[1] |
陈素文, 陈利雄, 朱长波, 等, 2014. 环境因子对海萝藻体生长及成活的影响[J]. 南方水产科学, 10(3): 92-96.
|
|
CHEN SUWEN, CHEN LIXIONG, ZHU CHANGBO, et al, 2014. Effects of environmental factors on growth and survival of Gloiopeltis furcata thalli[J]. South China Fisheries Science, 10(3): 92-96 (in Chinese with English abstract).
|
[2] |
葛长字, 2006. 大型海藻在海水养殖系统中的生物净化作用[J]. 渔业现代化, (4): 11-13.
|
|
GE CHANGZI, 2006. Bio-purifying effects of seaweeds in mariculture system[J]. Fishery Modernization, (4): 11-13 (in Chinese).
|
[3] |
郜晓峰, 刘炜, 钟逸云, 等, 2022. 不同温度对大叶藻生长与光合生理的影响[J]. 应用与环境生物学报, 28(1): 175-181.
|
|
GAO XIAOFENG, LIU WEI, ZHONG YIYUN, et al, 2022. Effect of different temperatures on the growth and photosynthetic physiology of Zostera marina L.[J]. Chinese Journal of Applied and Environmental Biology, 28(1): 175-181 (in Chinese with English abstract).
|
[4] |
黄鹤忠, 梁建生, 张群英, 2013. 菊花江蓠 (Gracilaria lichenoides) 对N、P吸收效应及其细胞超微结构变化[J]. 海洋与湖沼, 44(1): 95-102.
|
|
HUANG HEZHONG, LIANG JIANSHENG, ZHANG QUNYING, 2013. Uptake effects of nitrogen and phosphorus and cell ultrastructure changes of Gracilaria lichenoides[J]. Oceanologia et Limnologia Sinica, 44(1): 95-102 (in Chinese with English abstract).
|
[5] |
黄永健, 崔建军, 陈心怡, 等, 2023. 异枝江蓠对温度和光照强度的光合生理响应[J]. 南方水产科学, 19(4): 139-147.
|
|
HUANG YONGJIAN, CUI JIANJUN, CHEN XINYI, et al, 2023. Photophysiological responses of Gracilariopsis bailinae to temperature and light intensity[J]. South China Fisheries Science, 19(4): 139-147 (in Chinese with English abstract).
|
[6] |
柯瑞林, 任黎华, 孟顺龙, 2023. 水产养殖尾水处理技术研究进展[J]. 中国农学通报, 39(29): 146-151.
doi: 10.11924/j.issn.1000-6850.casb2022-0883
|
|
KE RUILIN, REN LIHUA, MENG SHUNLONG, 2023. Research progress of aquaculture tail water treatment technology[J]. Chinese Agricultural Science Bulletin, 39(29): 146-151 (in Chinese with English abstract).
doi: 10.11924/j.issn.1000-6850.casb2022-0883
|
[7] |
孔凡文, 才旭, 于淼, 2010. 格兰杰因果关系检验模型分析与应用[J]. 沈阳建筑大学学报(自然科学版), 26(2): 405-408.
|
|
KONG FANWEN, CAI XU, YU MIAO, 2010. Analysis and application of Granger causality test model[J]. Journal of Shenyang Jianzhu University (Natural Science), 26(2): 405-408 (in Chinese with English abstract).
|
[8] |
李华, 田道贺, 刘青松, 等, 2021. 长茎葡萄蕨藻在模拟工厂化循环水养殖环境中的脱氮研究[J]. 生态科学, 40(5): 59-68.
|
|
LI HUA, TIAN DAOHE, LIU QINGSONG, et al, 2021. Nitrogen removal from simulated recirculating aquaculture system by Caulerpa lentillifera[J]. Ecological Science, 40(5): 59-68 (in Chinese with English abstract).
|
[9] |
李豫, 黄建盛, 陈有铭, 等, 2023. 低温胁迫对军曹鱼幼鱼鳃组织抗氧化能力、细胞凋亡和组织结构的影响[J]. 南方水产科学, 19(3): 68-77.
