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Microbial fuel cells potential of marine actinobacteria Actinoalloteichus sp. MHA15 from the Havelock island of the Andamans, India

机译:海洋放线杆菌Actinoalloteichus sp。的微生物燃料电池潜力。来自印度安达曼哈夫洛克岛的MHA15

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In the recent past, use of fossil fuel is on the rise and has triggered global energy crisis. So, renewable bioenergy is viewed as one of the means to tackle this problem. In this context, interest in microbial fuel cells (MFCs) is increasing and gaining popularity due to their ability to convert the organic wastes into renewable energy. Present investigation is on the bioelectricity production by a marine actinobacterium isolated from the Havelock island of the Andamans. Actinobacterial colonies were isolated from the sediment samples, using Kuster's agar. 19 morphologically distinct strains were subjected to cellulase enzyme screening. Among them, higher cellulose degradation capacity was found in the strain MHA15. This potential strain was selected and identified as a species close to Actinoalloteichus cyanogriseus . The strain was subjected to bioelectricity generation using sugarcane bagasse as substrate and was evaluated in a dual chambered microbial fuel cell. In the MFC, initial voltage output started at 160?mV and it gradually increased, reaching a maximum of 257?mV at the 3rd hour in the actinobacterial incubated bagasse solution. From the MFC analyzed sludge bagasse, microbial diversity was searched using different media and only actinobacterial colonies were observed. Conventional taxonomic characters of the isolates were identical to the potential actinobacterial strain MHA15 which produced bioelectricity from bagasse. Marine actinobacteria, with their unique nature, differ very much in many aspects from their terrestrial counterparts and are known to produce diverse spectra of novel and useful substances and excellent bioactivity. Results of the present study have ascertained that the marine actinobacterial strain Actinoalloteichus sp. MHA15 is capable of generating bioelectricity and there is much scope for utilizing such marine actinobacteria for large scale production of bioelectricity, after further in-depth studies.
机译:在最近的过去,化石燃料的使用正在上升,并引发了全球能源危机。因此,可再生生物能源被视为解决这一问题的手段之一。在这种情况下,由于微生物燃料电池将有机废物转化为可再生能源的能力,对微生物燃料电池(MFCs)的兴趣正在增加并越来越受欢迎。目前的研究是关于从安达曼群岛的哈夫洛克岛分离出来的海洋放线菌产生的生物电。使用库斯特氏琼脂从沉积物样品中分离出放线菌菌落。对19种形态不同的菌株进行了纤维素酶的筛选。其中,在菌株MHA15中发现较高的纤维素降解能力。选择该潜在菌株并鉴定为接近Actinoalloteichus cyanogriseus的物种。使用甘蔗渣作为底物对该菌株进行生物电发电,并在双室微生物燃料电池中对其进行了评估。在MFC中,初始电压输出始于160?mV,然后逐渐增加,在放线菌培养的甘蔗渣溶液中第3小时达到最大257?mV。从MFC分析的污泥甘蔗渣中,使用不同的培养基搜索微生物多样性,仅观察到放线菌菌落。分离物的常规分类学特征与潜在的放线菌菌株MHA15相同,后者从蔗渣中产生生物电。海洋放线菌具有其独特的性质,在许多方面与陆地上的放线菌有很大不同,并且已知会产生新颖和有用物质的多种光谱以及出色的生物活性。本研究的结果已确定海洋放线菌菌株Actinoalloteichus sp。 MHA15能够产生生物电,在进一步深入研究之后,利用这种海洋放线菌来大规模生产生物电存在很大的空间。

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