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首页> 外文期刊>Turkish Journal of Fisheries & Aquatic Sciences >Water Budgeting in Black Tiger Shrimp Penaeus monodon Culture Using Different Water and Feed Management Systems
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Water Budgeting in Black Tiger Shrimp Penaeus monodon Culture Using Different Water and Feed Management Systems

机译:使用不同水和饲料管理系统的黑虎虾对虾对虾养殖中的水预算

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摘要

We quantify the total water use (TWU) and consumptive water use index (CWUI) in grow-out culture of Penaeus monodon at different water and feeding management protocols using the water balance equation. Under two different water management protocols, treatment-wise TWU, was 2.09 and 2.43 ha-m 122 d(-1) in T-1 (no water exchange) and T-2 (water exchange on 'requirement' basis depending on water quality), respectively. The computed CWUI (m(3) kg(-1) biomass), was 5.35 and 6.02 in T-1 and T-2, respectively. Lower rates of water exchange (T-2) showed significantly improved water quality, crop performance and productivity over the zero water exchange protocol. Similarly, under three different feed management protocols, treatment-wise estimated TWU was 2.52, 2.44 and 2.41 ha-m 119d(-1), while the computed CWUI was 7.28, 6.88 and 6.34 in T-1 (Regular feeding, 4-times a day), T-2 (2-weeks feeding followed by 1-week no feed) and T-3 (4-weeks feeding followed by 1-week no feed), respectively. Higher the feed input, higher was the TWU and CWUI. It was also recorded that longer the refeeding period, higher was the growth performance and yield as in the case of T-3. This feeding practice also helped in lowering the feed input (7.5% in T-2 and 5.5% in T-3), thus minimizes the input cost and improve production efficiency.
机译:我们使用水平衡方程式,对不同水量和饲喂管理方案下斑节对虾的成长期养殖中的总用水量(TWU)和消耗性用水量指数(CWUI)进行了量化。在两种不同的水管理方案下,处理方式的TWU在T-1(无水交换)和T-2(“按要求”进行水交换,取决于水质)下分别为2.09和2.43 ha-m 122 d(-1) ), 分别。在T-1和T-2中,计算出的CWUI(m(3)kg(-1)生物量)分别为5.35和6.02。与零水交换协议相比,较低的水交换速率(T-2)显示水质,作物性能和生产力显着提高。同样,在三种不同的饲料管理方案下,按处理方式估算的TWU为2.52、2.44和2.41 ha-m 119d(-1),而在T-1中,计算的CWUI为7.28、6.88和6.34(常规饲喂,4次一天),T-2(2周喂食,然后1周不喂食)和T-3(4周喂食,然后1周不喂食)。 Feed输入越高,TWU和CWUI越高。还记录到,与T-3一样,补料时间越长,生长性能和产量越高。这种饲喂做法还有助于降低饲料投入(T-2中为7.5%,T-3中为5.5%),从而将投入成本降至最低并提高了生产效率。

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