|
|
LI YU, HUANG JIANSHENG, CHEN YOUMING, et al, 2023. Effect of low temperature stress on antioxidant stress, apoptosis and histological structure of gills in cobia (Rachycentron canadum)[J]. South China fisheries Science, 19(3): 68-77 (in Chinese with English abstract).
|
[10] |
李再亮, 申玉春, 刘丽, 等, 2014. 半叶马尾藻对N、P吸收速率的初步研究[J]. 广东海洋大学学报, 34(4): 9-13.
|
|
LI ZAILIANG, SHEN YUCHUN, LIU LI, et al, 2014. Preliminary study on uptake rate of nitrogen and phosphorus by Sargassum hemiphyllum (Turn.) Ag[J]. Journal of Guangdong Ocean University, 34(4): 9-13 (in Chinese with English abstract).
|
[11] |
李志凌, 王晓龙, 田相利, 等, 2018. 珍珠龙胆石斑鱼与不同海水植物工厂化原位混养的比较研究[J]. 海洋湖沼通报, 5: 118-124.
|
|
LI ZHILING, WANG XIAOLONG, TIAN XIANGLI, et al, 2018. A comparative study on structure optimization for industrial in situ integrated aquaculture of Epinephelus fuscoguttatus ♀ × E. lanceolatus♂ with different sea water plants[J]. Transactions of Oceanology and Limnology, 5: 118-124. (in Chinese with English abstract).
|
[12] |
廖秀睿, 李曦, 柳睿杰, 等, 2021. 曲褶刚毛藻在对虾养殖尾水无机氮盐净化中的应用[J]. 海南热带海洋学院学报, 28(2): 1-5.
|
|
LIAO XIURUI, LI XI, LIU RUIJIE, et al, 2021. Cladophora flexuosa’s application to inorganic nitrogen purification in shrimp aquaculture wastewater[J]. Journal of Hainan Tropical Ocean University, 28(2): 1-5 (in Chinese with English abstract).
|
[13] |
林向阳, 钟晨辉, 唐隆晨, 等, 2018. 海带对大黄鱼网箱养殖区水质的生物修复[J]. 渔业研究, 40(4): 279-285.
|
|
LIN XIANGYANG, ZHONG CHENHUI, TANG LONGCHEN, et al, 2018. Bioremediation in Pseudosciaena crocea cage-farming areas by the cultivation of Saccharina japonica[J]. Journal of Fisheries Research, 40(4): 279-285 (in Chinese with English abstract).
|
[14] |
刘义豪, 刘相全, 徐英江, 等, 2020. 光照和盐度对江蓠在N、P持续加富条件下生长和吸收的影响[J]. 海洋湖沼通报, (5): 88-94.
|
|
LIU YIHAO, LIU XIANGQUAN, XU YINGJIANG, et al, 2020. The effects of light and salinity on Gracilaria growth and salt absorption in continual enrichment of nitrogen and phosphorus[J]. Transactions of oceanology and Limnology, (5): 88-94 (in Chinese with English abstract).
|
[15] |
尚志刚, 沈晓阳, 李蒙蒙, 等, 2020. 基于格兰杰因果的效应性连接分析方法综述[J]. 郑州大学学报(工学版), 41(3): 1-7, 13.
|
|
SHANG ZHIGANG, SHEN XIAOYANG, LI MENGMENG, et al, 2020. Review of the analysis methods of effective connectivity based on granger causality[J]. Journal of Zhengzhou University (Engineering Science), 41(3): 1-7, 13 (in Chinese with English abstract).
|
[16] |
孙晓飞, 花勃, 2017. 室内工厂化循环水立体养殖锯缘青蟹技术[J]. 中国水产, (5): 80-82. (in Chinese).
|
[17] |
汤坤贤, 焦念志, 游秀萍, 等, 2005. 菊花心江蓠在网箱养殖区的生物修复作用[J]. 中国水产科学, 12(2): 156-161.
|
|
TANG KUNXIAN, JIAO NIANZHI, YOU XIUPING, et al, 2005. Bioremediation of Gracilaria lichenoides in fish cage-farming areas[J]. Journal of Fishery Sciences of China, 12(2): 156-161 (in Chinese with English abstract).
