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101.
微藻处理养殖尾水已成为热点研究方向,有关一定盐度范围内海水养殖尾水的微藻处理研究较少。本试验调配了两种盐度(16和26)的海水养殖尾水,以空白组作对照,设置小球藻(Chlorella salina)初始接种密度梯度(5×105、1×106、2×106和3×106个/mL),研究小球藻对海水养殖尾水中不同形态氮和磷的去除效果。结果表明,小球藻在海水养殖尾水中生长良好,可有效去除尾水中的氮磷营养盐,16盐度组中各初始藻密度组对NH4+、NO3-和总溶解态氮(total dissolved nitrogen,TDN)的去除率分别为85.03%~85.87%、60.87%~63.70%和54.53%~57.64%,组间无显著差异(P>0.05);26盐度组中除5×105组外,其余藻密度组对NH4+、NO3-和TDN的去除率分别为87.23%~88.16%、56.70%~57.79%和53.31%~54.62%,且组间无显著差异(P>0.05),表明小球藻初始接种密度对尾水中氮盐的去除无显著影响。除5×105个/mL组外,16与26盐度组中对TDN的去除率无显著差异,表明盐度变化对氮的去除无影响。随着初始藻密度的升高,16和26处理组对总溶解态磷(total dissolved phosphorus,TDP)的去除率均上升,分别为76.13%~99.53%和63.72%~96.83%,表明藻初始接种密度的升高可促进尾水中磷的去除,且盐度升高没有影响小球藻对磷的去除。本研究获得了不同初始接种密度小球藻对一定盐度范围的海水养殖尾水的吸收利用特点,可为海水养殖尾水的生态化处理提供一定的理论基础。 相似文献
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Four adult specimens of the pycnogonid Ammothea magniceps were observed swimming at the sea surface at night at Kaikoura. Even after capture the animals continued to swim at the surface of the water for over an hour. Such swimming behaviour is considered important in explaining the presence of “benthic” animals in plankton samples. 相似文献
105.
脂肪和蛋白质营养对封闭循环水养殖大西洋鲑生长和肌肉品质的效应 总被引:3,自引:0,他引:3
为探讨饲料脂肪和蛋白质营养对工业化养殖大西洋鲑(Salmon salar L.)生长性能和肌肉品质的影响, 采用3×2双因素试验设计(3脂肪水平: 18%、21%、24%, 即F18、F21、F24; 2蛋白质水平: 38%、48%,即P38、P48),形成6种试验处理膨化颗粒配合饲料,每处理3重复, 通过在工业化封闭循环海水养殖条件下,选用初质量(650.0±45.50)g大西洋鲑720尾,进行动物饲喂试验、肌肉脂肪酸、氨基酸测试等,试验期56d。结果表明: (1)中脂肪水平(F21)和高蛋白水平(P48)饲料的生长性能较佳。增质量率随脂肪水平提高先增加后降低,中高脂肪组比低脂肪组极显著提高43.5%(P<0.01);高蛋白组极显著提高44.99%(P<0.01);中脂肪高蛋白组合(P48F21)效应最佳;(2)脂肪水平对肌肉氨基酸含量影响不显著。蛋白水平与肌肉9种必需、4种风味氨基酸含量呈正相关,高蛋白组显著提高3.60%~17.00%(P<0.05/0.01);(3)脂肪水平与肌肉不饱和脂肪酸含量呈正相关,而蛋白水平与其呈负相关,高脂肪(P24)和低蛋白(P38)有利于提高肌肉不饱和脂肪酸含量。高脂肪组肌肉Σω-3PUFA、ΣHUFA、DHA、EPA含量比低脂肪组分别极显著或显著提高15.74%、26.60%、15.41%、7.67%(P<0.01/0.05);低蛋白组极显著提高肌肉DHA含量11.91%(P<0.01)、EPA 10.02%(P<0.05);低蛋白中高脂肪组合(P38F21、P38F24)效应佳。本试验研究证明,工业化工业化封闭循环水养殖大西洋鲑对脂肪营养需求有一定程度降低,本试验条件下中高脂肪与中低蛋白组合既利于提高生长性能,又增加肌肉ω-3HUFA和主要氨基酸沉积,为工业化养殖大西洋鲑的肉质改善型配合饲料研制提供了重要依据。 相似文献
106.
《African Journal of Marine Science》2013,35(3):449-464
The SEAChange programme, instituted in 2007 under the auspices of the South African Network for Coastal and Oceanic Research (SANCOR), included four interdependent research themes, one of which was Marine Biotechnology. Marine biotechnology is a discipline that involves both basic and applied research, and is aimed at the commercial exploitation of marine organisms. This paper reviews the progress made in three key areas of the SEAChange programme over the first five years, namely marine aquaculture, omics of marine organisms and marine bioprospecting, and discusses these accomplishments in context to marine biotechnology internationally. 相似文献
107.
