|本期目录/Table of Contents|

[1]陈丽红,邢荣莲,姜爱莉,等.柄海鞘-微藻-刺参混养系统对水体中氮的修复潜力[J].江苏农业科学,2017,45(21):289-292.
 Chen Lihong,et al.Study on potential for remediation of nitrogen in waters with an integrated aquaculture system of Apostichopus japonicus,Styela clava and microalgae[J].Jiangsu Agricultural Sciences,2017,45(21):289-292.
点击复制

柄海鞘-微藻-刺参混养系统对水体中氮的修复潜力(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第45卷
期数:
2017年第21期
页码:
289-292
栏目:
资源与环境
出版日期:
2017-11-05

文章信息/Info

Title:
Study on potential for remediation of nitrogen in waters with an integrated aquaculture system of Apostichopus japonicus,Styela clava and microalgae
作者:
陈丽红12 邢荣莲2 姜爱莉2 滕立23 王长海13
1.大连理工大学生命科学与技术学院,辽宁大连 116024; 2.烟台大学生命科学学院,山东烟台 264000;
3.南京农业大学资源与环境科学学院,江苏南京 210095
Author(s):
Chen Lihonget al
关键词:
柄海鞘微藻刺参混养海鞘氮排放
Keywords:
-
分类号:
S967.2;X171.4
DOI:
-
文献标志码:
A
摘要:
为评估1种新型柄海鞘-微藻-刺参混养系统对水体中氮的修复潜力,于不同季节在山东莱州养殖基地进行海区围隔养殖,设置刺参套养组和柄海鞘-微藻-刺参混养组:刺参套养组按小规格刺参(S)10~15 ind/m2,大规格刺参(L)5~6 ind/m2养殖;混养组在此基础上增加微藻500 cell/mL,柄海鞘800 g/m2(湿质量密度)。主要研究不同季节不同养殖模式下水体中NH4+-N、NO3--N、NO2--N和总氮浓度的变化情况。结果表明,投饵和不投饵2种养殖模式下,混养组的几种氮浓度均略高于刺参套养组,但远低于刺参单独饲养和柄海鞘单独饲养2种养殖模式下氮的排放量之和。混养系统的3种生物通过在生态位和食物链上互利共生,可有效降低氮排放量,表明混养系统在氮循环利用中具有修复潜力。
Abstract:
-

参考文献/References:

[1]Kinch J,Purcell S,Uthicke S,et al. Papua New Guinea:a hot spot of sea cucumber fisheries in the Western Central Pacific[J]. FAO Fisheries and Aquaculture Technical Paper,2008,516:57-77.
[2]张春云,王印庚,荣小军,等. 国内外海参自然资源、养殖状况及存在问题[J]. 海洋水产研究,2004,25(3):89-97.
[3]Chopin T,Robinson S M C,Troell M,et al. Multi-trophic integration for sustainable marine aquaculture[C]//The Encyclopedia of Ecology,Ecological Engineering,2008:2463-2475.
[4]Soto K. Integrated mariculture:a global review[J]. FAO Fisheries and Aquaculture Technical Paper,2009,529:183.
[5]王吉桥,杨义,程鑫,等. 不同密度的皱纹盘鲍(Haliotis discus hannai Ino)与仿刺参(Apostichopus japonicus Selenka)混养的研究[J]. 现代渔业信息,2007,22(10):3-7.
[6]Bosma R H,Verdegem M C. Sustainable aquaculture in ponds:principles,practices and limits[J]. Livestock Science,2011,139(1/2):58-68.
[7]Yang H S,Zhou Y,Zhang T,et al. Metabolic characteristics of sea cucumber Apostichopus japonicus (Selenka) during aestivation[J]. Journal of Experimental Marine Biology and Ecology,2006,330(2):505-510.
[8]张晓凌. 柄海鞘摄食、呼吸和排泄的研究[D]. 青岛:中国海洋大学,2004.
[9]张志南. 水层-底栖耦合生态动力学研究的某些进展[J]. 青岛海洋大学学报(自然科学版),2000,30(1):115-122.
[10]许忠能,林小涛,林继辉,等. 营养盐因子对细基江蓠繁枝变种氮、磷吸收速率的影响[J]. 生态学报,2002,22(3):366-374.
[11]王岩,齐振雄. 不同单养和混养海水实验围隔的氮磷收支[J]. 汕头大学学报(自然科学版),1998,13(2):71-75.
[12]Funge-Smith S J,Briggs M R P. Nutrient budgets in intensive shrimp ponds:implication for sustainability[J]. Aquaculture,1998,164(1/2/3/4):117-133.
[13]樊绘曾. 海参:海中人参——关于海参及其成分保健医疗功能的研究与开发[J]. 中国海洋药物,2001(4):37-44.
[14]Boyd C E. Aquaculture pond fertilization:impacts of nutrient input on production[M]. New York:Wiley-Blackwell,2012:219.
[15]江红霞,郑怡. 8种微藻抗菌活性研究[J]. 福建师范大学学报(自然科学版),2002,18(2):117-120.
[16]Neori A,Krom M D,Ellner S P,et al. Seaweed biofilters as regulators of water quality in integrated fish-seaweed culture units[J]. Aquac,1996,141(3/4):183-199.
[17]Jiang A L,Lin J,Wang C H,et al. Physiological energetics of the ascidian Styela clava in relation to body size and temperature[J]. Comparative Biochemistry and Physiology Part A:Molecular & Integrative Physiology,2008,149(2):129-136.
[18]Ribes M,Coma R,Atkinson M J,et al. Sponges and ascidians control removal of particulate organic nitrogen from coral reef water[J]. Limnology and Oceanography,2005,50(5):1480-1489.
[19]秦传新,张立勇,方涛,等. 复合式循环养殖系统——“藻塘”与“食藻动物塘”研究进展[J]. 宁波大学学报(理工版),2007,20(1):31-37.

