This study delves into investigating the synergistic integration of the single-effect SMR cycle with two distinct energy sources: liquefied air energy storage systems
Lithium-ion batteries (LIBs), due to their excellent electrochemical properties, are extensively utilized in energy storage power stations, new energy electric vehicles, and
The escalating energy crisis and environmental pollution have highlighted the importance of clean and efficient renewable energy sources. Developing large-scale energy
1 Introduction. The current energy change toward renewable electricity requires novel energy storage on a new scale. The discovery of graphite as an excellent and abundant
In the field of energy storage, NGO nanosheets are found to exhibit a good electrocatalytic activity and superior stability and these properties are better than currently used commercial Pt/C
The multistage porous structure in NBKCC can promote energy storage and dye molecule storage, while functional group characteristic adsorption and gained
Acidification occurs during the temporal storage and long-distance transportation of food waste (FW). It can influence FW physicochemical properties and even
Effects of nitrogen, sulphur, and temperature treatments on the spectral, structural, and electrochemical characteristics of graphene oxide for energy storage
Among large-scale energy storage technologies, the cryogenic energy storage technology (CES) is a kind of energy storage technology that converts electric energy into cold
"This promising research on a nitrogen fixation battery system not only provides fundamental and technological progress in the energy storage system but also creates an
5 天之前· The use of liquid air or nitrogen as an energy storage medium can be dated back to the nineteen century, Two operation modes were proposed for the air liquefaction process to
Here, we design an aqueous Cu-SeS 2 battery by encapsulating SeS 2 in a defect-enriched nitrogen-doped porous carbon monolith. The synergistic effect of nitrogen doping and topological defect not only enhances the chemical affinity
Biomass-derived nitrogen-doped porous carbon was prepared using jujube shell as the precursor through a two-step process involving activation and nitrogen-doping. Different
Nitrogen doping, in particular, has been shown to be a highly effective strategy in creating advanced materials for various applications, such as CO 2 capture, energy conversion, and
The SeS 2 cathode can radically avoid drawbacks of conventional S and Se cathodes, owing to its outstanding electronic conductivity, high specific capacity, and synergistic effect between Se and S. Here, we design an aqueous Cu
We showed that a nitrogen economy, where renewable hydrogen is chemically stored on abundant nitrogen in the form of a nontoxic and safe nitrogen‐based alternative fuel, is
The electrochemical hydrogen storage in the carbon is achieved through the insertion H, which is formed by the reduction of water, into carbon matrix. The impact of the surface doped nitrogen functio...
The convective heat transfer behavior of supercritical nitrogen (S-N2) has played a significant role in optimizing the design of recently emerging cryogenic cold storage and recovery systems. However, studies on S-N2 heat
Metal‐N2 battery can be applied in both energy storage and electrochemical nitrogen reduction reaction (NRR); however, there has been only extraordinarily little study on
However, the primary drawback of inhibitors predominantly composed of water is their tendency to cause short circuits in regular batteries, limiting their applicability,
Because carbon-based materials with heteroatom doping are at the forefront of research on energy storage devices as a result of their excellent physical properties, such as electrical conductivity and wettability, we report the
The design and exploration of carbon-based electrode materials have become highly significant for developing supercapacitor technology, which has attracted considerable
5 天之前· The liquid nitrogen is first pumped from the liquid nitrogen tank and transfers cold energy to the truck cooling space via a heat exchanger; then the gasified high-pressure
From Fig. 9 b, it can be seen that pyridinic-N has the best energy storage effect under negative potential, and pyrrolic-N has the best energy storage effect under positive
The synergistic effect of nitrogen doping and topological defect not only enhances the chemical affinity between reactants and carbon matrix but also offers catalytic
The rapid development of modern society has led to a huge consumption of traditional fossil fuels, inducing serious environmental pollution and energy shortages, which
Liquid air/nitrogen energy storage and power generation system for micro-grid applications. by the two-stage intercooled compressor in order to reduce required work so the compression
Various studies have been conducted to minimize the damage and loss of stored grain. For safe storage, the moisture content must be reduced, or respiration must be
In this work, we investigate the electrical conductivity of carbon nanotubes (CNTs), with a particular focus on the effects of doping. Using first-principles-based
As shown in Fig. S6, after oxidizing the 50 %-CoCO 3 /CC, the Co2p 1/2 and Co2p 3/2 peaks of CoOx were shifted to the lower energy band by 0.2 eV, and further after nitriding, the Co2p 1/2
Nitrogen doping, in particular, has been shown to be a highly effective strategy in creating advanced materials for various applications, such as CO 2 capture, energy conversion, and energy storage. However, the key factors that
Among the contemporary energy storage devices, supercapacitors possess superior power capability, short charging times, long life cycles and superior reversibility [[5],
Nitrogen (N-) doped hierarchical porous carbon (NHPC) possesses the following characteristics: a large specific surface area, high conductivity, and active N doping, which are of great
Earthworms, as key large consumers in soil ecological networks, are constrained in global population density and diversity by soil acidification resulting from N enrichment (Phillips et al.,
We showed that a nitrogen economy, where renewable hydrogen is chemically stored on abundant nitrogen in the form of a nontoxic and safe nitrogen‐based alternative fuel, is energetically feasible, and that novel nitrogen‐based fuels are comparable on an energy‐return basis to existing carbon‐based fuels.
Liquid air/nitrogen energy storage and power generation are studied. Integration of liquefaction, energy storage and power recovery is investigated. Effect of turbine and compressor efficiencies on system performance predicted. The round trip efficiency of liquid air system reached 84.15%.
The nitrogen economy is a proposed future system in which nitrogen-based fuels can be used as a means of energy storage and high-pressure gas generation.
All nitrogen-based fuels had a similar sensitivity to the required energy for atmospheric N 2 separation. Nitrogen-based fuels were more sensitive to a change in the required energy for water splitting than carbon-based fuels; nevertheless, methane had a relatively high sensitivity coefficient as well.
To recover the cryogenic energy stored in the liquid air/nitrogen more effectively, Ahmad et al. [102, 103] investigated various expansion cycles for electricity and cooling supply to commercial buildings. As a result, a cascade Rankine cycle was suggested, and the recovery efficiency can be higher than 50 %.
Nitrogen-based fuels were more sensitive to a change in the required energy for water splitting than carbon-based fuels; nevertheless, methane had a relatively high sensitivity coefficient as well. As a result, more efficient future water-splitting technologies will give a slight energetic advantage to the nitrogen-based fuels.
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