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Resource potential and planning for exploration of the Hebrus Valles, Mars 被引量:1
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作者 Ravi Sharma Neeraj Srivastava Santosh Kumar Yadav 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2019年第8期99-114,共16页
Mars is the only extraterrestrial body which could host primitive lifeforms and also has the potential to host a human base in the near future. Towards fulfilling these objectives, several remote sensing missions and ... Mars is the only extraterrestrial body which could host primitive lifeforms and also has the potential to host a human base in the near future. Towards fulfilling these objectives, several remote sensing missions and rover based missions have been sent to Mars. Still, confirmation of existing or extinct life on this planet in any form has not been achieved and possibly human missions at selected sites in the future are the key to addressing this problem. Here, we have used remote sensing data from Mars Reconnaissance Orbiter(MRO;NASA), Mars Global Surveyor(MGS;NASA), Mars Odyssey(NASA) and Mars Express(MEX;ESA) to devise an exploration strategy for one such area known as Hebrus Valles, which is a potential site for human exploration of the surface of Mars. A geological context map of the Hebrus Valles and Hephaestus Fossae region has been prepared and a candidate landing site has been proposed in the Hebrus Valles region. Suitable rover paths have been worked out from the proposed landing site for harnessing the science and resource potential of the region. The proposed landing site is located in the equatorial region at(20?40′N, 126?23′E) and due to its proximity to the Potential Subsurface Access Candidates(PSACs) in the region, such as sinkholes and skylights and also other resources such as crater ejecta, silicate material and fluvial channels, the site is appropriate for exploration of the region. 展开更多
关键词 planets and satellites:individual (Mars) planets and satellites:surfaces
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Detection and Classification of Potential Caves on the Flank of Elysium Mons,Mars
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作者 Ravi Sharma Neeraj Srivastava 《Research in Astronomy and Astrophysics》 SCIE CAS CSCD 2022年第6期81-90,共10页
Martian caves have revived interest in the field of subsurface exploration because they are the potential destinations for future human habitats and astrobiological research.There are many pits on Mars,but some of the... Martian caves have revived interest in the field of subsurface exploration because they are the potential destinations for future human habitats and astrobiological research.There are many pits on Mars,but some of them look like collapsed cave roofs.These special pits are formed by the collapse of surface materials into the subsurface void spaces.The signature of life is probable in a subsurface cave on Mars as the subsurface environment can protect life from the harsh and dangerous radiation environment of the surface.In a cave,there may be an abundance of minerals,fluids,and other key resources.Therefore,locating the access point of the subsurface cave is essential and crucial for formulating plans for robotic/human explorations of the Red Planet,Mars.We have used remote sensing data from Mars Reconnaissance Orbiter(MRO;NASA),Mars Global Surveyor(MGS;NASA),and Mars Odyssey(NASA)for identifying,mapping,and classifying selected special pit candidates on the flank of Elysium Mons,Mars.A total of 32 special pit candidates has been identified and classified based upon morphology and geological context.Out of these,26 are newly discovered ones.The thermal behavior of 23 special pit candidates confirms that the special pits are radiating heat energy at nighttime,similar to potential caves.Also,cave entrances have been detected in nine candidates using data from the Hi RISE camera onboard MRO.These sites could be important destinations for future robotic/human exploration and the search for life on Mars. 展开更多
关键词 planets and satellites individual(Mars)-planets and satellites surfaces-planets and satellites GENERAL
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Isolation and partial purification of fungal ligninolytic enzymes from the forest soil fungi isolated from Bhadra Wildlife Sanctuary
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作者 SHIVAKUMAR P. BANAKAR B. THIPPESWAMY 《Frontiers in Biology》 CAS CSCD 2014年第4期291-299,共9页
屏蔽从森林土壤样品为有效木质素 degraders 的隔离被做,由提供象通过丰富方法的碳来源的木质素,它导致隔离 8 有效真菌在 14 之中孤立孤立。沉没发酵被作为碳来源提供 Guiaicol 与有效微生物为 ligninolytic 酶的生产做。laccase,... 屏蔽从森林土壤样品为有效木质素 degraders 的隔离被做,由提供象通过丰富方法的碳来源的木质素,它导致隔离 8 有效真菌在 14 之中孤立孤立。沉没发酵被作为碳来源提供 Guiaicol 与有效微生物为 ligninolytic 酶的生产做。laccase,木质素 peroxidise 活动和特定的活动的试金在 27 浡湯 ? 在 2, 4, 6, 7, 8, 10 和 12 天的孵化间隔以后被做 ? 展开更多
关键词 木质素降解酶 部分纯化 野生动物保护区 土壤真菌 森林 木质素过氧化物酶 Lowry法 有效微生物
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