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變速流操作調(diào)控循環(huán)水養(yǎng)殖系統(tǒng)水質(zhì)效果研究
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浙江重點(diǎn)科技創(chuàng)新團(tuán)隊(duì)計(jì)劃項(xiàng)目(2011R50029)和“十二五”國家科技支撐計(jì)劃項(xiàng)目(2014BAD08B09)


Effects of Variable Flow Rates on Water Qualities in Recirculating Aquaculture System
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    摘要:

    為了避免循環(huán)水養(yǎng)殖排氨高峰期氨氮和亞硝酸鹽積累對養(yǎng)殖動(dòng)物的毒害,,提高生產(chǎn)效率,降低成本,,提出了一種循環(huán)水養(yǎng)殖系統(tǒng)變速流調(diào)控技術(shù),。實(shí)驗(yàn)分別研究了羅非魚群排氨規(guī)律,、生物濾池硝化能力與流量關(guān)系以及循環(huán)率對循環(huán)系統(tǒng)水質(zhì)的影響,設(shè)計(jì)了變速流參數(shù)并進(jìn)行驗(yàn)證,。研究結(jié)果表明,,羅非魚群攝食后12h內(nèi)4~8h達(dá)到最大排氨速率(0.21~0.23g/h),其他時(shí)間排氨速率為0.08~0.09g/h,;生物濾池的硝化速率基本不受流量的影響,,但流量越高出水氨氮和亞硝酸鹽質(zhì)量濃度越低,并且最大氨氧化速率(7.72g/(m3·h))高于最大亞硝酸鹽氧化速率(7.21g/(m3·h)),;在實(shí)驗(yàn)循環(huán)水系統(tǒng)中,,375L/h 循環(huán)流量下氨氮和亞硝酸鹽質(zhì)量濃度高于750L/h循環(huán)流量下質(zhì)量濃度,且12h內(nèi)峰值超過限制質(zhì)量濃度,。根據(jù)以上結(jié)果設(shè)計(jì)的4~8h內(nèi)增加循環(huán)流量的變速流操作將高峰期氨氮和亞硝酸鹽氮質(zhì)量濃度分別降至2.03~2.24mg/L和0.56~0.62mg/L,,低于羅非魚限制質(zhì)量濃度,并且變速流易于實(shí)現(xiàn),在提高養(yǎng)殖水質(zhì)的同時(shí)降低成本,,為水質(zhì)調(diào)控和低成本循環(huán)水養(yǎng)殖技術(shù)提供了參考,。

    Abstract:

    To avoid the harms caused by the peak ammonia and nitrite produced during the ammonia release period, and increase the productivity and reduce the cost, operations under variable flow rates were investigated. To obtain the proper parameters for variable flow rates, the characteristics of tilapia ammonia release were firstly studied. After then, the effects of different flow rates on the nitrification rates and water qualities of recirculating aquaculture system (RAS) were studied. The results showed that during feeding interval, the highest ammonia release rate (0.21~0.23g/h) was found in 4~8h, 〖JP2〗while in other stages the ammonia releasing rate was 0.08~0.09g/h. Moreover, no obvious effects of flow rates on nitrification abilities were observed and the maximum ammonia oxidizing rate (7.72g/(m3·h)) 〖JP〗was higher than the maximum nitrite oxidizing rate (7.21g/(m3·h)) in nitrifying biofilm, indicating that mass transfer did not greatly affect the nitrification process. Besides, high flow rate (750L/h) in RAS produced lower ammonia and nitrite than those of low flow rate (375L/h), which also exhibited peak values of ammonia (3.26~3.37.mg/L) and nitrite (1.32~1.45mg/L) exceeding the permissive concentrations for tilapia in 12h. Therefore, the RAS was operated at 750L/h in 4~8h and 375L/h in other time during feeding interval. Lower ammonia and nitrite concentrations (2.03~2.24mg/L and 0.56~0.62mg/L) were obtained during the peak stage of ammonia release under variable flow rates. This operation could be achieved just by providing additional pumping for 4h under 375L/h during the peak stage of ammonia release, and it could be a reference for economical RAS technique.

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沈加正,史明明,阮贇杰,鄧亞樂,朱松明.變速流操作調(diào)控循環(huán)水養(yǎng)殖系統(tǒng)水質(zhì)效果研究[J].農(nóng)業(yè)機(jī)械學(xué)報(bào),2016,47(7):309-314. Shen Jiazheng, Shi Mingming, Ruan Yunjie, Deng Yale, Zhu Songming. Effects of Variable Flow Rates on Water Qualities in Recirculating Aquaculture System[J]. Transactions of the Chinese Society for Agricultural Machinery,2016,47(7):309-314.

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  • 收稿日期:2016-01-22
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  • 在線發(fā)布日期: 2016-07-10
  • 出版日期: 2016-07-10
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