40 research outputs found

    New simulants for martian regolith: Controlling iron variability

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    Existing martian simulants are predominantly based on the chemistry of the average ‘global’ martian regolith as defined by data on chemical and mineralogical variability detected by orbiting spacecraft, surface rovers and landers. We have therefore developed new martian simulants based on the known composition of regolith from four different martian surface environments: an early basaltic terrain, a sulfur-rich regolith, a haematite-rich regolith and a contemporary Mars regolith. Simulants have been developed so that the Fe2+/Fe3+ ratios can be adjusted, if necessary, leading to the development of four standard simulants and four Fe-modified simulants. Characterisation of the simulants confirm that all but two (both sulfur-rich) are within 5 wt% of the martian chemistries that they were based on and, unlike previous simulants, they have Fe2+/Fe3+ ratios comparable to those found on Mars. Here we outline the design, production and characterisation of these new martian regolith simulants. These are to be used initially in experiments to study the potential habitability of martian environments in which Fe may be a key energy source

    Precautionary Effect and Variations of the Value of Information

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    What are the Effects of Contamination Risks on Commercial and Industrial Properties? Evidence from Baltimore, Maryland

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    Bargaining with Non-Monolithic Players

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    Urban Environmental Health and Sensitive Populations: How Much are the Italians Willing to Pay to Reduce Their Risks?

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    Emissions Trading, CDM, JI, and More - The Climate Strategy of the EU

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    The Stability of the Adjusted and Unadjusted Environmental Kuznets Curve

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    Abnormal Returns in Privatization Public Offerings: The Case of Portuguese Firms

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    Creative Thinking and Modelling for the Decision Support in Water Management

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    Multilateral Environmental Agreements and Trade Obligations: A Theoretical Analysis of the Doha Proposal

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