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Natural gold particles in Eucalyptus leaves and their relevance to exploration for buried gold deposits

机译:桉树叶中的天然金颗粒及其与埋藏金矿勘探的关系

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摘要

Eucalyptus trees may translocate Au from mineral deposits and support the use of vegetation (biogeochemical) sampling in mineral exploration, particularly where thick sediments dominate. However, biogeochemistry has not been routinely adopted partly because biotic mechanisms of Au migration are poorly understood. For example, although Au has been previously measured in plant samples, there has been doubt as to whether it was truly absorbed rather than merely adsorbed on the plant surface as aeolian contamination. Here we show the first evidence of particulate Au within natural specimens of living biological tissue (not from laboratory experimentation). This observation conclusively demonstrates active biogeochemical adsorption of Au and provides insight into its behaviour in natural samples. The confirmation of biogeochemical adsorption of Au, and of a link with abiotic processes, promotes confidence in an emerging technique that may lead to future exploration success and maintain continuity of supply.RI Lintern, Melvyn/M-6809-2013; Ryan, Chris/A-6032-2011OI Lintern, Melvyn/0000-0002-4436-6165; Ryan, Chris/0000-0003-2891-3912
机译:桉树可能会从矿藏中转移金,并支持在矿物勘探中使用植被(生物地球化学)采样,特别是在沉积物较重的地方。然而,生物地球化学尚未得到部分常规应用,因为对Au迁移的生物机制了解甚少。例如,尽管先前已经在植物样品中测量了Au,但是对于它是否被真正吸收而不是仅仅作为风尘污染而吸附在植物表面上,仍存在疑问。在这里,我们显示了活生物组织天然标本中颗粒金的第一个证据(并非来自实验室实验)。该观察结果最终证明了Au的活跃生物地球化学吸附,并提供了对Au在天然样品中的行为的了解。证实金的生物地球化学吸附以及与非生物过程的联系,增强了人们对新兴技术的信心,这种新兴技术可能会导致未来的勘探成功并保持供应的连续性。RILintern,Melvyn / M-6809-2013;克里斯(Ryan)/ A-6032-2011OI Lintern,梅尔文/ 0000-0002-4436-6165;克里斯·瑞安(Ryan)/ 0000-0003-2891-3912

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