|
[18] |
王成强, 相智巍, 黄炳山, 等, 2022. 3种耐盐植物对水产养殖废水净化效果[J]. 广东海洋大学学报, 42(3): 25-32.
|
|
WANG CHENGQIANG, XIANG ZHIWEI, HUANG BINGSHAN, et al, 2022. Effects of three varieties of halophytes on the purification of aquaculture waste water[J]. Journal of Guangdong Ocean University, 42(3): 25-32 (in Chinese with English abstract).
|
[19] |
王峰, 雷霁霖, 高淳仁, 等, 2013. 国内外工厂化循环水养殖模式水质处理研究进展[J]. 中国工程科学, 15(10): 16-23, 32.
|
|
WANG FENG, LEI JILIN, GAO CHUNREN, et al, 2013. Research progress of water conditioning in industry recirculating aquaculture mode at home and abroad[J]. Strategic Study of CAE, 15(10): 16-23, 32 (in Chinese with English abstract).
|
[20] |
王丽娜, 申玉春, 叶宁, 等, 2017. 养殖密度对珍珠龙胆石斑鱼行为活动和生长性能的影响[J]. 南方农业学报, 48(5): 920-925.
|
|
WANG LINA, SHEN YUCHUN, YE NING, et al, 2017. Effects of stocking density on behavior and growth performance of Epinephelus fuscoguttatus♀ × Epinephelus lanceolatus♂[J]. Journal of Southern Agriculture, 48(5): 920-925 (in Chinese with English abstract).
|
[21] |
王晓艳, 李宝山, 王际英, 等, 2021. 江蓠和四角蛤蜊对珍珠龙胆石斑鱼封闭养殖水体水质的净化作用[J]. 烟台大学学报(自然科学与工程版), 34(2): 186-193.
|
|
WANG XIAOYAN, LI BAOSHAN, WANG JIYING, et al, 2021. Purification effects of Gracilaria and Mactra veneriformis on quality of hybrid grouper Epinephelus lanceolatus × E. fuscoguttatus enclosed aquaculture water[J]. Journal of Yantai University (Natural Science and Engineering Edition), 34(2): 186-193 (in Chinese with English abstract).
|
[22] |
温珊珊, 2008. 真江蓠对养殖水体的生态修复研究[D]. 上海: 上海海洋大学.
|
|
WEN SHANSHAN, 2008. Study on bioremediation of mariculture by seaweed Gracilaria asiatica[D]. Shanghai: Shanghai Ocean University (in Chinese with English abstract).
|
[23] |
温珊珊, 张寒野, 何文辉, 等, 2008. 真江蓠对氨氮去除效率与吸收动力学研究[J]. 水产学报, 32(5): 794-803.
|
|
WEN SHANSHAN, ZHANG HANYE, HE WENHUI, et al, 2008. Study on NH+4-N removing efficiency and kinetics in Gracilaria asiatica[J]. Journal of Fisheries of China, 32(5): 794-803 (in Chinese with English abstract).
|
[24] |
翁祖兴, 2023. 赤点石斑鱼工厂化循环水养殖试验[J]. 科学养鱼, (9): 70-72.
|
|
WENG ZUXING, 2023. Experiment on industrialized circulating culture red spotted grouper[J]. Scientific Fish Farming, (9): 70-72 (in Chinese).
|
[25] |
吴超元, 李纫芷, 林光恒, 等, 1994. 细基江蓠繁枝变型生长适宜环境条件的研究[J]. 海洋与湖沼, 25(1): 60-66.
|
|
WU CHAOYUAN, LI RENZHI, LIN GUANGHENG, et al, 1994. Study on the optimum environmental parameters for the growth of Gracilaria tenuistipitata var. liui in pond culture[J]. Oceanologia et Limnologia Sinica, 25(1): 60-66 (in Chinese with English abstract).
|
[26] |
吴雯艳, 邵一涵, 叶雯雯, 等, 2021. 工厂化循环水养殖对虾研究进展[J]. 水产养殖, 42(7): 18-22.
|
|
WU WENYAN, SHAO YIHAN, YE WENWEN, et al, 2021. Research progress on industrial recirculating aquaculture of prawn[J]. Journal of Aquaculture, 42(7): 18-22 (in Chinese with English abstract).
