Electrosynthesis of ethylene glycol from ethylene coupled with
The comparative life-cycle environmental effects of chemical feedstock change driven by energy system transition: a case study from China''s ethylene glycol industry.
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The comparative life-cycle environmental effects of chemical feedstock change driven by energy system transition: a case study from China''s ethylene glycol industry.
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In this study, ethylene glycole distearate (EGDS) as a novel PCM having high energy storage capacity (215.80 J/g) and suitable phase change temperature for LHTES was
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An extensive experimental investigation of pure ethylene glycol (EG) as a heat transfer fluid and heat storage material in solar thermal collectors for low to medium
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Phase change materials provide high-density thermal energy storage and a wide range of temperatures are required to meet different storage applications for cascaded thermal
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Various polymorphs of calcium carbonate and poly (ethylene) glycol as thermal energy storage materials Journal of Applied Polymer Science ( IF 2.8 ) Pub Date : 2023-08-07, DOI:
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We propose a facile method for preparing novel poly (ethylene glycol) (PEG) shape-stabilized phase change materials (PCMs) using self-assembled network scaffolds
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This research contributes to the understanding of complex interactions between methane hydrates and nanofluids, paving the way for future innovations in energy and environmental technologies.
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This review discusses advances in polyethylene glycol-based composite phase change materials (PCMs) for thermal energy storage (TES) and thermal regulation. PCMs utilize latent heat storage, absorbing
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We have developed structural supercapacitors that can carry mechanical loads as well as can store electrochemical energy simultaneously. Structural supercapacitors are
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Poly (ethylene glycol) is one of the most commonly used organic PCMs and has attracted a great deal of interest in applications for middle/low-temperature heat energy storage
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This work delivers a new route to develop thermal energy storage (TES) materials with high enthalpy efficiency, self-healing capabilities, and reprocessability.
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Aqueous ammonium-ion batteries (AAIBs) are considered as one of the most promising technologies for large scale energy storage applications, due to their intrinsic safety, environmental friendliness and
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The team developed a system that produces ethylene glycol — best known as antifreeze but also a key building block for the polymers industry — with high selectivity, generating minimal waste and
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Highly concentrated electrolytes can improve electrochemical stability but lead to higher costs and increased hydrolysis of NH 4+. In this work ethylene glycol (EG) is proposed as co-solvent, which
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In order to improve energy density of a capacitor, an operative potential limit extension is a simple way. Based on this concept, we have studied 2-electrode symmetric
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But what if I told you this humble chemical compound is quietly powering the renewable energy revolution? With the global energy storage market projected to hit $86 billion
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In present work, an efficient deep eutectic solvents (DESs) system based on KI and ethylene glycol (EG) has been successfully constructed and used as an electrolyte for
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Nanofluids with aqueous ethylene glycol EG solutions as the base fluid is proposed as a novel PCM for cold thermal energy storage. The dispersion stability of the
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Ethylene glycol (EG) nanofluids have been intensively explored as one of the most promising solid–liquid phase change materials for subzero cold thermal energy storage (CTES).
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Commonly, introducing the common antifreeze such as ethylene glycol (EG) improves the anti-freezing properties of the hydrogels, because the abundance of hydrogen
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Crosslinked polymer networks of poly (ethylene glycol) (PEG) and hydroxyl terminated poly (dimethyl siloxane) (HTPDMS) as polymeric phase change material for thermal
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For hydrogen to become a direct, portable fuel source, the difficulties with its storage and subsequent release must be addressed. Here ethylene glycol is shown to act as
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The use of ethylene glycol in the system causes the energy storage in the freezer to be well done and to perform better storage than water. The reason for this superiority is the
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Shape-stabilized co-crystallized poly (ethylene glycol) (PEG) composites were prepared by sol–gel process. Tetraethoxysilane was utilized as supporting matrix precursor.
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Abstract This study examined the thermal performance of a slurry containing micro-encapsulated phase change materials (me-PCMs) for thermal energy storage (TES)
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Compounding poly (ethylene glycol) formed a double-component energy storage mode and acted as core. The morphology, leaching resistance, chemical structure, and thermal properties of M
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In this work, a composite polymer electrolyte based on poly (ethylene glycol)/poly(acrylonitrile) (PEG/PAN) has been fabricated using the electrospinning technique,
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Phase change materials (PCMs) generally offer high latent heats for a wide range of thermal energy storage technologies. As typical organic PCMs, polyethylene glycol (PEG)
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