首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Rapid Protocol for Screening of Biocatalyst for Application in Microbial Fuel Cell: A Study with Shewanella algae
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Rapid Protocol for Screening of Biocatalyst for Application in Microbial Fuel Cell: A Study with Shewanella algae

机译:用于筛选微生物燃料电池的生物催化剂的快速方案:肺藻类研究

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Due to energy expansion and sustainable development of resources and systems, there has been an increasing demand for environmentally friendly alternative energy systems. Microbial fuel cells (MFCs) are considered one of the most promising alternative energy generation systems. The microorganism is one of the key limiting factors to enhance the performance efficiency of MFC. Therefore, proper evaluation of screening protocol is imperative benchmarks for selection of biocatalyst in MFC. In the present study, an attempt was taken for rapid evaluation of iron-reduction capacity and growth of Shewanella algae through optimization of process parameters using Taguchi methodology. Here, five process parameters, including lactose, trace element, inoculum percentage, pH, and temperature, were taken into consideration as imperative factors and were optimized for evaluation of iron-reduction analysis along with growth of bacteria. The main effect of each parameter, along with their interaction influence and optimal value, was determined using a signal-to-noise (S/N) ratio. The evaluation of quality characteristics of each parameter was also determined in Taguchi robust methodology using S/N ratio. Analysis of variancewas performed to assess statistically important process parameters. Predicted results exhibited that enhanced bacterial growth (120%) and iron-reduction capacity (114%) can be achieved with 8 g/L of lactose, 2 mL of trace element solution, 7 of initial pH, 30 °C of temperature, and 4% (v/v) of inoculum percentage. It is evident from the results that Shewanella algae can be used as a promising catalyst for MFC.
机译:由于能源扩大和资源和系统的可持续发展,对环保替代能源系统的需求越来越大。微生物燃料电池(MFC)被认为是最有前途的替代能源产生系统之一。微生物是提高MFC性能效率的关键限制因素之一。因此,对筛查方案的适当评估是在MFC中选择生物催化剂的势在必行基准。在本研究中,通过使用TAGUCHI方法的优化过程参数来快速评估肺藻藻的铁还原能力和生长的尝试。这里,考虑到五个工艺参数,包括乳糖,痕量元素,接种百分比,pH和温度,并针对细菌生长进行了优化以评估铁还原分析。使用信号对噪声(S / N)比确定每个参数的主要效果以及它们的相互作用影响和最佳值。使用S / N比例,也在Taguchi鲁棒方法中确定了每个参数的质量特征的评估。对统计学上重要过程参数进行评估的variancewas分析。预测结果表明,通过8g / L的乳糖,2ml痕量元素溶液,初始pH值,30℃,温度为7,温度,温度,温度,温度,温度,温度,温度为7,初始pH,温度,温度,可实现增强的细菌生长(120%)和铁还原能力(114%)和4%(v / v)接种百分比。从Shewanella藻类可以用作MFC的有希望的催化剂,很明显。

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