On Site Mercury Remediation via Activated Fly Ash
On Site Mercury Remediation via Activated Fly Ash
批准号:
9198223
负责人:
Kaspars Krutkramelis
金额:
$62.72万
依托单位国家:
美国
项目类别:
财政年份:
2014
资助国家:
美国
项目状态:
已结题
起止时间:
2014-08-11 至 2018-12-31
关键词:
AchievementAddressAgingAirAmmoniumAreaBusinessesCapitalCarbonCoalConsumptionCost-Benefit AnalysisCountryDepositionDevelopmentEconomicsEffectivenessElectricityElectrostaticsEnvironmentExcisionFaceFinancial costFoodFossil FuelsFundingGasesGenerationsGoalsHealthHealth Care CostsHealth protectionHumanIndustrializationIndustryInjectableInjection of therapeutic agentInstitutesInvestmentsLengthMercuryMethodsModificationMonitorOrganic solvent productOxidesPerformancePhasePlantsPollutionPowder dose formPower PlantsPrecipitationPreparationProcessProductionRecoveryRefuse DisposalRegulationResearchRiskRiversRunningSaltsSecureSiteSmall Business Innovation Research GrantSodium ChlorideSoilSolidSolventsSourceSurfaceSystemTechnologyTestingThinnessTimeTransportationUnited States National Institutes of HealthUniversitiesValidationWaterWeightWorkWyominganthropogenesisbasechemical bindingcommercializationcostcost effectivefly ashground waterimprovedinnovationmercury fumesmercury vaporizationnew technologyoperationparticlepollutantprototypepublic health relevanceremediationvaporwasting
中文摘要
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英文摘要
DESCRIPTION (provided by applicant) Mercury is one of the most harmful and toxic pollutants to humans, and it is predominantly introduced into the environment in vapor form from burning fossil fuels. Fossil fuel consumption results in ever-higher mercury concentrations in the air, water, soil, and, ultimately, in food that humans consume. The EPA estimates that mercury instigated healthcare costs range between $37-90 billion dollars annually. Recently, the EPA has instituted much stricter mercury emission regulations (effective April 16th, 2015) that set a mercury emissions cap between 1.2-4 lb Hg/TBtu depending on the coal rank for all existing electrical generating units. These regulations have created a significant economic and technical compliance challenge for the electric-utility industry, and many power plants face shutdowns if mercury emissions are not contained. The current most viable mercury capture technology, activated carbon injection, cannot possibly solve all existing technological and economic challenges. With stricter limits, mercury removal efficiency with activated carbons decreases exponentially, thus more and more activated carbon has to be transported to the site of operation and injected. Activated carbon injection costs are already very high, and generally range from $6,000-$50,000 per pound of Hg removed. The deployment of a new, cost-effective Hg-capture technology is crucial to mitigate mercury associated human health risks, national healthcare costs, and to cost-effectively assist the electric-utility industry in capturing mercury Our Phase I work has produced remarkable results where we have demonstrated an innovative fly ash based sorbent (X-FA) capable of powerful mercury capture at a fraction of current costs. The principle of the new sorbent is an innovative coating technology that deposits a thin mercury oxidizing activator layer around the fly ash particles. Once in contact with mercury vapor, the activator coated powder chemically binds and captures mercury. Many advantages over existing technologies come with our new sorbent development, including an upfront material production on-site of the source of pollution. Phase II NIH funding will enable us to conduct necessary final research and to demonstrate the X-FA sorbent on an industrial scale (beta injection tests at multiple coal-fired boiler/power facilities). Upon completion of Phase II n immediate X-FA product commercialization is expected to occur.
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On Site Mercury Remediation via Activated Fly Ash
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批准号:9047367
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项目类别:
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资助金额:$63.62万
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财政年份:2014
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负责人:Kaspars Krutkramelis
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依托单位:
On Site Mercury Remediation via Activated Fly Ash
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批准号:8779164
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项目类别:
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资助金额:$16.5万
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财政年份:2014
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负责人:Kaspars Krutkramelis
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依托单位:
海外基金