Myriam D. Callier Marion Richard Christopher W. McKindsey Philippe Archambault 《Marine pollution bulletin》2009,58(10):1544-1553
An in situ experiment was done to evaluate the dose-dependent response of mussel biodeposition on benthic communities and biogeochemical fluxes. Natural benthic communities were exposed to 7 different levels of mussel biodeposition (equivalent to that produced by 0-764 mussels m−2) over 50 days. Benthic communities responded as predicted from the Pearson, T.H., Rosenberg, R., 1978. Macrobenthic succession in relation to organic enrichment and pollution of the marine environment. Oceanogr. Mar. Biol. Annu. Rev. 16, 229-311 model of organic enrichment. Total abundance and species richness decreased with increasing biodeposition. The abundance and biomass of opportunistic species (Capitella spp.) increased in the mesocosms subject to the greatest biodeposition. Sensitive species Tellina agilis and Pherusa plumosa tended to decrease in abundance and biomass with increasing biodeposition. The biotic index M-AMBI responded clearly to increased biodeposition and may be a useful tool for assessing the effect of mussel biodeposition on the benthic environment. These results are important for the construction of predictive models for determining environmental carrying capacity for bivalve aquaculture. 相似文献
108.
Lucia S. Herbeck Miriam Sollich Daniela Unger Marianne Holmer Tim C. Jennerjahn 《Marine pollution bulletin》2014
The impact of pond aquaculture effluents on the distribution and performance of seagrasses was examined in NE Hainan, tropical China. Samples were taken along transects in three back-reef areas with different extent of aquaculture production in their hinterland. High δ15N in seagrass leaves and epiphytes (6–9‰) similar to values in pond effluents documented aquaculture as dominant nitrogen source in the back-reefs with decreasing impact with distance from shore. Seagrass species abundance, shoot density and biomass were lower and concentrations of nutrients, chlorophyll and suspended matter were higher at nearshore sites with high and moderate pond abundance than at the control site. High epiphyte loads and low δ34S in seagrass leaves suggest temporal shading and sulphide poisoning of the nearshore seagrasses. Observed gradients in environmental parameters and seagrass performance indicate that the distance from the pond outlets and size of the adjacent pond agglomeration are major determinants of seagrass degradation. 相似文献
109.
《Marine Policy》2017
The aim of this paper is to understand the extent to which the start-up motives can influence social-ecological resilience in community-based entrepreneurship setting. The case study approach was used to study five coastal communities in northwestern Sri Lanka. Shrimp farmers’ start-up motives include both the desire to capitalize on opportunities to utilize their resources and skills (opportunity-driven) and the need to establish satisfactory sources of income (necessity-driven). They have come up with diverse entrepreneurial responses to face various stressors and shocks by using their existing capital types and their willingness for collaboration. Farmers’ coping capacity is demonstrated through their individual responses whereas adaptive and transformative capacities are demonstrated mostly through their community cooperative work. Findings also reveal that the start-up motives of small-scale shrimp farmers are less influential on their social-ecological resilience in the community setting. Instead, the key to social-ecological resilience lies with the understanding of the nature of stressors and their commitment for collective action. 相似文献
110.
在工厂化循环水养殖系统中,将初始体质量为186 g±2.0 g的大菱鲆(Scophthalmus maximus)放养于低(9.4 kg/m~2±0.2 kg/m~2)、中(13.6 kg/m~2±0.8 kg/m~2)、高(19.1 kg/m~2±1.3 kg/m~2)3个养殖密度,以研究不同养殖密度对大菱鲆生长、消化酶和蛋白质代谢的影响。养殖120 d后,低、中、高试验组养殖密度分别增长至26.1 kg/m~2±1.2 kg/m~2、38.2 kg/m~2±2.5 kg/m~2、52.3 kg/m~2±3.6 kg/m~2。结果表明:低密度组和中密度组中大菱鲆增质量率、特定生长率、肥满度和蛋白质效率均显著(P0.05)高于高密度组;而饲料系数显著低于高密度组(P0.05)。低密度组和中密度组大菱鲆总蛋白酶和淀粉酶活力显著低于高密度组(P0.05);但脂肪酶活力在3个密度组之间无显著性差异。与低密度组相比,高密度组显著提高了谷氨酸脱氢酶活力,同时降低了谷草转氨酶和亮氨酸氨肽酶活力(P0.05),而对谷丙转氨酶活力无任何影响。综上所述,在工厂化循环水系统中,增加养殖密度能提高养殖的产量,但过高的养殖密度会对大菱鲆生长、消化酶活力以及蛋白质代谢产生不利的影响。 相似文献