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Exploring effective light spectral conversion techniques for enhanced production of Spirulina-derived blue pigment protein, c-phycocyanin
Bioresource Technology ( IF 9.7 ) Pub Date : 2024-03-18 , DOI: 10.1016/j.biortech.2024.130612
Bavatharny Thevarajah 1 , Sajani Piyatilleke 1 , P H V Nimarshana 2 , S Koushalya 3 , Anushree Malik 3 , Thilini U Ariyadasa 1
Affiliation  

is a promising feedstock for c-phycocyanin, a blue pigment-protein, commercially incorporated in many food products for its desirable bright blue attributes, exceptional bioavailability, and inherent therapeutic properties. Remarkably, enhancing c-phycocyanin synthesis in would facilitate economic viability and sustainability at large-scale production, as the forecasted market value is $ 409.8 million by 2030. Notably, the lighting source plays a key role in enhancing c-phycocyanin in , and thus, strategies to filter/concentrate the photons of respective wavelengths, influencing light spectra, are beneficial. Enveloping open raceway ponds and greenhouses by luminescent solar concentrators and light filtering sheets enables solar spectral conversion of the sunlight at desirable wavelengths, emerges as a promising strategy to enhance synthesis of c-phycocyanin in . Nevertheless, the conduction of techno-economic assessments and evaluation of scalability at large-scale cultivation of are essential for the real-time implementation of lighting strategies.

中文翻译:


探索有效的光谱转换技术以提高螺旋藻来源的蓝色色素蛋白 c-藻蓝蛋白的产量



是一种很有前景的 c-藻蓝蛋白原料,c-藻蓝蛋白是一种蓝色色素蛋白,因其理想的亮蓝色属性、卓越的生物利用度和固有的治疗特性而在商业上掺入许多食品中。值得注意的是,增强 c-藻蓝蛋白合成将促进大规模生产的经济可行性和可持续性,预计到 2030 年市场价值将达到 4.098 亿美元。值得注意的是,光源在增强 c-藻蓝蛋白方面发挥着关键作用,因此,过滤/集中各个波长的光子、影响光谱的策略是有益的。通过发光太阳能聚光器和滤光片包围开放式水道池塘和温室,可以将太阳光的光谱转换为所需波长,这成为增强 c-藻蓝蛋白合成的一种有前途的策略。尽管如此,大规模种植的技术经济评估和可扩展性评估对于照明策略的实时实施至关重要。
更新日期:2024-03-18
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