2021
DOI: 10.1016/j.enconman.2021.114318
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Thermodynamic investigation of a novel hydrogen liquefaction process using thermo-electrochemical water splitting cycle and solar collectors

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Cited by 29 publications
(11 citation statements)
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“…Given that the numbers are α = prefix+ 1 2 and β = prefix− 1 2 , the nuclear spin quantum number is equal to italicI = ( 1 2 + 1 2 ) = 1 for ortho-H 2 , and the molecular form has three states. In para-H 2 , the nuclear spin quantum number is italicI = ( 1 2 1 2 ) = 0 and thus has only one state. , Therefore, the number of ortho states is 3 times that of para-H 2 at environment temperature (i.e., 75% ortho–25% para). , Figure illustrates the graphical layout of the parallel and antiparallel spins in ortho- and para-H 2 . It is also not possible to produce pure ortho-H 2 .…”
Section: Physical and Chemical Characteristics Of Hydrogenmentioning
confidence: 99%
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“…Given that the numbers are α = prefix+ 1 2 and β = prefix− 1 2 , the nuclear spin quantum number is equal to italicI = ( 1 2 + 1 2 ) = 1 for ortho-H 2 , and the molecular form has three states. In para-H 2 , the nuclear spin quantum number is italicI = ( 1 2 1 2 ) = 0 and thus has only one state. , Therefore, the number of ortho states is 3 times that of para-H 2 at environment temperature (i.e., 75% ortho–25% para). , Figure illustrates the graphical layout of the parallel and antiparallel spins in ortho- and para-H 2 . It is also not possible to produce pure ortho-H 2 .…”
Section: Physical and Chemical Characteristics Of Hydrogenmentioning
confidence: 99%
“…In its natural state, ortho-H 2 tends to cool slowly and over a long time frame, causing the reserved liquid H 2 to evaporate and become waste. The ortho- to para-H 2 conversion appears with a transition from the ortho triplet state to a para singlet state, which in the normal state of this transition is very slow, and more time is spent in this process. ,, …”
Section: Physical and Chemical Characteristics Of Hydrogenmentioning
confidence: 99%
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“…With the increase of the world’s population, the improvement of living standards, and the rapid development of industries, freshwater scarcity has become a serious global problem. , Although many technologies, such as multistage flash, multi-effect distillation and reverse osmosis, etc., have been employed for clean water production, they mainly rely on the consumption of nonrenewable energy sources such as fossil fuels and electricity, which aggravated the energy crisis accompanied by serious environmental pollution. As a renewable and clean energy, solar energy is applied in many fields. Most recently, as one of the most promising water cleaning techniques, solar steam generation (SSG) has attracted significant attention not only because it uses inexhaustible and clean solar energy but also because of its unique “interfacial vaporization” manner to produce freshwater using a photothermal material with high energy conversion efficiency instead of the traditional water evaporation by heating the bulk water with a large heat loss. …”
Section: Introductionmentioning
confidence: 99%