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Biomass production and nutrient dynamics in an aquaponics system.

机译:鱼菜共生系统中的生物量生产和养分动态。

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摘要

The goal of this study was to prove that aquaponic systems can produce lettuce of equal growth and quality compared to hydroponic lettuce production and to determine the stocking density of fish required for plant growth. Aquaponics is the integration of recirculating aquaculture and hydroponic plant production. The project had four objectives. The first objective was to determine the biomass of fish required for plant growth to develop a fish to plant density ratio. The second objective was to compare lettuce grown with aquaponic water and a hydroponic solution under the same environmental conditions. The third objective was to compare the quality of lettuce grown with aquaponics water plus nutrient supplementation with a hydroponic solution. The fourth objective was to determine the nitrogen dynamics in the aquaponic system and to compare the nutrient composition of lettuce grown with aquaponics water with nutrient supplementation and hydroponic solution. It was determined that under the specified environmental conditions 5 kg m-3 of Nile tilapia (O. niloticus) fed 2% of their body weight daily yields on average 4.7 kg m-2 of lettuce (L. sativa cv. Rex) in 35 days. There was no significant difference (p≤0.05) in biomass or chlorophyll concentration index in lettuce (L. sativa cv. Rex) grown with aquaponics water and nutrient supplements versus a hydroponic solution. The aquaponics solution generated equal biomass and chlorophyll concentration indexes compared to the hydroponic solution. Aquaponics water plus supplementation can yield L. sativa cv. Rex with equal biomass accumulation and chlorophyll concentration indexes compared to hydroponics lettuce. Nutrients added to the aquaponics system consisted of iron, manganese, and zinc. These nutrient concentrations became depleted in the aquaponics water over time and were not replenished via the fish feed. Dolomite was added to the aquaponics system every two weeks to increase the buffering capacity of the water and maintain optimal pH levels. Aquaponics lettuce had similar nutrient composition to hydroponic lettuce. One head of L. sativa cv. Rex (176.75 +/- 31.03) will assimilate approximately 5.96 grams of nitrogen (3.38% per dry gram lettuce). One kilogram of fish will yield 6.4 lettuce heads (1,128 grams) and fixate 38.13 grams of nitrogen.
机译:这项研究的目的是证明与水培生菜相比,水培系统可以生产出同等生长和质量的生菜,并确定植物生长所需的鱼类放养密度。鱼菜共生是循环水产养殖和水培植物生产的整合。该项目有四个目标。第一个目标是确定植物生长以发展鱼与植物密度比所需的鱼生物量。第二个目标是比较在相同环境条件下用水培水和水培溶液种植的生菜。第三个目标是比较水培液加营养液和水培液种植的生菜的质量。第四个目标是确定水培系统中的氮动态,并比较使用水培液和营养补充剂和水培溶液种植的生菜的营养成分。经确定,在特定的环境条件下,35公斤中有5公斤m-3的尼罗罗非鱼(O. niloticus)的日产量为平均体重的2%,平均为4.7公斤m-2莴苣(L. sativa cv。Rex)。天。与水培溶液相比,使用水培液和营养添加剂的生菜(L. sativa cv。Rex)的生物量或叶绿素浓度指数没有显着差异(p≤0.05)。与水培溶液相比,共生溶液产生相等的生物量和叶绿素浓度指数。鱼菜共生素水加补充剂可产生紫花苜蓿。与水培生菜相比,雷克斯具有相同的生物量积累和叶绿素浓度指数。添加到水培系统中的营养物质包括铁,锰和锌。随着时间的流逝,这些营养物浓度在鱼菜共生水中被消耗掉了,并且没有通过鱼饲料得到补充。每两周将白云石添加到水培系统中,以增加水的缓冲能力并保持最佳pH值。水培生菜的营养成分与水培生菜相似。紫花苜蓿的一个头。雷克斯(176.75 +/- 31.03)将吸收约5.96克氮(每干克生菜3.38%)。一千克鱼将产生6.4头莴苣(1,128克),固氮38.13克。

著录项

  • 作者

    Licamele, Jason.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Agriculture Plant Culture.;Agriculture Fisheries and Aquaculture.;Engineering Agricultural.
  • 学位 Ph.D.
  • 年度 2009
  • 页码 172 p.
  • 总页数 172
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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