Academic literature on the topic 'Cryogenic agencies'

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Journal articles on the topic "Cryogenic agencies"

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Johannes, MS. "Life from Death." International Journal of Trends in Emerging Research and Development 3, no. 2 (2025): 34–36. https://doi.org/10.5281/zenodo.15063956.

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Life after death is a belief that's held by cryogenic agencies. The believe that one-day the dead will be brought back to live. I hypothesize that by following specific biomedical procedures it can be possible to revive biological beings after all biological processes have ceased in them. By referencing to past discoveries in neuronal conduction after death specifically Luigi Galvani’s famous experiment which made a dead frog twitch, as well as the discovery of Anastasis I came up with a chain of procedures which in theory will make it possible to bring biological beings back from the de
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Shruti Dipak Jadhav, Raghvendra Pratap Singh, Atri Bandyopadhyay, and Tapas Kumar Nag. "Conceptual Study on Propulsive Characteristics and Performance of Cryogenic Propellants." international journal of engineering technology and management sciences 6, no. 6 (2022): 368–73. http://dx.doi.org/10.46647/ijetms.2022.v06i06.065.

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In the era of cryogenic propellants with high specific impulse; under microgravity situations, long-term storage and higher energy thruster management are highly needed. As methane is a reasonable cooling membrane for radiation and ablation chambers so high LOX/LCH4 combustion efficiency and reliable spark ignition to be achieved to develop a methane engine. To maintain the thermocouple system in the spacecraft and to prevent outer harmful radiation in space, the respected agencies may use thick-walled propellant containers with high pressure. To check the feasibility and effectiveness of a su
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Dickson, David, Nasim Emadi, Christopher Dreyer, et al. "Benchmarking and Simulation of Solid-Oxide Steam Electrolysis for Propellant Production in a Vacuum Chamber-Simulated Lunar Environment." ECS Meeting Abstracts MA2023-01, no. 54 (2023): 143. http://dx.doi.org/10.1149/ma2023-0154143mtgabs.

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NASA and other space agencies have prioritized the development of in-situ resource utilization (ISRU) technology for producing critical materials such as propellants in space. Electrolysis to split water found in lunar, asteroid, and Martian environments provides a pathway for liquid H2 and O2 production, but the challenges of deploying such technology in extraterrestrial environments put an extreme emphasis on minimizing specific energy (measured in kWhelec/kgH2) and system specific mass (system kg/(kgH2/h)). High-temperature, solid oxide electrolysis cell (SOEC) systems have the potential to
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Fishbach, L. H., and S. Gordon. "NNEPEQ—Chemical Equilibrium Version of the Navy/NASA Engine Program." Journal of Engineering for Gas Turbines and Power 111, no. 1 (1989): 114–16. http://dx.doi.org/10.1115/1.3240205.

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The Navy NASA Engine Program, NNEP, developed in 1975, currently is in use at a large number of government agencies, commercial companies, and universities. This computer code has been used extensively to calculate the design and off-design (matched) performance of a broad range of turbine engines, ranging from subsonic turboprops to variable cycle engines for supersonic transports. Recently, there has been increased interest in applications that NNEP was not capable of simulating, namely, high Mach applications, alternate fuels including cryogenics, and cycles such as the gas generator air-tu
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Merken, Patrick, Tim Souverijns, Jan Putzeys, Ybe Creten, and Chris Van Hoof. "Flight Qualification and Circuit Development of Sensor Front-End Electronics for PACS/Hershel at Liquid Helium Temperature." Journal of Microelectronics and Electronic Packaging 4, no. 4 (2007): 130–35. http://dx.doi.org/10.4071/1551-4897-4.4.130.

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In the framework of the development of the European Space Agency's Herschel Space Observatory (HSO), IMEC designed the cold-readout electronics (CRE) for the PACS instrument. Key specifications for this circuit were high linearity, low power consumption, high uniformity, and very low noise at an operating temperature of 4.2K (liquid helium temperature, LHT). To ensure high production yields and uniformity, relatively easy availability of the technology, and portability of the design, the circuit was implemented in a standard CMOS technology. The circuits are functional at room temperature, whi
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Carpenter, Chris. "Process Reduces Carbon Emissions From Natural Gas Compression and Production." Journal of Petroleum Technology 76, no. 04 (2024): 70–72. http://dx.doi.org/10.2118/0424-0070-jpt.

