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Accelerated Kimberlite Weathering-The Future of Diamond Mining?

机译:加速金伯拉特风化 - 钻石采矿的未来?

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Kimberlite weathering has been a topic of ongoing research within De Beers for many years.Using kimberlite weathering as an alternative to crushing has many advantages e.g.power and reducing diamond breakage.Weathering could also possibly be used in conjunction with crushing just to weaken the material and reduce power consumption.These forces have driven current research to investigate whether kimberlite weathering could be utilised for these reasons.Weathering in this context does not refer to weathering over long period of time but rather to disintegration of the material in aqeous media in relative short time periods.Previous published work discussed that the presence of smectite renders kimberlite weatherable and that the amount of smectite determines the rate of weathering (Morkel and Vermaak,2006).The current work investigates whether cation exchange or the adsorption of organic species in the smectite interlayer could influence the observed weathering behaviour.The results show that cation exchange does take place in the presence of cation species and that the weathering behaviour can be drastically improved with especially Cu2+ cations.Concentration and time effects of the weathering was also investigated. Weathering tests with organic species such as ethanol,methanol,edta,pentanol,butanol,acetic acid and oxalic acid was performed.The results show that organic species does improve weathering but under these testing conditions was not as effective as cations.
机译:金伯利岩风化一直在进行研究的戴比尔斯内的话题很多years.Using金伯利岩风化作为替代破碎具有egpower和减少钻石breakage.Weathering也可能将结合粉碎只是削弱材料和所用的许多优点降低功耗consumption.These力量推动目前的研究调查是否金伯利岩风化能在这方面可以利用这些reasons.Weathering并不是指风化的时间过长时间,而是在相对短的时间内aqeous介质材料的解体periods.Previous发表的作品讨论了蒙皂石的存在使得金伯利岩耐候和蒙脱石的量决定风化(莫克尔和Vermaak,2006)。目前的工作调查率是否阳离子交换或有机物质中的层间蒙脱石吸附可能影响观测到的风化behaviour.The结果显示该阳离子交换确实发生在阳离子物质的存在和风化行为可以与特别是铜离子cations.Concentration和风化的时间的影响也进行了研究飞跃性地提高。与有机物质,例如乙醇,甲醇,EDTA,戊醇,丁醇,乙酸和草酸风化试验中performed.The结果表明,有机物质确实改善耐候但这些测试条件下是不一样有效阳离子。

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