Suppr超能文献

黑曲霉胞外代谢产物对生物辅助铝提取的化学模拟。

Chemical mimicking of bio-assisted aluminium extraction by Aspergillus niger's exometabolites.

作者信息

Boriová Katarína, Urík Martin, Bujdoš Marek, Pifková Ivana, Matúš Peter

机构信息

Faculty of Natural Sciences, Comenius University, Mlynská dolina, Ilkovičova 6, Bratislava 842 15, Slovakia.

Faculty of Natural Sciences, Comenius University, Mlynská dolina, Ilkovičova 6, Bratislava 842 15, Slovakia.

出版信息

Environ Pollut. 2016 Nov;218:281-288. doi: 10.1016/j.envpol.2016.07.003. Epub 2016 Jul 18.

Abstract

Presence of microorganisms in soils strongly affects mobility of metals. This fact is often excluded when mobile metal fraction in soil is studied using extraction procedures. Thus, the first objective of this paper was to evaluate strain Aspergillus niger's exometabolites contribution on aluminium mobilization. Fungal exudates collected in various time intervals during cultivation were analyzed and used for two-step bio-assisted extraction of alumina and gibbsite. Oxalic, citric and gluconic acids were identified in collected culture media with concentrations up to 68.4, 2.0 and 16.5 mmol L, respectively. These exometabolites proved to be the most efficient agents in mobile aluminium fraction extraction with aluminium extraction efficiency reaching almost 2.2%. However, fungal cultivation is time demanding process. Therefore, the second objective was to simplify acquisition of equally efficient extracting agent by chemically mimicking composition of main organic acid components of fungal exudates. This was successfully achieved with organic acids mixture prepared according to medium composition collected on the 12th day of Aspergillus niger cultivation. This mixture extracted similar amounts of aluminium from alumina compared to culture medium. The aluminium extraction efficiency from gibbsite by organic acids mixture was lesser than 0.09% which is most likely because of more rigid mineral structure of gibbsite compared to alumina. The prepared organic acid mixture was then successfully applied for aluminium extraction from soil samples and compared to standard single step extraction techniques. This showed there is at least 2.9 times higher content of mobile aluminium fraction in soils than it was previously considered, if contribution of microbial metabolites is considered in extraction procedures. Thus, our contribution highlights the significance of fungal metabolites in aluminium extraction from environmental samples, but it also simplifies the extraction procedure inspired by bio-assisted extraction of aluminium by common soil fungus A. niger.

摘要

土壤中微生物的存在会强烈影响金属的迁移性。当使用萃取程序研究土壤中可移动金属部分时,这一事实常常被忽略。因此,本文的首要目标是评估黑曲霉的胞外代谢产物对铝迁移的作用。分析了培养过程中不同时间间隔收集的真菌分泌物,并将其用于两步生物辅助提取氧化铝和三水铝石。在收集的培养基中鉴定出了草酸、柠檬酸和葡萄糖酸,其浓度分别高达68.4、2.0和16.5 mmol/L。这些胞外代谢产物被证明是提取可移动铝部分最有效的试剂,铝提取效率几乎达到2.2%。然而,真菌培养是一个耗时的过程。因此,第二个目标是通过化学模拟真菌分泌物主要有机酸成分的组成来简化获取同等高效萃取剂的过程。根据黑曲霉培养第12天收集的培养基组成制备的有机酸混合物成功实现了这一目标。与培养基相比,该混合物从氧化铝中提取的铝量相似。有机酸混合物从三水铝石中提取铝的效率低于0.09%,这很可能是因为三水铝石的矿物结构比氧化铝更致密。然后将制备的有机酸混合物成功应用于从土壤样品中提取铝,并与标准的单步提取技术进行比较。结果表明,如果在提取过程中考虑微生物代谢产物的作用,土壤中可移动铝部分的含量至少比之前认为的高2.9倍。因此,我们的研究突出了真菌代谢产物在从环境样品中提取铝方面的重要性,但同时也简化了受常见土壤真菌黑曲霉生物辅助提取铝启发的提取程序。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验