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51.
新安江水库是钱塘江的重要水源,对保障钱塘江中下游的生态安全和水体功能起着举足轻重的作用。为阐明新安江水库在流域经济发展和人类活动的影响下水环境的主要问题及保护对策,促进饮用水安全保障及构建健康水域生态系统,本文对新安江水库历年的水环境指标、浮游生物群落结构及其变化及水域生态灾变事件资料进行了综合分析。目前新安江水库存在上游来水变差、局部水域藻类异常增殖、渔业生产不合理、营养程度加重等众多问题,但其突出问题是藻类生物量增长过快。新安江水库水环境保护工作要从关注水质向维持生态系统健康转变,并尽快开展生态保育工作,控制流域污染、降低藻类数量、减少藻类异常增殖影响、科学合理渔业生产是其下一步保护的关键。而关于新安江水库的研究,虽然有一定的研究基础和资料,但对水域生态系统缺乏系统认识。研究气候变化条件下新安江水库水域生态系统的结构和功能以及长期演变规律;水利调度导致水位调整对区域水动力学条件、营养物输送过程的影响及评价水利调度对水库重要环境因子和生态系统影响;渔业养殖对水环境的影响,特别是鲢、鳙鱼大水面积养殖对水库生态系统的影响应是今后新安江水库主要的研究领域和方向。 相似文献
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Long-term joint effect of nutrients and temperature increase on algal growth in Lake Taihu, China 总被引:1,自引:0,他引:1
To study how global warming and eutrophication affect water ecosystems, a multiplicative growth Monod model, modified by incorporating the Arrhenius equation, was applied to Lake Taihu to quantitatively study the relationships between algal biomass and both nutrients and temperature using long-term data. To qualitatively assess which factor was a limitation of the improved model, temperature variables were calculated using annual mean air temperature (AT), water temperature (WT), and their average temperature (ST), while substrate variables were calculated using annual mean total nitrogen (TN), total phosphorus (TP), and their weighted aggregate (R), respectively. The nine fitted curves showed that TN and AT were two important factors influencing algal growth; AT limited growth as algal photosynthesis is mainly carried out near the water surface; N leakage of phytoplankton and internal phosphorus load from sediment explains why TN was the best predictor of peak biomass using the Monod model. The fitted results suggest that annual mean algal biomass increased by 0.145 times when annual mean AT increased by 1.0℃. Results also showed that the more eutrophic the lake, the greater the effect AT had on algal growth. Subsequently, the long-term joint effect of annual temperature increase and eutrophication to water ecosystems can be quantitatively assessed and predicted. 相似文献
54.
A restoration-promoting integrated floating bed and its experimental performance in eutrophication remediation 总被引:5,自引:0,他引:5
Yiming Guo Yunguo Liu Guangming Zeng Xinjiang Hu Xin Li Dawei Huang Yunqin Liu Yicheng Yin 《环境科学学报(英文版)》2014,26(5):1090-1098
Numerous studies on eutrophication remediation have mainly focused on purifying water first, then restoring submerged macrophytes. A restoration-promoting integrated floating bed (RPIFB) was designed to combine the processes of water purification and macrophyte restoration simultaneously. Two outdoor experiments were conducted to evaluate the ecological functions of the RP1FB. Trial 1 was conducted to compare the eutrophication purification among floating bed, gradual-submerging bed (GSB) and RPIFB technologies. The results illustrated that RPIFB has the best purification capacity. Removal efficiencies of RPIFB for TN, TP,NH4+-N, NO3-N, CODcr, Chlorophyll-a and turbidity were 74.45%, 98.31%, 74.71%, 88.81%, 71.42%, 90.17% and 85%, respectively. In trial 2, influences of depth of GSB and photic area in RPIFB on biota were investigated. When the depth of GSB decreased and the photic area of RPIFB grew, the height of Potamogeton crispus Linn. increased, but the biomass of Canna indica Linn. was reduced. The mortalities of Misgurnus anguillicaudatus and Bellamya aeruginosa in each group were all less than 7%. All results indicated that when the RPIFB was embedded into the eutrophic water, the regime shift from phytoplankton-dominated to macrophyte-dominated state could be promoted. Thus, the RPIFB is a promising remediation technology for eutrophication and submerged macrophyte restoration. 相似文献
55.
