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首页> 外文期刊>Iranian Journal of Science and Technology. Transaction A, Science >The soil-plant relationship of Salsola orientalis S. G. Gmel. and its use in mineral prospecting from the Forumad area, Sabzevar ophiolite, Iran
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The soil-plant relationship of Salsola orientalis S. G. Gmel. and its use in mineral prospecting from the Forumad area, Sabzevar ophiolite, Iran

机译:Salsola Orientalis S.G.Gmel的土壤-植物关系。及其在伊朗萨布泽瓦尔蛇绿岩论坛区的矿物勘探中的使用

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摘要

Biogeochemical investigation on S. orientalis, a flora growing on the soils derived from serpentinized dunite in the Forumad area, Sabzevar ophiolite has been conducted in order to examine the plant-soil relationship in chromite prospecting. Due to engagement of Cr in the chromite crystal structure and its non-essential role in the plant's life cycle, Ni was used as pathfinder element in biogeochemical prospecting of chromite deposits. Quantitative estimation of Mn, Fe, Ca, Mg, K, Na, Cr, Ni and Co in soils and different plant organs of S. orientalis by using Atomic Absorption Spectroscopy (AAS) revealed that the leaf stem is the most reliable organ for ore prospecting in the Forumad area. Determination of bio-concentration factor (BCF) for Cr, Ni and Co in S. orientalis explicitly demonstrated that the flora adopts exclusion and accumulation mechanisms for Cr-Co and Ni, respectively. Current research signifies the excellent correlation between Cr and Ni (0.91) in host soil of the S. orientalis and the tendency of the plant to absorb Ni selectively enhances the chance of sampling the plant's leaf as a biogeochemical medium for the exploration of new hidden mineral deposits in the Sabzevar ophiolite belt as well as the other similar settings.
机译:为了研究铬铁矿勘探中植物与土壤的关系,已经对Sabzevar ophiolite的S. Orientalis进行了生物地球化学研究,该植物生长在蛇毒化的Dunite(蛇纹石化的辉长岩)上。由于Cr参与了铬铁矿晶体结构中的参与,并且在植物的生命周期中没有重要作用,因此Ni被用作铬铁矿矿床生物地球化学勘探中的探路元素。利用原子吸收光谱法(AAS)定量估算东方侧柏土壤和不同植物器官中的锰,铁,钙,镁,钾,钠,铬,镍和钴的含量,结果表明叶茎是最可靠的矿石器官在Forumad地区进行勘探。东方沙门氏菌中Cr,Ni和Co的生物富集因子(BCF)的测定明确表明,该菌群分别采用了Cr-Co和Ni的排斥和积累机制。当前的研究表明,东方五味子寄主土壤中的Cr与Ni(0.91)之间具有极好的相关性,并且植物选择性吸收Ni的趋势增加了将植物叶片作为生物地球化学培养基进行采样以探索新的隐藏矿物的机会。沉积在Sabzevar蛇绿岩带以及其他类似环境中。

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