Search results for "Liquefied natural ga"

showing 7 items of 7 documents

Exergy Recovery during LNG Regasification: Electric Energy Production - Part Two

2009

In liquefied natural gas (LNG) regasification facilities, for exergy recovery during regasification, an option could be the production of electric energy recovering the energy available as cold. In a previous paper, the authors propose an innovative process which uses a cryogenic stream of LNG during regasification as a cold source in an improved combined heat and power (CHP) plant. Considering the LNG regasification projects in progress all over the World, an appropriate design option could be based on a modular unit having a mean regasification capacity of 2 × 109 standard cubic meters/year. This paper deals with the results of feasibility studies, developed by the authors at DREAM in the…

Economic and environmental analysisRegasificationExergy recoveryLiquefied natural gasEconomic and environmental analysiSettore ING-IND/10 - Fisica Tecnica IndustrialeEnergy Engineering and Power TechnologyLiquefied natural gaThermodynamic analysisSafetyIndustrial and Manufacturing EngineeringThermodynamic analysi
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LNG cold energy use in agro-food industry: A case study in Sicily

2011

Abstract It is known how the complete gasification of liquefied natural gas (LNG) can return about 230 kWh/t of energy. Nevertheless out of fifty-one gasification plants in the world, only thirty-one of them are equipped with systems for the partial recovery of the available energy. At the moment most of these plants mainly produce electric energy; however the employment of the cold energy results very interesting, in fact, it can be recovered for agro-food transformation and conservation as well as for some loops in the cold chain. Cold energy at low temperatures requires high amounts of mechanical energy and it unavoidably increases as the required temperature diminishes. Cold energy reco…

EngineeringEnergy recoveryWaste managementbusiness.industryEnergy Engineering and Power TechnologyEnvironmental impact of the energy industryGeotechnical Engineering and Engineering GeologyFuel TechnologyWork (electrical)Greenhouse gasAvailable energyCold chainbusinessMechanical energyLiquefied natural gasJournal of Natural Gas Science and Engineering
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Potential applications using LNG cold energy in Sicily

2008

According to previsions, natural gas could be the main energy source worldwide, inducing relevant geopolitical changes. Most likely, such problems will be solved with the development of a gas transportation mode alternative to traditional pipelines: liquefied natural gas (LNG). The global LNG trade has increased rapidly during recent years. A significant amount of energy is consumed to produce low-temperature LNG, which has plenty of cryogenic exergy/ energy. Therefore, the effective utilization of the cryogenic energy associated with LNG vaporization is very important. Sicily, with more than five million inhabitants, is the second biggest region of Italy and in this region will be realized…

ExergyEngineeringEnergy recoveryWaste managementRenewable Energy Sustainability and the Environmentbusiness.industryEnergy Engineering and Power TechnologyFuel TechnologyNuclear Energy and EngineeringNatural gasGreenhouse gasKyoto ProtocolCold chainbusinessEnergy sourceLNG RefrigerationLiquefied natural gas
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Safety study of an LNG regasification plant using an FMECA and HAZOP integrated methodology

2015

Abstract A safety analysis was performed to determine possible accidental events in the storage system used in the liquefied natural gas regasification plant using the integrated application of failure modes, effects and criticality analysis (FMECA) and hazard and operability analysis (HAZOP) methodologies. The goal of the FMECA technique is the estimation of component failure modes and their major effects, whereas HAZOP is a structured and systematic technique that provides an identification of the hazards and the operability problems using logical sequences of cause-deviation-consequence of process parameters. The proposed FMECA and HAZOP integrated analysis (FHIA) has been designed as a …

Hazard (logic)EngineeringOperabilityHazard and operability studyGeneral Chemical EngineeringEnergy Engineering and Power TechnologyManagement Science and Operations ResearchIndustrial and Manufacturing EngineeringRisk analysiRisk analysis (business)Human errorSettore ING-IND/10 - Fisica Tecnica IndustrialeSafety Risk Reliability and QualitySettore ING-IND/19 - Impianti NucleariRegasificationbusiness.industryReliability engineeringFailure mode effects and criticality analysisControl and Systems EngineeringSystems engineeringLNGHAZOPRisk priority numberbusinessFailure mode and effects analysisRegasification terminalFood ScienceLiquefied natural gasFMECA
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Energy Saving with Absorption Equipment: a Case Study

2005

The paper deals with the results of a feasibility study performed at DREAM which is related to the possibility of using reject heat from an Electric Utility (which has a Combined Cycle Unit with Gas and Steam turbines belonging with ENEL Pro. at Termini Imerese, Palermo). The Utility lies near an Industrial District where there has need for feeding a Cooling Plant for Foodstuff Stocking at two different temperature levels: 0 °C and -18°C. The feasibility study covers both technical feasibility of a suitable cooling plant which use two separate absorption equipment, working with the pair Ammonia-Water, and economic feasibility of the venture. The feasibility study pertains: to the optimal de…

LNG coldLiquefied natural gasExergy
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Exergy recovery during LNG regasification: Electric energy production – Part one

2009

Abstract In liquefied natural gas (LNG) regasification facilities, for exergy recovery during regasification, an option could be the production of electric energy recovering the energy available as cold. In a previous paper, the authors propose an innovative process which uses a cryogenic stream of LNG during regasification as a cold source in an improved combined heat and power (CHP) plant. Considering the LNG regasification projects in progress all over the World, an appropriate design option could be based on a modular unit having a mean regasification capacity of 2 × 109 standard cubic meters/year. This paper deals with the results of feasibility studies, developed by the authors at DRE…

RegasificationExergyEngineeringRegasificationPower stationExergy recoverybusiness.industryImproved CHP cyclesImproved CHP cycleEnergy Engineering and Power TechnologyMechanical engineeringContext (language use)Liquefied natural gas Regasification Exergy recoveryHeliumIndustrial and Manufacturing EngineeringElectric energyElectric energy productionLiquefied natural gasSettore ING-IND/10 - Fisica Tecnica IndustrialeProduction (economics)MetrebusinessProcess engineeringLiquefied natural gasApplied Thermal Engineering
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Energy efficiency and CO2 emissions of port container terminal equipment: Evidence from the Port of Valencia

2019

Abstract Energy efficiency has emerged as a key point in port industry because of different factors such as the adoption of stronger environmental regulations and the increasing pressure of the local community on the surrounding ports. As gathering operational data from port terminals can be difficult due to privacy, studies on emissions and energy efficiency of these terminals are scarce. The following research provides key information about the real energy consumption and CO2 emissions of one of the most relevant container terminals in the Mediterranean area, located in Valencia, Spain. The results show that yard terminal tractors and rubber tyred gantry cranes (RTGs) are the main emissio…

Tractorbusiness.product_categoryTerminal (telecommunication)020209 energy02 engineering and technologyEnergy consumption010501 environmental sciencesManagement Monitoring Policy and LawEnvironmental economics01 natural sciencesPort (computer networking)General Energy0202 electrical engineering electronic engineering information engineeringRetrofittingEnvironmental sciencebusinessTerminal equipment0105 earth and related environmental sciencesEfficient energy useLiquefied natural gasEnergy Policy
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