首页> 外文期刊>Aquacultural Engineering: An International Journal >Mass balances of nitrogen and phosphorus in an integrated culture of shrimp (Litopenaeus vannamei) and tomato (Lycopersicon esculentum Mill) with low salinity groundwater: a short communication.
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Mass balances of nitrogen and phosphorus in an integrated culture of shrimp (Litopenaeus vannamei) and tomato (Lycopersicon esculentum Mill) with low salinity groundwater: a short communication.

机译:低盐度地下水的虾(对虾凡纳滨对虾)和番茄(Lycopersicon esculentum Mill)番茄的综合培养中氮和磷的质量平衡:简短的交流。

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摘要

This study re-examines the performance of an integrated shrimp-tomato system using the nutrients mass balance approach. A budget was calculated based on nutrients analysis, water management, feeding, fertilization, stocking, harvest and sludge removal. Nitrogen and P content in the input water (groundwater) were low, contributing 33.5% and 0.5%, of the total inputs, respectively. Most of the N (43.6%) and P (98.8%) entered to the system as shrimp food. Likewise, 15.2% and 2.5% of the input N, and 8.9% and 4.3% of the input P, were converted to harvested shrimp and tomato plants, respectively; 4.1% N and 24.6% P remained in the organic sludge, while the environmental losses expressed per unit of production were relatively low, 57 kg N ton-1 and 7.1 kg P ton-1 of product harvested. About 13.4% of input N was unaccounted for, and was assumed to be lost to the atmosphere via denitrification and volatilization. Comparison between these results and previous studies indicate that the shrimp-tomato system produces a relatively low recovery of N and P as harvested products, however, the main progress reached with this system is the reduction of the environmental losses of N and P in terms of kg of each nutrient per ton of the product harvested.
机译:这项研究使用营养物质质量平衡方法重新检查了集成虾-番茄系统的性能。根据养分分析,水管理,进料,施肥,放养,收获和污泥清除计算预算。进水(地下水)中的氮和磷含量较低,分别占总投入的33.5%和0.5%。 N(43.6%)和P(98.8%)的大部分以虾类食物的形式进入系统。同样,分别将输入氮的15.2%和2.5%以及输入P的8.9%和4.3%转化为收获的虾类和番茄植物。有机污泥中残留4.1%的N和24.6%的P,而单位生产所表达的环境损失相对较低,分别为57 kg N ton -1 和7.1 kg P ton -1 < / sup>收获的产品。约有13.4%的输入N未被解释,并假定通过反硝化和挥发作用而损失到大气中。这些结果与以前的研究之间的比较表明,虾-番茄系统收获的产品中氮和磷的回收率相对较低,但是,该系统的主要进展是减少了氮和磷对环境的损失。每吨产品收获的每种营养素的千克数。

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