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161.
海水鱼类网箱养殖的环境效应及多营养层次的综合养殖 总被引:4,自引:0,他引:4
海水鱼类网箱养殖是世界主要渔业国家(如挪威、日本等)广泛开展的一种高密度、集约化的养鱼方式,这种养殖方式在给广大从业者带来巨大经济、社会效益的同时,对环境也造成了不可忽视的负面影响。开展多营养层次的综合养殖(IMTA)是缓解这一环境压力的有效途径,鱼类养殖过程中释放出的二氧化碳、氮、磷等物质,由无机提取单元(大型藻类)来吸收,粪便和残饵等微小颗粒则成为有机提取单元(滤食性贝类)的饵料,较大的颗粒物质沉到海底后,可以为腐食性单元(海参等)提供食物,通过这种养殖模式,最大限度地实现系统内营养物质的高效利用,在减轻养殖对环境压力的同时,使系统具有较高的容纳量和食物产出能力。 相似文献
162.
白洋淀的纤毛虫及与水质污染的关系 总被引:5,自引:0,他引:5
对白洋淀纤毛虫的种类组成、优势种进行了初步调查,同时对水质进行理化监测,共鉴定出纤毛虫48种。根据Marsson引出的污水生物体系法分析,白洋淀纤毛虫主要由耐有机污染的种群组成。说明白洋淀主要受有机污染。纤毛虫的种类数与水体中TN、TP、BOD5有着密切关系。 相似文献
163.
164.
生态农业建设规划研究--以大连市旅顺口区为例 总被引:2,自引:0,他引:2
旅顺口区是大连市的重要组成部分,该区农业主要由以经济作物为主的种植业和畜牧业以及水产业构成.目前总体上具备了实现农业现代化的基础和条件.然而,土地垦殖率与农业利用率低、水资源缺乏等问题制约该区生态农业的发展.在此首先介绍了生态农业的概念、内涵及生态农业建设的主要内容,运用生态学及生态经济学原理,规划旅顺口区农业以生态农业、观光农业和效益农业为主体的现代农业,并进一步提出旅顺口区未来生态农业建设的重点项目及实现生态农业建设的保障措施. 相似文献
165.
166.
Peidong Su Xiangyu Gao Junke Zhang Ridha Djellabi Bo Yang Qi Wu Zhen Wen 《Frontiers of Environmental Science & Engineering》2021,15(6):130
167.
The paper reports unforeseen results of increased toxicity of water, subsequent to interactions between CdSe/ZnS quantum dots (QDs), phenol and toluene under UV irradiation. The consistent pattern of changes in measured toxicity (TU) was observed and correlated with degradation of phenol and/or toluene. Spearman rank coefficients (SRCs) for data pairs sum-parameters vs. TU were calculated. The highest correlation between toxicity and degradation by-products was observed for hydroquinone (0.86) and catechol (0.89). The presence of QDs in tested concentration range in the absence of UV has shown low toxicity and no interactions with phenol and/or toluene. The leak of constituent core and shell metal ions was observed. The minor differences in physical characteristics of tested QDs of the same chemical composition led to rather different degradation patterns of phenol and toluene, and the amount of leak of the metal ions as well. 相似文献
168.
A multi-process phytoremediation system for removal of polycyclic aromatic hydrocarbons from contaminated soils 总被引:10,自引:0,他引:10
Huang XD El-Alawi Y Penrose DM Glick BR Greenberg BM 《Environmental pollution (Barking, Essex : 1987)》2004,130(3):465-476
To improve phytoremediation processes, multiple techniques that comprise different aspects of contaminant removal from soils have been combined. Using creosote as a test contaminant, a multi-process phytoremediation system composed of physical (volatilization), photochemical (photooxidation) and microbial remediation, and phytoremediation (plant-assisted remediation) processes was developed. The techniques applied to realize these processes were land-farming (aeration and light exposure), introduction of contaminant degrading bacteria, plant growth promoting rhizobacteria (PGPR), and plant growth of contaminant-tolerant tall fescue (Festuca arundinacea). Over a 4-month period, the average efficiency of removal of 16 priority PAHs by the multi-process remediation system was twice that of land-farming, 50% more than bioremediation alone, and 45% more than phytoremediation by itself. Importantly, the multi-process system was capable of removing most of the highly hydrophobic, soil-bound PAHs from soil. The key elements for successful phytoremediation were the use of plant species that have the ability to proliferate in the presence of high levels of contaminants and strains of PGPR that increase plant tolerance to contaminants and accelerate plant growth in heavily contaminated soils. The synergistic use of these approaches resulted in rapid and massive biomass accumulation of plant tissue in contaminated soil, putatively providing more active metabolic processes, leading to more rapid and more complete removal of PAHs. 相似文献
169.
170.
Biofilm responses to marine fish farm wastes 总被引:1,自引:0,他引:1
Sanz-Lázaro C Navarrete-Mier F Marín A 《Environmental pollution (Barking, Essex : 1987)》2011,159(3):825-832
The changes in the biofilm community due to organic matter enrichment, eutrophication and metal contamination derived from fish farming were studied. The biofilm biomass, polysaccharide content, trophic niche and element accumulation were quantified along an environmental gradient of fish farm wastes in two seasons. Biofilm structure and trophic diversity was influenced by seasonality as well as by the fish farm waste load. Fish farming enhanced the accumulation of organic carbon, nutrients, selenium and metals by the biofilm community. The accumulation pattern of these elements was similar regardless of the structure and trophic niche of the community. This suggests that the biofilm communities can be considered a reliable tool for assessing dissolved aquaculture wastes. Due to the ubiquity of biofilms and its wide range of consumers, its role as a sink of dissolved wastes may have important implications for the transfer of aquaculture wastes to higher trophic levels in coastal systems. 相似文献