相似文献/References:

[1]张跃群,闫生荣,王小红,等.不同pH值条件下水溶性壳聚糖衍生物对微藻絮凝富集的影响[J].江苏农业科学,2014,42(03):190.
 Zhang Yuequn,et al.Effect of water-soluble chitosan derivatives on flocculation enrichment of microalgae under different pH values[J].Jiangsu Agricultural Sciences,2014,42(21):190.
[2]潘远健,金刚,谢振华,等.一种快速提取微藻完整叶绿体及其DNA的方法[J].江苏农业科学,2016,44(02):66.
 Pan Yuanjian,et al.A rapid extraction method of intact chloroplast and cpDNA from microalgae[J].Jiangsu Agricultural Sciences,2016,44(21):66.
[3]姚茹,黎祖福,饶科.牡蛎生态净化技术研究[J].江苏农业科学,2015,43(04):286.
 Yao Ru,et al.Study on ecological purification methods of oysters[J].Jiangsu Agricultural Sciences,2015,43(21):286.
[4]杨熙,向文洲,黄颖华,等.CO2浓度对嗜碱绿球藻MC-1光合作用和生长的影响[J].江苏农业科学,2017,45(18):158.
 Yang Xi,et al.Effects of CO2 concentration on photosynthesis and growth of Chlorococcum alkaliphilus MC-1[J].Jiangsu Agricultural Sciences,2017,45(21):158.
[5]杨荧,刘莉文,李建宏.微藻富集重金属的机制及在环境修复中的应用综述[J].江苏农业科学,2019,47(21):88.
 Yang Ying,et al.Accumulation mechanism of heavy metals by microalgae and its application in environmental remediation: a review[J].Jiangsu Agricultural Sciences,2019,47(21):88.
[6]邵力,肖佳华,宋小平,等.河蟹土池生态育苗敞池培养褶皱臂尾轮虫(Brachionus plicatilis)的技术[J].江苏农业科学,2020,48(07):198.
 Shao Li,et al.Cultivation technology of Brachionus plicatilis in open ponds for ecological breeding of river crabs[J].Jiangsu Agricultural Sciences,2020,48(21):198.

备注/Memo

备注/Memo:
收稿日期:2016-06-02
基金项目:国家自然科学基金(编号:31572622、31070368);山东省自然科学基金(编号:ZR2014CM031、2014ZRB019DU)。
作者简介:陈丽红(1980—),山东烟台人,硕士,讲师,主要从事海洋微藻研究。Tel:(0535)6881942;E-mail:linachenlihong@hotmail.com。
通信作者:姜爱莉,博士,教授,主要从事海洋生态系统研究。Tel:(0535)6881942;E-mail:jal9035@163.com。
更新日期/Last Update: 2017-11-05