SUSTAINABLE BIOFUEL PRODUCTION FROM ESTUARINE DIATOMS

T. V. Ramchandran, S. Gunasekaran
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引用次数: 1

Abstract

Purpose of the study: Microalgae with better carbon sequestration potential, higher biomass, and lipid productivity in comparison to terrestrial counterparts is emerging as a viable sustainable alternative to fossil fuels. Diatoms, a subgroup of a broader category of microalgae are well-known for their role as a bio-indicator in palaeo-climatological studies across historical timelines. Understanding ecology, community structure, and habitat preference of diatoms are prerequisites for prioritizing diatom strains towards sustainable biofuel production along with value-added product extraction. Method: Selection of appropriate strains, economically viable harvesting and environmentally sound transesterification are the challenges faced in microalgal industry. The present study focusses on understanding the variability in benthic diatom community assemblages across seasons and its affinity to different substrata at fixed sampling locations in an estuarine eco-system through field sampling for twelve months covering all seasons. Main Findings: The results highlight the tolerance and resilience in select diatom strains in fluctuating water qualities and seasonal variations, the insights much needed during mass cultivation under open environments. Statistical data analyses revealed distinct demarcation between sensitive and tolerant species with selective habitat preferences and resilience to fluctuating environmental conditions. Variations of benthic diatom community structure across various substrata highlights substratum affinity of diatom strains. From the inferences derived through field studies, mixed consortia of diatoms were developed, monitored, and optimized for higher biomass and lipid productivity under controlled laboratory conditions. Application of the Study: The results highlight the prospects of phyco-prospecting of indigenously grown diatom strains for sustainable biofuel production.
利用河口硅藻生产可持续生物燃料
研究目的:与陆地微藻相比,微藻具有更好的固碳潜力、更高的生物量和脂质生产力,正在成为化石燃料的可行可持续替代品。硅藻是一种更广泛的微藻的一个亚群,因其在古气候学研究中的生物指示作用而闻名。了解硅藻的生态、群落结构和栖息地偏好是优先考虑硅藻菌株可持续生物燃料生产和增值产品提取的先决条件。方法:选择合适的菌株,经济可行的收获和环境无害的酯交换是微藻工业面临的挑战。本研究旨在通过12个月的野外采样,了解河口生态系统中固定采样点底栖硅藻群落群落的季节变化及其对不同基质的亲和力。主要发现:所选硅藻菌株对水质波动和季节变化的耐受性和恢复力,这是开放环境下大规模培养硅藻所需要的。统计数据分析表明,敏感和耐受性物种之间存在明显的界限,具有选择性的栖息地偏好和对波动环境条件的恢复能力。底栖硅藻群落结构在不同基质中的变化突出了硅藻菌株的基质亲和力。根据实地研究得出的结论,在受控的实验室条件下,开发、监测和优化了硅藻混合群落,以获得更高的生物量和脂质生产力。研究的应用:研究结果强调了本土硅藻菌株在可持续生物燃料生产中的应用前景。
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