双齿围沙蚕-牙鲆网箱综合养殖模型碳、氮收支的实验研究
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中国水产科学研究院 黄海水产研究所, 农业部海洋渔业可持续发展重点实验室, 山东 青岛 266071

作者简介:

房景辉(1983-), 男, 博士后, 研究方向: 养殖生态学. E-mail: hui861@163.com

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S967.3

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国家973计划项目(2011CB409805); 国家“十二五”科技支撑计划项目(2011BAD13B06; 2011BAD13B05); 中央级公益性科研院所基本科研业务费专项资金资助项目(20603022013042).


Carbon and nitrogen budget and environmental optimization in an integrated cage culture model of Japanese flounder with Perinereis aibuhitensis
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Key Laboratory for Sustainable Utilization of Marine Fisheries Resources, Ministry of Agriculture, Yellow Sea Fisheries Research Institute, Qingdao 266071, China

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    摘要:

    个实验组分别记作, 60 cm×30 cm, 沙蚕作为实验初始样品。实验期间和次投喂配合饲料此过程中不处理残饵和粪便。实验单元采用微流水。实验期间。将其全部取出称重后置于研磨、分析。结果表明的底质积累碳、氮量最高。在输出各项中>0.05)但与对照组底质积累氮所占输出氮比例显著高于对照组和双齿围沙蚕在综合养殖模型中可利用牙鲆网箱养殖产生的残饵和粪便提高产投比网箱养殖牙鲆搭配双齿围沙蚕的综合养殖模型理论上具有可行性

    Abstract:

    The culture of fish in cages has been shown to be economically efficiency; however, it produces large amounts of fish feces and uneaten food. These organic waste materials, containing significant levels of carbon, nitrogen, phosphorus, etc., can cause environmental damage and may result in decreased dissolved oxygen levels within cages, negatively affecting fish production. During an exploration of benthic taxa beneath cage culture, numerous nereids were recorded, including , an important seashore species of polychaete, feeding in the sediments. In the present study, a system of fish cage culture and were combined in a 40-day laboratory experiment to investigate the carbon/nitrogen budget and its effect on environmental optimization. The experimental design involved four treatments at the same fish density within the cage (Japanese flounder, , about 21 g/ind, 5 ind/cage) and different densities of (0, 50, 70 and 90 g; designated C, S1, S2 and S3). There were three replicates for each treatment. The cage was 60 cm in diameter by 30 cm deep. The fish and were starved for 24 h before being weighed. Five Japanese flounders and 20 g of were in the initial sample. All specimens were fed twice a day with artificial pellets at 07:30 and 18:00 during the experimental period. The amount of food was similar in each group and was adjusted according to the uneaten food in the control group. Uneaten food and fish feces were left in the system. The system had a steady flow rate of 250–300 L/day and light aeration was provided continuously. A simulated natural photoperiod (14:10, light/dark) was used throughout the experiments. At the end of the experiment, all animals were sampled, weighed after 24 h starvation, and oven-dried at 70 for 48 h for analysis. The results showed that the levels of carbon and nitrogen in the sediment were higher in the control (C) than in other treatments. There was no significant difference among treatments in the amount of carbon lost in respiration, or for the net output of organic carbon and nitrogen in water (> 0.05). The input of carbon and nitrogen was principally from food. In addition, there was no significant difference among treatments of the proportion of nitrogen for net output in water (> 0.05). The proportion of nitrogen output from the system was highest in the control, but there was no significant difference between C, S1 and S2 (> 0.05). The proportion of nitrogen accumulated in sediment was higher in the control than in either S2 or S3 (0.05). The proportion of carbon accumulated in sediment was highest in the control (0.05). The proportion of organic carbon for net output in water was higher in C and S1 than in S3 (0.05). The proportion of carbon output for the system was significantly lower in S3 than in S1 or the control (0.05). Both the carbon and nitrogen output ratios were lowest in the control. In the present experiment, was shown to be a significant consumer of uneaten food and feces in our model of “Japanese flounder cage culture and ”. Our novel model could be valuable in reducing carbon and nitrogen accumulation in the sediment beneath Japanese flounder cage culture and thereby improving the environment and enhancing fish production.

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房景辉,张继红,吴文广,毛玉泽,高亚平,蒋增杰,方建光.双齿围沙蚕-牙鲆网箱综合养殖模型碳、氮收支的实验研究[J].中国水产科学,2014,21(2):391-397
FANG Jinghui, ZHANG Jihong, WU Wenguang, MAO Yuze, GAO Yaping, JIANG Zengjie, FANG Jianguang. Carbon and nitrogen budget and environmental optimization in an integrated cage culture model of Japanese flounder with Perinereis aibuhitensis[J]. Journal of Fishery Sciences of China,2014,21(2):391-397

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  • 在线发布日期: 2015-07-16
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