Density and Composition of the Polyculture of Abalone(H.Discus)and Two Kinds of Alga(U.Lactucaand G.Asiatica)
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摘要: 为探索杂交鲍与海藻混养的合适密度比例, 分2部分进行试验。第一部分将不同密度的石莼和真江蓠分别在水产养殖废水中养殖24h, 观察24h内水体中NH+4-N, NO-2-N, NO-3-N, PO3-4-P的浓度变化。结果显示:2种海藻都能有效地吸收4种营养盐, 且随着海藻密度的增加, 吸收效果也加强;第二部分试验, 将不同密度的杂交鲍分别与密度为3g·L-1的石莼和6g·L-1的真江蓠进行混养。结果显示:随着杂交鲍密度的增加, 杂交鲍的生长率有所下降。当杂交鲍混养密度为400粒·池-1时, 杂交鲍的生长率相较密度为200粒·池-1时差异不显著, 而与杂交鲍密度为600粒·池-1时差异显著。结果还表明, 同等密度的杂交鲍, 与石莼混养的养殖效果优于真江蓠。Abstract: To get the appropriate composition of proportion for the polyculture of H.discus and seaweed, this study can be divided into two parts.First, different density of seaweeds (U.lactucaand G asiatica) were set to grow in effluent from aquaculture for 24 hour, of which the content changing of NH+4-N, NO-2-N, NO-3-N, PO3-4-P were tested.The result showed that the purification effect was upregulated with the increase of the density.Because too much seaweed would hinder the abalone's growth, we chose the suitable density of 3g·L-1 and 6g·L-1 for U.lactucaand G asiatica.Second, we set different density of H.discus for polyculture with 3g·L-1 of U.lactucaand 6g·L-1 of G asiatica, respectively, and discovered that with the increase of H.discus density, its growth speed went down respectivly.The growth speed of H.discus of the 400 per pond group showed no significant difference with that of the 200 per pond group, but significantly different with which of the 600 per pond group, thus we regarded the density of 400 per pond as the appropriate one for H.discus.And the result also showed that when the density of H.discus was constant, U.lactucacould provide better purification effect then G asiatica, and higher growth speed of H.discus as well.
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Key words:
- U.lactuca /
- G.asiatica /
- H.discus /
- density of polyculture
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[1] RYTHER J H, GOLDMAN J C, GIFFORD C E, et al.Physical models of integrated waste recycling-marine polyculture systems[J].Aquaculture, 1975, (5) :163-177. [2] 卜雪峰, 曲克明, 马绍赛, 等.海水养殖废水的处理技术及应用前景[J].海洋水产研究, 2003, 24 (4) :85-90. [3] 毛玉泽, 杨红生, 王如才.大型藻类在综合海水养殖系统中的生物修复作用[J].中国水产科学, 2005, 12 (2) :225-231. [4] 赖龙玉, 严正凛, 钟幼平.4种不同藻类与鲍混养的初步试验[J].集美大学学报:自然科学版, 2014, 19 (2) :82-89. [5] 王春忠, 苏永全.鲍藻混养模式的构建及其效益分析[J].海洋科学, 2007, 31 (2) :27-31. [6] 杨红生, 周毅, 王健等烟台四十里湾栉孔扇贝海带和刺参负荷力的模拟测定[J].中国水产科学, 2001, 7 (4) :27-31. [7] 曲克明, 卜雪峰, 马绍赛.贝藻处理工厂化养殖废水的研究[J].海洋水产研究, 2006, (4) :36-43. [8] 赵先庭, 刘云凌, 张继辉, 等.龙须菜处理海水养殖废水的初步研究[J].海洋水产研究, 2007, 28 (2) :23-27. [9] PARAONS T R.Biological Oceanographic Processes[M].Ox-ford:Pe-amon Press, 1984:112-118. [10] 王吉桥, 李岩.不同放养密度和混养石莼对牙鲆鱼种生长的影响[J].海洋科学, 2003, 27 (2) :1-4. [11] LIU J, WANG Z, LIN W.De-eutrophication of effluent wastewater from fish aquaculture by using marine green alga Ulva pertusa[J].Chinese Journal of Oceanology and Limnology, 2010, 28:201-208. [12] GORONSZY M C, 朱明权, WUTSCHER K.循环式活性污泥法 (CAST) 的应用及其发展[J].中国给水排水, 1996, 12 (6) :4-9. [13] 谭烨辉, 江文, 衍之褒.自污染水净化处理的初步研究[J].热带海洋, 1999, 18 (2) :20-26. [14] 姚南瑜.藻类生理学[M].大连:大连工学院出版社, 1987:267-287. [15] 葛长宇.大型海藻在海水养殖系统中生物净化作用[J].渔业现代化, 2006, (4) :111-113. [16] 胡海燕, 卢继武, 周毅, 等.龙须菜在鱼藻混养系统中的生态功能[J].海洋科学集刊, 2003, 45:169-175. [17] 孙伟, 张涛, 杨红生, 等.龙须菜在滩涂贝藻混养系统中的生态作用模拟研究[J].海洋科学, 2006, 30 (12) :72-76.
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