优化海藻生物量生产--双海带解决方案

IF 2.8 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Michael Stekoll, Alf Pryor, Alexandra Meyer, Hauke L. Kite-Powell, David Bailey, Kendall Barbery, Clifford A. Goudey, Scott Lindell, Loretta Roberson, Charles Yarish
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引用次数: 0

摘要

人们对养殖海带的兴趣已经超出了将海带用作食物、饲料或生物燃料。人们对从海藻中提取生物质用于生物塑料和其他产品(可替代石油衍生产品)产生了浓厚的兴趣。要使这些用途可行,需要大量的生物质。建造和维护大型海藻养殖场的成本很高,因此需要优化单位面积的生物量。虽然生长线间距过近可能导致生长不良,但一种可行的方法可能是将两种海带种植在一起:一种海带下垂,另一种海带具有浮力,向上生长。这种系统可以增加三维间距。在阿拉斯加,Saccharina latissima 通常挂在延绳上生长。阿拉斯加的浮力海带之一是 Nereocystis luetkeana。由于阿拉斯加野生收获的 Nereocystis 有商业用途,我们在阿拉斯加科迪亚克进行了一项初步试验,在同一延绳阵列中同时种植 Saccharina 和 Nereocystis。我们在 2023 年 2 月的第一周播种了间距较近的延绳,播种深度为海面以下 3 米。阵列于 2023 年 6 月下旬收获。组合阵列的总产量最高,其次是仅有 Nereocystis 的阵列和仅有 Saccharina 的阵列。尽管种植线数量减少了 45%,但综合阵列上的 Nereocystis 总产量与仅有 Nereocystis 的阵列在统计上相似。这些结果可能对大规模大型藻类生产具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Optimizing seaweed biomass production - a two kelp solution

Optimizing seaweed biomass production - a two kelp solution

Interest in farming kelps has grown beyond using kelp for food, feed or biofuels. There is considerable interest in generating biomass from seaweed for use in bioplastics and other products that would substitute for petroleum-derived products. For these uses to be viable, large amounts of biomass are needed. Very large kelp farms can be expensive to build and maintain, leading to the need to optimize the biomass per unit area. Although close spacing of growlines can lead to poor growth, a viable approach may be to grow two species of kelps together: one that hangs down and one that is buoyant, growing up. This system would increase the spacing in three dimensions. In Alaska, Saccharina latissima is commonly grown hanging down from longlines. One of the buoyant Alaskan kelps is Nereocystis luetkeana. Because there are commercial uses for wild-harvested Nereocystis in Alaska, we undertook a preliminary trial in Kodiak, Alaska, that grew both Saccharina and Nereocystis in the same longline array. Closely spaced lines were seeded the first week of February 2023 and set at 3 m below the surface. The arrays were harvested in late June 2023. Total yields were greatest on the combined arrays, followed by the Nereocystis only and Saccharina only arrays. Despite having 45% fewer grow-lines, the total yield of the Nereocystis on the combined arrays was statistically similar to the Nereocystis only arrays. These results may have significance for large scale macroalgal production.

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来源期刊
Journal of Applied Phycology
Journal of Applied Phycology 生物-海洋与淡水生物学
CiteScore
6.80
自引率
9.10%
发文量
212
审稿时长
2.8 months
期刊介绍: The Journal of Applied Phycology publishes work on the rapidly expanding subject of the commercial use of algae. The journal accepts submissions on fundamental research, development of techniques and practical applications in such areas as algal and cyanobacterial biotechnology and genetic engineering, tissues culture, culture collections, commercially useful micro-algae and their products, mariculture, algalization and soil fertility, pollution and fouling, monitoring, toxicity tests, toxic compounds, antibiotics and other biologically active compounds. Each issue of the Journal of Applied Phycology also includes a short section for brief notes and general information on new products, patents and company news.
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