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Journal ArticleDOI

Speed of sound in carbon dioxide at temperatures between (220 and 450) K and pressures up to 14 MPa

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TLDR
In this article, the authors measured the speed of sounduin carbon dioxide along seven isotherms at temperatures between (220 and 450) K by means of a spherical resonator.
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This article is published in The Journal of Chemical Thermodynamics.The article was published on 1998-12-01. It has received 46 citations till now. The article focuses on the topics: Virial coefficient & Vapour density.

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Fundamental process and system design issues in CO2 vapor compression systems

TL;DR: In this article, the authors present recent developments and state-of-the-art for transcritical CO2 cycle technology in various refrigeration, air-conditioning and heat pump applications, including discussion of properties and characteristics of CO2, cycle fundamentals, methods of high-side pressure control, thermodynamic losses, cycle modifications, component/system design, safety factors, and promising application areas.
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CO2 transport: Data and models – A review

TL;DR: In this article, a review of the data and models for CO 2 transport is presented, including transient flow data and model for pipes, including considerations regarding runningductile fractures, and a depressurization case study based on recently published expansion-tube data is included.
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Supercritical CO 2 : Properties and Technological Applications - A Review

TL;DR: In this paper, a comprehensive analysis of the thermodynamic and transport properties of supercritical carbon dioxide and CO2 containing binary mixtures (experiment and theory) and their various technological and scientific applications in different natural and industrial processes is provided.
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Anomalous fluid properties of carbon dioxide in the supercritical region: application to geological CO 2 storage and related hazards

TL;DR: In this paper, the locations of the Widom lines of supercritical CO 2 were compared with the P-T range of the Snohvit, Sleipner, Nagaoka and Ketzin reservoirs, which are recently studied for their fitness for CO 2 sequestration.
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Pore-scale modelling of Ostwald ripening

TL;DR: In this article, the authors decompose the Ostwald ripening mechanism into two processes that operate on different time scales, i.e., diffusion of solute gas in the liquid and readjustment of the shape of the gas-liquid interface to accommodate a change in mass.
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