|
[27] |
徐永健, 陆开宏, 韦玮, 2007a. 大型海藻江蓠对养殖池塘水质污染修复的研究[J]. 中国生态农业学报, 15(5): 156-159.
|
|
XU YONGJIAN, LU KAIHONG, WEI WEI, 2007a. Bioremediation of nutrient polluted animal culture ponds by seaweed Gracilaria lichenoides[J]. Chinese Journal of Eco-Agriculture, 15(5): 156-159 (in Chinese with English abstract).
|
[28] |
徐永健, 韦玮, 钱鲁闽, 2007b. 菊花江蓠对陆基围隔高密度对虾养殖的污染净化与水质调控[J]. 中国水产科学, 14(3): 430-435.
|
|
XU YONGJIAN, WEI WEI, QIAN LUMIN, 2007b. Pollution purification and water-quality control of shrimp aquaculture in land-based enclosure by Gracilaria lichevoides (Rhodophyta)[J]. Journal of Fishery Sciences of China, 14(3): 430-435 (in Chinese with English abstract).
|
[29] |
徐皓, 张建华, 丁建乐, 等, 2010. 国内外渔业装备与工程技术研究进展综述[J]. 渔业现代化, 37(2): 1-8.
|
|
XU HAO, ZHANG JIANHUA, DING JIANLE, et al, 2010. The review of the research progress of fishery equipment and engineering technology at home and abroad[J]. Fishery Modernization, 37(2): 1-8 (in Chinese with English abstract).
|
[30] |
杨凤, 马燕武, 张东升, 等, 2003. 孔石莼和臭氧对养鲍水质的调控作用比较[J]. 大连水产学院学报, 18(2): 79-83.
|
|
YANG FENG, MA YANWU, ZHANG DONGSHENG, et al, 2003. Control of Haliotis discus hannai Ino culture water quality with Ulva pertusa and ozone[J]. Journal of Dalian Fisheries University, 18(2): 79-83 (in Chinese with English abstract).
|
[31] |
杨宇峰, 费修绠, 2003. 大型海藻对富营养化海水养殖区生物修复的研究与展望[J]. 青岛海洋大学学报, 33(1): 53-57.
|
|
YANG YUFENG, FEI XIUGENG, 2003. Prospects for bioremediation of cultivation of large-sized seaweed in eutrophic mariculture areas[J]. Journal of Ocean University of Qingdao, 33(1): 53-57 (in Chinese with English abstract).
|
[32] |
岳维忠, 黄小平, 黄良民, 等, 2004. 大型藻类净化养殖水体的初步研究[J]. 海洋环境科学, 23(1): 13-15, 40.
|
|
YUE WEIZHONG, HUANG XIAOPING, HUANG LIANGMIN, et al, 2004. Preliminary study on purification of mariculture water by macroscopic algae[J]. Marine Environmental Science, 23(1): 13-15, 40 (in Chinese with English abstract).
|
[33] |
张胜花, 常军军, 孙珮石, 2013. 水体藻类磷代谢及藻体磷矿化研究进展[J]. 生态环境学报, 22(7): 1250-1254.
|
|
ZHANG SHENGHUA, CHANG JUNJUN, SUN PEISHI, 2013. Phosphorus cycle of algae during its growth and death process: phosphorus uptake and release[J]. Ecology and Environmental Sciences, 22(7): 1250-1254 (in Chinese with English abstract).
|
[34] |
张文香, 王志敏, 张卫国, 2005. 海水鱼类工厂化养殖的现状与发展趋势[J]. 水产科学, 24(5): 50-52.
|
|
ZHANG WENXIANG, WANG ZHIMIN, ZHANG WEIGUO, 2005. Current status and developmental trend of industrialized mariculture of fish[J]. Fisheries Science, 24(5): 50-52 (in Chinese with English abstract).
|
[35] |
赵崇宇, 蔡岩, 朱力, 等, 2023. 大型海藻对方斑东风螺养殖尾水净化效果比较[J]. 海南大学学报(自然科学版), 41(4): 359-368.
