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1.
水葫芦圈养对星云湖富营养化水体水质的影响   总被引:1,自引:0,他引:1  
为了研究水葫芦圈养对富营养化水域的影响,对星云湖14个实验区的采样点及8个对照区采样点的水质各理化性质指标、化学需氧量(COD)、生化需氧量(BOD_5)、不同形态氮浓度进行测定,分析了紫根水葫芦圈养对星云湖水质的影响,结果表明:在紫根水葫芦生长发育期,星云湖中圈养的紫根水葫芦能够显著增加水体中的溶解氧含量,可以有效吸收星云湖湖水中的氨氮、总氮、总磷,降低了水体中BOD-5和COD含量。总磷、总氮和氨氮三者之间显著正相关,总磷、氨氮、总氮以及BOD_5都与水体的pH呈显著负相关,然而溶解氧与pH显著正相关,BOD_5与水温、总磷、COD、氨氮和总氮显著正相关。科学的水葫芦圈养模式可以有效的降低富营养化水体中的营养物质,改善水质。  相似文献   

2.
在滇池水域选择3个实验点,分别是外草海、老干鱼塘和龙门村,构建围栏控制性种养凤眼莲,用于吸收富集水体氮磷。于凤眼莲旺盛生长期内(2010年8月),每隔3小时监测种养区与对照区水体理化指标,包括气温、水温、p H、溶解氧(DO)、总氮(TN)、氨氮(NH+4-N)、硝氮(NO-3-N)、总磷(TP)和磷酸根(PO3-4-P),分析24 h内水体理化指标的变化规律。结果显示,(1)昼夜变化使得3个实验点水体p H和DO白天高于夜晚。由于气泡浮力机制影响,龙门村水体Chl-a浓度在中午12:00达到最高,在日落后21:00又出现一个高值;(2)外草海种养区NO-3-N浓度与TN浓度呈显著的正相关关系,与NH+4-N浓度呈显著的负相关关系,推测是因为凤眼莲可以促进富营养化水体的硝化、反硝化、硝化-反硝化反应的耦合过程。老干鱼塘水体由于p H过高,使得水体NH+4-N浓度明显高于NO-3-N浓度;(3)昼夜变化对水体氮、磷浓度并未表现出显著的影响。在野外大水面种养相对小面积的凤眼莲,种养水域内部的氮磷浓度均高于相对较远的对照水域;规模化种养凤眼莲方可有效降低整个水体的氮磷浓度。  相似文献   

3.
天目湖富营养化现状研究   总被引:1,自引:0,他引:1  
基于2005年天目湖(沙河水库)库体和取水口水质监测资料,分析其水库水质和富营养化状况.结果表明,全年水库透明度为3.10±0.14 m,总氮为0.455±0.036 mg/L,总磷为0.017±0.004 mg/L,N/P比的均值为28.8±9.5,浮游植物生长主要受营养盐磷的限制.采用总氮、总磷、透明度、高锰酸盐指数、溶解氧五项指标作为参数的富营养状态指数,评价结果表明,沙河水库水体营养水平较低,处于贫营养状态.  相似文献   

4.
大型水生植物对骆马湖氮、磷元素的影响   总被引:4,自引:1,他引:3  
对骆马湖有草区和无草区水体和沉积物中氮、磷元素含量分析,结果表明:无草区水体中总氮、总磷含量高于有草区;有草区表层沉积物总氮含量随时间变化明显,而无草区表层沉积物总氮含量随时间的变化很小;有草区与无草区表层沉积物中总磷含量的时间变化并无明显差异;有草区表层沉积物总氮含量基本上均高于无草区,而有草区表层沉积物总磷含量均要低于无草区。骆马湖有草区与无草区采样点沉积物碱性磷酸酶活性大小在58.41~315.07 mg/(kg.h)范围内变化,有草区的碱性磷酸酶的活性普遍低于无草区的碱性磷酸酶活性。在湖泊中种植大型水生植物确实可以减少水体污染,达到净化水质的目的。  相似文献   

5.
选取贵州草海重污染湖区,利用改性粘土钝化剂开展底泥原位钝化技术示范,对示范区内外主要水质参数、浮游生物和底栖动物等进行了对比监测与研究。结果表明:示范工程实施一年后钝化区水体氨氮(NH_3-N)和总磷(TP)含量分别降低至对照区的29%和23%,水体溶解氧含量达9 mg·L~(-1)以上,透明度显著增加;钝化区水体藻类总丰度降低40%以上,蓝藻所占比例大幅下降;钝化区沉水植物生长繁茂,水体自净功能明显增强,已形成草型清水生态系统。钝化区与对照区水体浮游动物、底栖水生生物种群及丰度无显著变化,表明钝化剂未对动物生长造成不良影响;原位钝化技术具有快速提升水体透明度和溶解氧含量、抑制底泥污染物释放、降低水体营养盐含量及抑制藻类生长等特点,且实施方便、成本低廉,在湖泊底泥污染治理和水体富营养化防治领域具有广阔应用前景。  相似文献   

