首页> 外文期刊>Aquacultural Engineering: An International Journal >Development of an innovative ring-shaped cultivation system for a land-based cultivation of marine macroalgae
【24h】

Development of an innovative ring-shaped cultivation system for a land-based cultivation of marine macroalgae

机译:陆基耕种陆基栽培创新环形栽培系统的发展

获取原文
获取原文并翻译 | 示例
           

摘要

Highlights ? An innovative, closed, ring-shaped cultivation vessel was developed by simplifying tumble movement to a circular motion pattern. ? New cultivation vessel combines adaptability and manageability with growth rates similar or better than standard tank cultivation. ? New cultivation vessel distinctly reduces variable cost, facilitates control of the cultivation process and eliminates interferences with the environment. Marine macroalgae become increasingly important as a regenerative source of biomass for the production of food, pharmaceuticals, cosmetics and energy. An increasing and environmentally sound utilization of algae requires a closed, land-based cultivation, not limited to coastal or offshore areas. Within this study, segmental and ring-shaped cultivation vessels were developed and compared to tumble cultivation in a circular tank. The development of these innovative approaches also considered economic efficiency, adaptability, handling and reliability. The growth rates achieved by cultivating the red algae P. palmata and C. crispus and the green alga U. lactuca over a test period of 7 d were used to evaluate these experimental models. Mean growth rates of P. palmata and C. crispus in the ring-shaped cultivation model were slightly decreased whereas growth rate of U. lactuca was similar or increased compared to tank cultivated algae. The developed ring-shaped cultivation system distinctly lowered variable costs by reducing the necessary volume of cultivation medium. An increased control of the cultivation process was achieved by separating the supply of CO2 and nutrients, and the temperature control from agitation.
机译:强调 ?通过简化滚动运动到圆形运动模式,开发了一种创新的,闭环的环形培养容器。还新的栽培船只将适应性和可管理性与增长率相似或比标准坦克栽培更好。还新型栽培船明显降低可变成本,便于控制栽培过程,消除了环境干扰。海洋Macroalgae作为生产食品,药品,化妆品和能量的再生生物质来源越来越重要。藻类的不断增加和环境的利用需要一个封闭的陆地培养,不仅限于沿海或近海地区。在该研究中,开发并与圆形罐中的滚筒栽培进行了开发和环形培养容器。这些创新方法的发展也考虑了经济效率,适应性,处理和可靠性。通过在7d的测试期间培养红藻P. palmata和C.Crespus和C.Cresspus和绿藻U.Lactiuca来实现的增长率。环形栽培模型中P. palmata和C. crispus的平均生长速率略有下降,而U.乳酸的生长速率与坦克栽培藻类相比相似或增加。通过减少必要的培养基体积,开发的环形栽培系统明显降低了可变成本。通过将CO 2和营养物供应和搅拌的温度控制来实现对培养过程的增加。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号