|
|
ZHAO CHONGYU, CAI YAN, ZHU LI, et al, 2023. Comparison of purification effects of macroalgae on the tail water from Babylonia areolate culture[J]. Natural Science Journal of Hainan University, 41(4): 359-368 (in Chinese with English abstract).
|
[36] |
郑辉, 许文超, 2016. 4种海藻在南美白对虾养殖水体中的生态作用[J]. 河南农业科学, 45(5): 144-147.
|
|
ZHENG HUI, XU WENCHAO, 2016. Ecological effects of four kinds of algae in Penaeus vannamei culture system[J]. Journal of Henan Agricultural Sciences, 45(5): 144-147 (in Chinese with English abstract).
|
[37] |
郑辉, 2018. 大型海藻对水产养殖废水中无机氮和活性磷酸盐吸收作用研究[J]. 科技通报, 38(4): 258-261.
|
|
ZHENG HUI, 2018. Study on purification effects of the economic algae on inorganic nitrogen and active phosphate in the aquaculture wastewater[J]. Bulletin of Science and Technology, 38(4): 258-261 (in Chinese with English abstract).
|
[38] |
钟志海, 黄中坚, 陈伟洲, 2014. 不同环境因子对异枝江蓠的生长及生化组分的影响[J]. 渔业科学进展, 35(3): 98-104.
|
|
ZHONG ZHIHAI, HUANG ZHONGJIAN, CHEN WEIZHOU, 2014. Effects of various environmental factors on growth and biochemical components of Gracilaria bailinae[J]. Progress in Fishery Sciences, 35(3): 98-104 (in Chinese with English abstract)
|
[39] |
JENSEN F B, 2003. Nitrite disrupts multiple physiological functions in aquatic animals[J]. Comparative Biochemistry and Physiology Part A: Molecular & Integrative Physiology, 135(1): 9-24.
|
[40] |
KANG Y H, KIM S, CHOI S K, et al, 2021. A comparison of the bioremediation potential of five seaweed species in an integrated fish‐seaweed aquaculture system: implication for a multi‐species seaweed culture[J]. Reviews in Aquaculture, 13(1): 353-364.
|
[41] |
MARINHO-SORIANO E, PANUCCI R A, CARNEIRO M A A, et al, 2009. Evaluation of Gracilaria caudata J. Agardh for bioremediation of nutrients from shrimp farming wastewater[J]. Bioresource Technology, 100(24): 6192-6198.
|
[42] |
MARTINS C I M, EDING E H, VERDEGEM M C J, et al, 2010. New developments in recirculating aquaculture systems in Europe: a perspective on environmental sustainability[J]. Aquacultural Engineering, 43(3): 83-93.
|
[43] |
MAWI S, KRISHNAN S, DIN M F M D, et al, 2020. Bioremediation potential of macroalgae Gracilaria edulis and Gracilaria changii co-cultured with shrimp wastewater in an outdoor water recirculation system[J]. Environmental Technology & Innovation, 17: 100571.
|
[44] |
SARKAR S, REKHA P N, PANIGRAHI A, et al, 2021. Integrated brackishwater farming of red seaweed Agarophyton tenuistipitatum and Pacific white leg shrimp Litopenaeus vannamei (Boone) in biofloc system: a production and bioremediation way out[J]. Aquaculture International, 29(5): 2145-2159.
|
[45] |
TROELL M, JOYCE A, CHOPIN T, et al, 2009. Ecological engineering in aquaculture-Potential for integrated multi-trophic aquaculture (IMTA) in marine offshore systems[J]. Aquaculture, 297(1-4): 1-9.
|
[46] |
XIAO R C, WEI Y G, AN D, et al, 2019. A review on the research status and development trend of equipment in water treatment processes of recirculating aquaculture systems[J]. Reviews in Aquaculture, 11(3): 863-895.
|
[47] |
YE L, YANG S Y, ZHU X M, et al, 2011. Effects of temperature on survival, development, growth and feeding of larvae of Yellowtail clownfish Amphiprion clarkii (Pisces: Perciformes)[J]. Acta Ecologica Sinica, 31(5): 241-245.
|
[48] |
ZEILEIS A, HOTHORN T, 2002. Diagnostic checking in regression relationships[J]. R News, 2(3):7-10.
|