沼液养殖钝顶螺旋藻的中试研究 总被引:3,自引:2,他引:1
在室外中试规模的跑道池中,使用混凝沉淀处理后的沼液养殖高耐污钝顶螺旋藻,研究了螺旋藻的生长情况以及沼液中氮磷的去除情况,计算了沼液中氮磷向螺旋藻体的转化效率.在此基础上,结合小试研究,分析总结了使用沼液室外规模化养殖螺旋藻过程中存在的问题和对策.以12 d为一个培养周期,总共进行了6批次培养试验,其中3批次培养的螺旋藻浓度能够达到采收要求(D560>0.8);而另外3批次未能收获螺旋藻.成功的3个养殖批次中,螺旋藻采收后沼液中COD、氨氮、总氮、总磷分别减少了28.6%~48.5%、30.4%~48.5%、41.8%~48.6%、14.3%~94.5%;其中去除的总氮和总磷向螺旋藻细胞的转化率分别为12.1%~98.5%和21.2%~83.7%.沼液中的高浓度氨氮以及残存虫卵孵化产生的虫害是导致另外3批次培养螺旋藻生长缓慢的主要因素,使用生物处理技术降低沼液中氨氮含量、使用膜过滤技术去除沼液中虫卵对于稳定获得高产率的螺旋藻非常必要. 相似文献
56.
六都寨水库夏季富营养化状况与浮游植物分布特征研究 总被引:2,自引:0,他引:2
六都寨水库是湖南省邵阳市重要的备用水源地,本文在2012年夏季对六都寨水库水体理化指标和浮游植物群落结构进行调查,评价水库富营养化状况.结果显示六都寨水库氮、磷浓度较高,TN和TP平均值分别为0.88和0.04 mg·L-1,部分点位超过Ⅲ类水标准.调查期间库区浮游植物总细胞密度变化范围为3.68×106~5.84×106cells·L-1,水库中心区域以绿藻为主,靠近坝首处则以蓝藻为主.各点位Shannon-Wiener多样性指数(H')介于2.19~3.17之间,Chl.a浓度范围为3.64~20.24μg·L-1,综合营养状态指数(TLI)为38.51~48.11,六都寨水库水体已处于中营养状态.要从根本上控制六都寨水库水体富营养化进程,防范蓝藻水华风险,需通过长期科学监控和综合防治. 相似文献
57.
三峡库区干支流落干期消落带土壤可转化态氮含量及分布特征 总被引:3,自引:2,他引:1
为探明三峡支流水体富营养化频发与库岸消落带土壤氮素"源-库"关系转化之间的内在关系,采用分级浸提法,分析了三峡库区长江万州段干流、苎溪河支流、密溪河支流消落带落干期土壤可转化态氮含量和分布特征.结果表明,与三峡库区万州段干流相比,支流消落带落干期土壤有机质和总氮含量较高,而阳离子交换量(CEC)和p H值较低.三峡干支流消落带土壤可转化态氮(TF-N)以OSF-N(有机态和硫化物结合态)为主,且含量上OSF-NIMOF-N(铁锰氧化物结合态氮)IEF-N(离子交换态氮)CF-N(碳酸盐结合态氮);而空间分布上,TF-N表现为:密溪河苎溪河长江干流,4种TF-N形态中IEF-N和OSF-N在干支流间无显著差异,而CF-N和IMOF-N分布与TF-N相反,是造成干支流消落带TF-N差异的主要因素. 相似文献
58.
