The effects of freezing and thawing on Alaria esculenta

IF 2.8 3区 生物学 Q3 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Randi Sund, Turid Rustad, Arne Duinker, Dagbjørn Skipnes
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引用次数: 0

Abstract

Seaweeds must be stabilised shortly after harvesting to avoid rapid deterioration. To handle large amounts harvested during a short period, freezing and frozen storage until utilisation or further processing is one of the methods used industrially. The aim of this study was to assess the effects of different freezing and thawing procedures on Alaria esculenta by analysis of the chemical composition of the seaweed and the drip loss expelled during thawing. Thawing of industrially frozen A. esculenta resulted in a drip loss of 57% of wet weight. The drip loss had a dry matter content of 7% of wet weight, of which 71% was mineral content. Analysis showed that, of the dry matter excluding ash, alanine, aspartic acid, and mannitol were the main components lost to the drip loss. Experiments with a second batch of A. esculenta looking at quick and slow freezing and thawing showed that quick freezing resulted in a significantly lower drip loss than slow freezing; 20% compared to up to 42% of wet weight. Dry matter and mineral content of the drip loss of these samples were all around 6% of wet weight and 31% of dry weight. For some applications it might be of interest to reduce the concentration of potentially toxic elements such as iodine and heavy metals, but due to a high loss of other biomass this was not very effectively done by freezing and thawing. For preservation purposes, quick freezing is the best alternative to retain seaweed biomass.

Abstract Image

冷冻和解冻对 Alaria esculenta 的影响
海藻必须在收获后短期内稳定下来,以避免迅速变质。为了处理短期内收获的大量海藻,工业上采用的方法之一是冷冻和冷藏,直至利用或进一步加工。本研究的目的是通过分析海藻的化学成分和解冻过程中排出的滴水损失,评估不同冷冻和解冻程序对海藻的影响。工业冷冻海藻解冻后的滴水损失为湿重的 57%。滴落物的干物质含量为湿重的 7%,其中 71% 为矿物质。分析表明,在不包括灰分的干物质中,丙氨酸、天门冬氨酸和甘露醇是滴漏损失的主要成分。对第二批 A. esculenta 进行的快速和慢速冷冻和解冻实验表明,快速冷冻导致的滴水损失明显低于慢速冷冻;滴水损失为湿重的 20%,而慢速冷冻则高达 42%。这些样本滴水损失的干物质和矿物质含量均约为湿重的 6% 和干重的 31%。在某些应用中,降低潜在有毒元素(如碘和重金属)的浓度可能是有意义的,但由于其他生物质的大量流失,冷冻和解冻并不能有效地做到这一点。出于保存目的,快速冷冻是保留海藻生物量的最佳选择。
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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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