applied to address the design and operation optimization problems of the emerging energy systems such as renewable energy systems and energy storage systems ( Mohammad Rozali et...
Book Chapter
Book cover for Energy Systems and Processes:  Recent Advances in Design and Control

Series: AIPP Books, Methods
Published: March 2023
EISBN: 978-0-7354-2574-3
ISBN: 978-0-7354-2572-9
...References References Arora , A. , Bajaj , I. , Iyer , S. S. , and Hasan , M. M. F. , “ Optimal synthesis of periodic sorption enhanced reaction processes with application to hydrogen production ,” Comput. Chem. Eng.   115 , 89 – 111 ( 2018 ). 10.1016/j.compchemeng...
Book Chapter
Book cover for Energy Systems and Processes:  Recent Advances in Design and Control
Series: AIPP Books, Methods
Published: March 2023
10.1063/9780735425743_006
EISBN: 978-0-7354-2574-3
ISBN: 978-0-7354-2572-9
..., computer chips, logic elements and smarter sensors. The advantages and applications of carbon nanotube for energy storage and conversion for photovoltaics, green nanocomposite design, electrochemical super capacitor, lithium-ion batteries, hydrogen storage and fuel cell are investigated by Tan et al...
Book Chapter
Book cover for Energy Systems and Processes:  Recent Advances in Design and Control
Series: AIPP Books, Methods
Published: March 2023
10.1063/9780735425743_004
EISBN: 978-0-7354-2574-3
ISBN: 978-0-7354-2572-9
...Li, M., Fowler, S., and Chao, S., “Adsorption enhanced reforming for high-efficiency hydrogen generation,” in Energy Systems and Processes: Recent Advances in Design and Control, edited by M. Li (AIP Publishing, Melville, New York, 2023), pp. 4-1–4-20. Introduction The demand for hydrogen...
Book
Images
(a) Simulation results of hydrogen storage in CNT–graphene pillared structure. (b) Hydrogen storage in lithium doped CNT–graphene pillared structure. (Hydrogen molecules are shown in green and Li atoms are in purple.) Reproduced with permission from Dimitrakakis, G. K. et al., Nano Lett. 8(10), 3166–3170 (2008). Copyright 2008 American Chemical Society.
Published: October 2021
FIG. 13.4 (a) Simulation results of hydrogen storage in CNT–graphene pillared structure. (b) Hydrogen storage in lithium doped CNT–graphene pillared structure. (Hydrogen molecules are shown in green and Li atoms are in purple.) Reproduced with permission from Dimitrakakis, G. K. et al More about this image found in (a) Simulation results of hydrogen storage in CNT–graphene pillared structu...
Images
Comparison of the hydrogen storage capacity of different materials at (a) 77 K and (b) 300 K. Reproduced with permission from Dimitrakakis, G. K. et al., Nano Lett. 8(10), 3166–3170 (2008). Copyright 2008 American Chemical Society.
Published: October 2021
FIG. 13.5 Comparison of the hydrogen storage capacity of different materials at (a) 77 K and (b) 300 K. Reproduced with permission from Dimitrakakis, G. K. et al., Nano Lett. 8 (10), 3166–3170 (2008). Copyright 2008 American Chemical Society. More about this image found in Comparison of the hydrogen storage capacity of different materials at (a) 7...
Book Chapter
Series: AIPP Books, Methods
Published: December 2022
10.1063/9780735425422_011
EISBN: 978-0-7354-2542-2
ISBN: 978-0-7354-2540-8
... properties Hydrogen storage, catalysis, and sensor study require a thorough understanding of the adsorption properties of a 2D material. The evaluation of adsorption properties provides insight into reaction pathways, rate determining states, active sites on the 2D materials, etc. Hydrogen storage...
Book Chapter
Book cover for Energy Systems and Processes:  Recent Advances in Design and Control
Series: AIPP Books, Methods
Published: March 2023
10.1063/9780735425743_002
EISBN: 978-0-7354-2574-3
ISBN: 978-0-7354-2572-9
... not only economic benefits but also achieves CO2 geological storage and H2 production. Table 2.6 Process integration results of the base case and optimized case. Component Superheated steam Self-produce Operating time 350 days/year Hydrogen 1.7 $/kg Carbon...
Book
Book cover for Energy Systems and Processes:  Recent Advances in Design and Control
Series: AIPP Books, Methods
Published: March 2023
10.1063/9780735425743
EISBN: 978-0-7354-2574-3
ISBN: 978-0-7354-2572-9
Book Chapter
Book cover for Toward Better Photovoltaic Systems:  Design, Simulation, Optimization, Analysis, and Operations
Series: AIPP Books, Principles
Published: March 2023
10.1063/9780735425613_003
EISBN: 978-0-7354-2561-3
ISBN: 978-0-7354-2560-6
...-making method is based on a combined function that uses normalized objectives with different weights. In particular, the model by Li et al. (2022) involves nine primary objectives as follows: Net Present Cost, Cost of Energy, Capital Cost, Operational Cost, Cost of Hydrogen, Renewable Energy...
Book Chapter
Book cover for Toward Better Photovoltaic Systems:  Design, Simulation, Optimization, Analysis, and Operations
Series: AIPP Books, Principles
Published: March 2023
10.1063/9780735425613_002
EISBN: 978-0-7354-2561-3
ISBN: 978-0-7354-2560-6
... for educational buildings ,” in Advances in Renewable Hydrogen and Other Sustainable Energy Carriers , edited by A.   Khellaf ( Springer Singapore , Singapore , 2021b ), pp. 371 – 378 . Mondol , J. D. , Yohanis , Y. G. , and Norton , B. , “ Optimising the economic viability of grid...