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31.
为揭示河口区陆基养虾塘从养殖期到非养殖期一年间的CO2通量变化,以福建省闽江河口鳝鱼滩陆基养虾塘为研究对象,于2016年5月-2017年3月采用悬浮箱/静态箱-气相色谱法对养虾塘养殖期水-大气界面和非养殖期沉积物-大气界面白天CO2垂直通量进行原位观测.结果表明:①养虾塘在整个研究期间CO2通量变化范围为-62.87~162.81 mg/(m2·h),平均值为(42.66±18.12)mg/(m2·h),总体上表现为大气CO2的释放源,且呈非养殖期CO2通量平均值[(78.51±16.61)mg/(m2·h)]显著高于养殖期[(17.98±18.26)mg/(m2·h)]的特征.②养殖期间,养虾塘CO2通量呈"排放-吸收"交替变化的特征,而非养殖期养虾塘一直是大气CO2的净排放源.③养虾塘养殖期CO2通量时间变化特征主要受到ρ(DOC)(DOC为总溶解有机碳)、ρ(SO42-)、ρ(Cl-)、盐度、pH、ρ(Chla)(Chla为叶绿素a)的影响,其中,pH和ρ(SO42-)是其主要影响因子,而ρ(TDN)(TDN为总溶解氮)、ρ(TDP)(TDP为总溶解磷)、ρ(SO42-)对非养殖期CO2通量时间变化影响较大.研究显示,滨海陆基养殖塘是大气CO2的重要来源,其排放通量多低于河流、水库等水生生态系统,但高于湖泊生态系统;养殖塘CO2通量受人为影响明显,其较高的变异性与养殖生物、饲料投放以及浮游藻类有关.   相似文献   
32.
为了高效处理水产养殖废水,采用了生物接触氧化-滴滤(以陶粒为滤料)组合工艺,并对该组合工艺的处理效果进行考察。以生物接触氧化池中组合填料的密度、停留时间以及滴滤的水力负荷作为研究对象,通过对CODMn、氨氮、TN等参数的分析,得到了该组合工艺的处理效果。研究表明:当工艺中组合填料密度(组合填料与废水的体积比)为9.24%,生物接触氧化水力停留时间为0.85 h,滴滤的水力负荷为27.2 m3/(m2·d)时,CODMn、氨氮、TN、TP的去除率可分别高达55.31%、34.31%、57.64%和20.25%。证明采用该组合工艺净化水产养殖废水具有可行性。  相似文献   
33.
This article discusses environmental sustainability in aquaculture and its contribution to poverty alleviation, based on field studies in Sri Lanka and the Philippines. The aquaculture practices studied are the monoculture of the black tiger prawn (Penneaus monodon) and milkfish (Chanos chanos) and the polyculture of the two species together with the mud crab (Scylla serrata). Factors affecting economic viability, social equity and environmental impacts in aquaculture are discussed and used to illuminate local and regional differences between aquaculture in Sri Lanka and the Philippines. Findings indicate that the most significant difference is the level of participation by local people (i.e., people originating ≤10 km away from the farm location). In the Philippines, 84 % of the people involved in aquaculture are locals, whereas in Sri Lanka, 55% are outsiders. Whether differences between the two areas can be explained by analyzing regional conditions, which might have resulted in different aquaculture practices, is discussed. In Sri Lanka, semi-intensive shrimp monoculture is currently the most common practice, whereas in the Philippines, extensive shrimp/fish polyculture is more common. Previous studies, as well as fieldwork, indicate that extensive culture practices reduce environmental impacts and benefit local people more. Sustainability in aquaculture is, however, also dependent on the extent of mangrove conversion into ponds. As such, extensive and locally owned farms do not necessarily result in an all but sustainable situation. Keeping this in mind, it is discussed if extensive polyculture practices might result in a more sustainable aquaculture, both environmentally and socioeconomically.  相似文献   
34.
ABSTRACT: Recent studies suggest that waste generation from the freshwater phase of Atlantic salmon (Salmo salar L.) production varies considerably on an annual basis. A fish farm on the West Coast of Scotland was visited regularly during a two-year period to determine inflow and outflow water quality. Waste output budgets of suspended solids (SS), biochemical oxygen demand (BOD), total nitrogen (TN), total phosphorus (TP), total ammonia nitrogen (TAN = NH3+NH4+), dissolved reactive phosphorus (DRP) and total phosphorus (TP) were produced. The annual waste loadings obtained were 71 kg TN t fish?1 yr?1 (one year of data only), 10.9–11.1 kg TP t fish?1 yr?1, 1.2–2.1 kg DRP t fish?1 yr?1, 422–485 kg BOD5 t fish?1 yr?1, 327–337 kg SS t fish?1 yr?1, and 30–35 kg TAN-N t fish?1 yr?1. Simple linear regression models relating waste parameter production to water temperature and feeding regime were developed. When compared to existing data for other salmonid production systems, greater ranges of daily waste loadings were observed. Wide variations in concentrations of these parameters during a daily cycle were also observed, suggesting that mass balance estimates of waste production will provide more robust estimates of waste output than frequent monitoring of outflow water quality.  相似文献   
35.
