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Bioremediation of acid mine drainage using algae strains: A review

机译:藻类菌株对酸性矿山排水的生物修复研究进展

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摘要

Acid mine drainage (AMD) causes massive environmental concerns worldwide. It is highly acidic and contains high levels of heavy metals causing environmental damage. Conventional treatment methods may not be effective for AMD. The need for environmental remediation requires cost effective technologies for efficient removal of heavy metals. In this study, algae based systems were reviewed and analyzed to point out the potentials and gaps for future studies. Algae strains such as Spirulina sp., Chlorella , Scenedesmus , Cladophora , Oscillatoria , Anabaena , Phaeodactylum tricornutum have showed the capacity to remove a considerable volume of heavy metals from AMD. They act as “hyper-accumulators” and “hyper-adsorbents” with a high selectivity for different elements. In addition, they generate high alkalinity which is essential for precipitation of heavy metals during treatment. However, algae based methods of abating AMD are not the ultimate solution to the problem and there is room for more studies. Highlights ? Algae are great accumulators, absorbents and adsorbents with a high selectivity for pollutants. ? They generate high alkalinity which is essential for precipitation of heavy metals. ? They are potentially efficient for the removal of heavy metals in AMD. The bioremediation of acid mine drainage is achievable with the use of microalgae.
机译:酸性矿山排水(AMD)在全球范围内引起了广泛的环境关注。它是高酸性的,并且含有大量的重金属,会对环境造成损害。常规治疗方法可能对AMD无效。对环境修复的需求需要具有成本效益的技术,以有效去除重金属。在这项研究中,对基于藻类的系统进行了审查和分析,以指出未来研究的潜力和差距。藻类菌株如螺旋藻,小球藻,Scendesmus,Cladophora,Oscillatoria,Anabaena和Phaeodactylum tricornutum已显示出从AMD去除大量重金属的能力。它们充当“超级蓄积剂”和“超级吸附剂”,对不同元素具有高选择性。另外,它们产生高碱度,这对于处理期间重金属的沉淀必不可少。然而,基于藻类的减轻AMD的方法并不是解决该问题的最终方法,并且还有更多的研究空间。强调 ?藻类是极好的蓄积剂,吸收剂和吸附剂,对污染物的选择性高。 ?它们产生高碱度,这对于重金属的沉淀必不可少。 ?它们对于去除AMD中的重金属可能是有效的。使用微藻可以实现酸性矿山排水的生物修复。

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