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_ This article, written by JPT Technology Editor Chris Carpenter, contains highlights of paper SPE 214974,“New Technology Reduces Carbon Emissions From Natural Gas Compression and Production Facilities,” by John Guoynes, SPE, David Stiles, SPE, and Cory Vail, Axip Energy Services, et al. The paper has not been peer reviewed. _ A chemical-free process has been developed to capture exhaust from natural gas drive compressors and supporting gas-fueled production equipment while featuring a small footprint. The process separates CO2 and nitrogen from exhaust, allowing the CO2 to be discharged at hi
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"Feasibility Analysis on Cryogenic Properties of Supercritical Nitrogen to be used in the Cooling of Hg-Based High Temperature Superconductors for Electric Aircraft Propulsion." International Journal of Engineering and Advanced Technology 9, no. 1S3 (2019): 106–10. http://dx.doi.org/10.35940/ijeat.a1022.1291s319.

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Electrified Aircraft Propulsion (EAP) and Advanced Hybrid Electric Aircrafts (AHEA) like NASA NX-3, SUGAR, NASA X-57 and STARC ABL are going to be the future of avionics as they have potential to improve fuel economy, emissions and noise levels. The agencies have suggested using superconducting cables for the electric transmission to reduce heat losses. The limit of critical current has reached 134 K where Hg- based ceramic materials are available that can superconduct at this temperature range. In order to retain the superconductivity, the cables have to be cooled below its critical temperatu
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Ogliari, Karolyn Sassi, Patrícia Bencke Grudzinski, Camila Gomes da Silva, et al. "A novel method to pack cryopreserved amniotic membrane for wound dressing - The pathway through validation of a new biological product." Biomedical Materials, April 28, 2023. http://dx.doi.org/10.1088/1748-605x/acd15a.

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Abstract Amniotic membrane (AM) has been widely used as a biological dressing for many pathologies and illnesses worldwide, and products derived from this tissue have been commercially available in several countries. In Brazil, regulatory agencies have recently authorized its clinical use as a non-experimental therapy for burns, diabetic and venous stasis ulcers, and intrauterine adhesions. In this study, we present our pathway through validating the first available service in the country of AM cryopreservation, with a protocol for long-term storage in high-efficiency nitrogen cryogenic freeze
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Pragadeesh, G., Prerana C. Madane, and R. Mahendran. "CO2 Capture, Purification, and Utilizing for Food Processing Applications." Journal of Food Process Engineering 48, no. 5 (2025). https://doi.org/10.1111/jfpe.70134.

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ABSTRACTCarbon dioxide (CO2) emissions in 2022 provide a comprehensive overview of energy‐related greenhouse gas emissions on a global scale. The industrial activities indicate that global emissions have increased, along with other gases, including methane, nitrogen compounds, and disruptions from the energy crisis. CO2 emissions from industrial operations and energy combustion rose by 0.9% (321 million metric tons) in 2022, totaling 36.8 gigatons. The International Energy Agency's analysis highlights this trend based on authorized national statistics and publicly available information on ener
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NAGGS, FRED. "The tragedy of the Natural History Museum, London." Megataxa 7, no. 1 (2022). http://dx.doi.org/10.11646/megataxa.7.1.2.

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The remit of the Natural History Museum, London, encompasses the whole of the natural world and places it at the forefront of global concerns about human impact on the biosphere. The Museum’s stature as a world leading institution for storing and recording living diversity brings responsibilities, obligations and new prospects. In addition to revealing the genetic evolution of life in considerable detail, advances in molecular biology and cryogenics offer exciting new opportunities to extend beyond the Museum’s traditional role as a storehouse for recording living diversity and to take a lead
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Conference papers on the topic "Cryogenic agencies"

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Benson, C. M., J. M. Ingram, P. N. Battersby, D. Mba, V. Sethi, and A. M. Rolt. "An Analysis of Civil Aviation Industry Safety Needs for the Introduction of Liquid Hydrogen Propulsion Technology." In ASME Turbo Expo 2019: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2019. http://dx.doi.org/10.1115/gt2019-90453.

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Abstract Over the next few decades air travel is predicted to grow, with international agencies, manufacturers and governments predicting a considerable increase in aviation use. However, based on current fuel type, International Civil Aviation Organization (ICAO) project emissions from aviation are estimated to be seven to ten times higher in 2050 than in 1990. These conflicting needs are problematic and have led to the EU Flightpath 2050 targeting dramatic emissions reductions for the sector (75% CO2, 90% NOX by 2050). One proposed solution, decreasing carbon emissions without stunting the i
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