Sea grape (Caulerpa lentillifera) cultivation in artificial seawater closed system

Udomluk Sompong,, Jirayu Mingkaew, Doungporn Amornlerdpison, Kriangsak Mengumphan
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引用次数: 2

Abstract

In the present study, the daily relative growth rates of the green macroalga (sea grape, Caulerpa lentillifera) in artificial seawater closed system with cement ponds was evaluated. Cultivation in artificial seawater was investigated for the combined impact of three significant aspects: algal productivity, water quality and nutritional value. Sea grape was cultured for 30 days and important factors were analyzed weekly, and the results showed that the fastest growth rate (productivity rate) was recorded in the second week at 23.27 g.day-1. After that, biomass yield was steadily decreased to 11.67 g.day-1 in the fourth week. The ranges of the experimental cultivation conditions were salinity (29.13 - 31.54 ppt), pH (8.42 - 9.41), air temperature (12.14 - 35.13ºC), water temperature (21.02 - 24.64ºC), light intensity (0 - 35,350.00 lux), electrical conductivity, EC (46.67 - 48.62 ms.cm-1), total dissolved solids, TDS (25.22 - 26.14 g.l-1) and alkalinity (74.00 - 106.67 mg.l-1). During cultivation, the EC was high and the values were quite stable. The amount of ammonia-nitrogen, nitrite-nitrogen, nitrate-nitrogen ranged were 0.17 - 7.20, 2.04 - 8.51 and 2.06 - 3.60 mg.l-1, respectively. The amount of inorganic phosphorus (phosphate phosphorus) was between 0.58 - 0.91 mg.l-1. The nutritional value of cultivated sea grape was performed by dry algal weight and the amount of protein, fat, moisture, ash, fiber and carbohydrate were 24.44 ± 4.329, 2.07 ± 0.13, 8.53 ± 0.40, 38.99 ± 0.30, 14.50 ± 1.28 and 11.47%, respectively. This artificial seawater grown algae contained a high amount of protein (24.44%), and our study results show that artificial seawater cultivation presents positive production of nutritions.
人工海水封闭系统栽培海葡萄
研究了水泥池人工海水封闭系统中大型绿藻(海葡萄、小扁豆)的日相对生长率。研究了人工海水养殖对海藻产量、水质和营养价值三个方面的综合影响。海葡萄培养30 d,每周对重要因素进行分析,结果表明,第二周的生长速度(生产力)最快,为23.27 g.day-1。之后,第四周生物量产量稳步下降至11.67 g.day-1。试验培养条件范围为盐度(29.13 ~ 31.54 ppt)、pH(8.42 ~ 9.41)、气温(12.14 ~ 35.13ºC)、水温(21.02 ~ 24.64ºC)、光照强度(0 ~ 35350.00 lux)、电导率、EC (46.67 ~ 48.62 ms.cm-1)、总溶解固形物、TDS (25.22 ~ 26.14 g.l-1)和碱度(74.00 ~ 106.67 mg.l-1)。栽培过程中,EC值较高,且较为稳定。氨氮、亚硝酸盐氮、硝酸盐氮用量分别为0.17 ~ 7.20、2.04 ~ 8.51和2.06 ~ 3.60 mg。l - 1。无机磷(磷酸磷)含量在0.58 ~ 0.91 mg.l-1之间。以干藻重为营养价值,蛋白质、脂肪、水分、灰分、纤维和碳水化合物含量分别为24.44±4.329、2.07±0.13、8.53±0.40、38.99±0.30、14.50±1.28和11.47%。该人工海水培养藻类蛋白质含量较高(24.44%),研究结果表明,人工海水培养具有积极的营养生产效果。
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