黄土高原磷湿沉降特征及其对坝系流域磷输出影响-以羊圈沟为例 总被引:2,自引:0,他引:2
对黄土高原坝系流域磷(P)的湿沉降过程进行动态监测,分析了降雨-径流过程中各形态磷的输出变化,探讨了黄土高原坝系流域磷湿输出分异特征及其对水体的影响.结果表明:2015年湿季(7、8月)共11场降雨,产生的磷湿沉降负荷为30.8 kg,磷湿沉降通量为0.16kg·hm~(-2),干季(9月)共3场降雨,产生的磷湿沉降负荷为20.51 kg,磷湿沉降通量为0.11 kg·hm~(-2),干湿季磷湿沉降负荷呈现出明显差异性;选取3场降雨过程(降雨量从小到大)进行动态分析发现,流域磷湿沉降负荷分别为3.33、7.51和6.35 kg,相应的本地区磷湿沉降通量依次为0.02、0.04、0.03 kg·hm~(-2),3场降雨总磷(TP)的输出负荷为1.5×10-3kg,溶解性总磷(DTP)的输出负荷为1.24×10~(-3)kg,PO_4~(3-)-P的输出负荷为7×10-4kg,表明该地区磷湿沉降以可溶性磷为主.根据单因子评价方法中的标准指数法,发现流域水质不能满足Ⅴ类水质标准,应对流域水体加强管理. 相似文献
59.
Pei Gu Ren Fang Shen Yi Ding Chen 《Environmental science and pollution research international》2008,15(3):273-277
BACKGROUND: The Yangtze Delta is one of the most developed regions in China and includes Shanghai, eight cities in Jiangsu province and eight cities in Zhejiang province. Meat consumption in this region has increased with economic growth, and most of the consumed meat is produced locally. The water quality of surface waters has deteriorated in recent years. An example was the huge blue-green algae bloom in Tai Lake in late May 2007, which affected millions of people's daily drinking water. However, animal husbandry is considered to be one of the main pollution sources. METHODS: Pollutants (NH3-N, total phosphorus (TP), and total nitrogen (TN)) excreted by livestock and poultry, and the resultant COD (chemical oxygen demand) and BOD (biochemical oxygen demand), were estimated using two different methods based on different data sets. RESULTS: The number of livestock and poultry has remained stable in the Yangtze Delta over the four years from 1999 to 2002, with the average number of pigs, cattle, sheep and poultry being 21.1 M, 0.4 M, 7.7 M and 597.6 M, respectively. Pollutants in livestock and poultry excreta estimated by Method I were: 0.12 Mt NH3-N, 0.11 Mt TP and 0.29 Mt TN, resulting in COD and BOD of 1.34 Mt and 1.30 Mt, respectively, while the estimations based on Method II were: 0.18 Mt NH3-N, 0.15 Mt TP and 0.40 Mt TN, resulting in COD and BOD of 1.95 Mt and 1.80 Mt, respectively. DISCUSSION: Pollutants excreted annually by livestock and poultry in the Yangtze Delta are estimated to be: 0.17 Mt NH3-N, 0.16 Mt TP and 0.42 Mt TN, giving rise to a COD of 1.86 Mt and a BOD of 1.72 Mt. Approximately 25% of this pollution was estimated to enter water bodies, which means that the annual pollutant load is 43,700 t NH3-N, 39,400 tTP, 104,600t TN with a COD of 465,000 tand a BOD of 430,100 t. Pollutants from animal husbandry were similar in magnitude to those from industrial wastewater. Pigs produced the most pollution, followed by poultry, cattle and sheep. The pollution load from animal husbandry in the Yangtze Delta is about twice the average level of the whole of China. CONCLUSIONS: Domestic wastewater was the main pollution source in the Yangtze Delta, followed by pollution from raising livestock and poultry and from industrial wastewater. The pollution load in Shanghai and Jiaxing were the greatest, followed by 7 cities of Jiangsu province (except Suzhou) and other cities of Zhejiang province and Suzhou. Pigs and poultry produced about 90% of the total pollutants from animal husbandry. RECOMMENDATIONS AND PERSPECTIVES: The local governments, especially in Shanghai and Jiaxing, should focus their attention on the pollution produced by livestock and poulrry. Controlling pollution from pigs and poultry will have the greatest impact in this region. Control of pollution will be facilitated by the development of large-scale livestock and poultry farming units and a shift away from small scale husbandry. 相似文献
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