An integrated system, consisting of Up-flow Anaerobic Sludge Blanket (UASB)-duckweed-tilapia ponds was used for recovery of sewage nutrients and water recycling. A UASB reactor with 40 liter working volume was used as pre-treatment unit followed by a series of three duckweed ponds for nitrogen recovery. The treated effluent and duckweed biomass was used to feed fishponds stocked with Nile tilapia (Oreochromis niloticus). The UASB reactor was fed with raw, domestic sewage at 6 h hydraulic retention time. The three duckweed ponds were stocked with Lemna gibba and fed with UASB effluent at 15 days hydraulic retention time. Nitrogen recovery from UASB effluent via duckweed biomass represented 81% of total nitrogen removal and 46.5% from the total nitrogen input to the system. In subsequent fishponds the nitrogen recovery from duckweed as fish feed was in the range of 13.4–20%. This nitrogen in fish biomass represented 10.6–11.5 g N from the total nitrogen in the raw sewage fed to the UASB reactor. The growth performance of tilapia (Oreochromis niloticus) showed specific growth rates (SGR) in the range of 0.53–0.97. The range of feed conversion ratio (FCR) and protein efficiency ratio (PER) were 1.2–2.2 and 2.1–2.28, respectively. The results of the experiments showed total fish yield and net fish yield in the range of 17–22.8 ton/ha/y and 11.8–15.7 ton/ha/y respectively. In conclusion UASB-duckweed-tilapia ponds provide marketable by-products in the form of duckweed and fish protein, which represent a cost recovery for sewage treatment.  相似文献   
36.
繁茂膜海绵滤食养殖水体中过剩饵料的研究   总被引:6,自引:0,他引:6  
繁茂膜海绵(Hymeniacidon perleve)可滤食养殖水体中的残饵。对活体饵料新月菱形藻(Natzchia closterum),在无营养盐条件,5 g鲜重海绵处理300 mL,藻数量为1.62×106/mL的藻液240 h后,处理组藻的平均浓度仅为对照组的2.9%,为初始浓度的17.2%;在有营养盐条件,5g鲜重海绵处理300 mL,藻数量为0.87×106mL-1的藻液220 h后,对照组的藻仍处于指数生长期,此时处理组藻的平均浓度仅为对照组的0.05%,为初始浓度的64.4%。对死体海参饵料—藻粉和鱼粉蛋白等,由于海绵的滤食作用,海水中颗粒物的浓度随时间增加而呈指数曲线降低。1.5 g鲜重海绵处理200 mL,含200 mg/L海参饵料的海水,在第4d时,海绵已滤食72.6%的颗粒物,有机颗粒物的最大比截留速率为21.6×10-3/d.L。同时,海绵的生物量明显增加。  相似文献   
37.
泡沫分离--臭氧消毒装置的水处理效果研究   总被引:4,自引:0,他引:4  
对闭合循环水产养殖系统中泡沫分离—臭氧消毒装置及泡沫分离装置的水处理效果进行研究。结果表明,泡沫分离—臭氧消毒装置对养殖水体中异养细菌去除率为93.58%,NH_4~ -N、NO_2~--N去除率分别为39.00%、38.10%,能明显提高水体pH和DO,对COD的去除效果不明显;连续运行24h,能有效控制养殖水体中的NO_2~--N浓度和异养细菌数量。泡沫分离装置出水口比进水口的NH_4~ -N、NO_2~--N和COD分别降低42.45%、24.71%、11.00%,能明显提高出水pH和DO;连续运行24h,对养殖系统中的NH_4~ -N和NO_2~--N有一定的处理效果。  相似文献   
38.
海水养殖区溶解有机氮对有害藻水华的作用   总被引:2,自引:2,他引:2  
近年来我国海水养殖业发展迅速,网箱养鱼的规模和密度越来越大,由于饵料的利用率比较低,再加上鱼类自身的代谢产物等种种原因,导致养殖水域的水环境受到了严重的影响,养殖水体中溶解性有机氮(DON)含量相当高.我们就近海鱼类网箱养殖,综述国内外关于养殖型赤潮的研究,论述其对水环境的影响以及不同氮营养盐与赤潮发生的关系,尤其是养殖区中溶解性有机氮对赤潮的发生具有重要作用,国际上关于DON在有害藻水华(HABs)中所起作用方面已做了大量的研究,但目前我国对溶解有机氮研究较少,对于赤潮形成机理方面在今后的研究中应注重DON的作用,从而完善赤潮形成机制,进一步作好赤潮的预防与防治.  相似文献   
39.
谢东海  韩奇  唐文浩 《环境科技》2005,18(Z1):10-12
海水养殖,特别是高位虾池养殖是近年来养殖业发展的新趋势,在其带来巨大经济效益的同时,也对周边生态环境带来巨大的威胁和破坏.为此,针对海水养殖对生态环境所带来的各种影响进行综述.  相似文献   
40.
我国水产养殖业对环境的影响及对策   总被引:7,自引:0,他引:7  
综述了我国水产养殖业的自身污染、对水环境和生态系统的影响及其对景观环境质量的影响等,提出应在健全的法律法规指导下,建立完善的水产养殖环境管理系统,加强营养与饲料学研究,提高水产养殖饲料质量和投饵水平,同时强化环境工程技术在集约化水产养殖中的应用,以减少污染排放,使水产养殖走可持续发展的道路。  相似文献   
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