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Description of spatial and temporal water quality and nitrogen dynamics in a split-pond aquaculture system .

机译:裂塘式水产养殖系统中时空水质和氮动态的描述。

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摘要

Production limits have been maximized in earthen pond (EP) aquaculture. Pond design innovations may increase limits of catfish production by enhancing nitrogen processes. The split-pond system (SPS) partitions a pond into fish (20%) and waste treatment/oxygen production compartments (80%). In 2010, an SPS and EP were stocked (March) and harvested (October) with 25,000 catfish ha-1. Water quality (DO, pH, temp, ORP, CHL-a), nitrogen dynamics (TN, TAN, NO2-, NO3-), nitrogen pathway estimation, and nitrogen budgets were compared. In the waste treatment compartment, maximum DO concentrations exceeded 40 mg L-1, whereas ORP values provided favorable denitrification conditions. October EP NO2- concentrations were 3-4 mg L-1; 10-fold greater than the SPS. Feed (~90%) and fish (~60%) were the greatest source and sink of nitrogen, respectively. The SPS may be a promising pond design for the catfish industry through enhanced nitrogen removal and potential opportunity for increased production.
机译:土池(EP)水产养殖的生产极限已达到最大。池塘设计的创新可能会通过增强氮过程来增加limits鱼的生产极限。裂池系统(SPS)将池塘分为鱼(20%)和废物处理/制氧区(80%)。 2010年,对SPS和EP进行了放牧(3月),并于10月收获了25,000头2鱼ha-1。比较了水质(DO,pH,温度,ORP,CHL-a),氮动力学(TN,TAN,NO2-,NO3-),氮途径估算和氮预算。在废物处理室内,最大溶解氧浓度超过40 mg L-1,而ORP值提供了有利的反硝化条件。 10月EP NO2-浓度为3-4 mg L-1;比SPS大10倍。饲料(〜90%)和鱼类(〜60%)分别是最大的氮源和总氮。通过增加氮的去除和增加产量的潜在机会,SPS可能是for鱼行业有前途的池塘设计。

著录项

  • 作者

    McDonnell, Andrew William.;

  • 作者单位

    Mississippi State University.;

  • 授予单位 Mississippi State University.;
  • 学科 Agriculture Fisheries and Aquaculture.
  • 学位 M.S.
  • 年度 2012
  • 页码 95 p.
  • 总页数 95
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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