6.
沉水植被构建对上海辰山植物园景观湖水质的影响   总被引:2,自引:0,他引:2  
以辰山植物园景观湖为研究对象,研究了景观湖建成初期沉水植物群落构建对水体水质因子的影响;并应用相关性分析(correlation analysis)和主成分分析(principal components analysis)对各水质和生态因子之间的相互关系进行了研究。结果表明,景观湖沉水植被建成1年后,水体水质处于Ⅲ类,其中叶绿素a含量5.48±1.930μg/L、总氮1.40±0.136mg/L、总磷0.080±0.015 mg/L、透明度108±20 cm、高锰酸盐指数5.50±1.26 mg/L;除高锰酸盐指数(CODMn)外,其他水质指标均较构建前有显著改善;并且景观湖水质显著优于外河道补充水源水质。相关性分析表明,景观湖水体叶绿素a含量与N、P营养盐呈显著正相关,但却与水温呈极显著负相关,这显示了草型景观湖水质的显著特征;主成分分析显示,第一主成分包含硝态氮、亚硝态氮、总磷、活性磷、叶绿素、水温、透明度和pH等变量,第二主成分包括高锰酸盐指数和氨氮等变量;第一主成分中的水质参数可作为辰山植物园景观湖后续水生态管理中的主要监测对象;此外,主成分分析还显示TP对水体叶绿素的增加具有很高正权重。  相似文献   

7.
长湖水质现状调查及评价   总被引:3,自引:0,他引:3  
通过对长湖13个点位的采样监测结果表明:(1)长湖的各项主要指标均已超标,特别是化学需氧量(CODcr)、高锰酸盐指数(OC)、总氮(TN)、总磷(TP)等超标严重;(2)从总体上看,长湖水体监测点位的水质是,上游污染情况较重,下游的出水口及大湖湖心水质稍好;(3)采用单项水质参数评价方法对长湖水质进行评价,水体已达到劣Ⅴ类.  相似文献   

8.
为了探讨不同覆盖面积生态浮床对养殖海水的净化效果及其对北美海蓬子和南美白对虾生长的影响,以不设置浮床为对照,在养殖对虾的水面上设置了3种不同面积北美海蓬子生态浮床,覆盖面积分别为25%、50%和75%。实验进行期间每2 d监测1次水质,实验结束后测定海蓬子和对虾产量,并对氮和磷进行衡算。结果表明:15 d后,50%覆盖面积生态浮床对水体总氮、铵态氮、硝态氮和CODMn的去除效果最好,去除率分别为44.90%、34.43%、44.45%和35.64%;75%覆盖面积生态浮床对水体总磷的去除效果最好,去除率为30.32%;各处理间pH、溶解氧和温度没有显著性差异,但盐度随浮床面积增加而有所下降;各处理间海蓬子生长没有显著性差异,但对虾产量差异显著,以50%处理的产量最高,比不设置浮床增产7.8倍;设置浮床后,水体和其他途径总氮减少,海蓬子和对虾总氮增加,水体总磷和对虾总磷减少,其他途径和海蓬子总磷增加。北美海蓬子生态浮床对养殖海水具有显著的净化效果,对虾具有显著的增产效果,其中以50%覆盖面积效果最佳。  相似文献   

9.
北京市的地表水水质日益恶化,富营养化表现突出。目前改善水质、抑制藻类生长是解决富营养化水体的关键。试验采用从美国引进的新型生物制剂Eclean应用于北京动物园富营养化水体,试验结果表明,水体中的CODMn、总氮(TN)、总磷(TP)、浊度、叶绿素a、藻类浓度各项指标均有明显下降,水质明显改善,藻类生长基本得到控制。  相似文献   

10.
红枫湖是贵阳市重要的生活饮用水源地,20世纪90年代末期水体污染严重。从2008年开始进行综合治理,2011年起进入治理成效阶段。为了对治理成效期的水质状况有全面了解,为进一步污染治理和生态调控提供科学依据和对策,利用富营养化指数法和主成分分析方法对2011—2013年水体富营养化状态特征进行研究分析。结果表明:(1)在监测期,红枫湖始终保持中营养状态不变,但呈现逐年减弱的趋势,水质达标率逐年升高。(2)全湖的综合营养状态指数存在明显的时空异质性。(3)影响红枫湖水体质量的主控因子为叶绿素a、pH、透明度、总磷和高锰酸盐指数,总氮对其影响不显著。(4)在下一步治理中,继续加强外源性治理的同时,须加强水体内源性污染的治理工作,促进水质进一步好转。  相似文献   

11.
水葫芦对滇池底泥氮磷营养盐释放的影响   总被引:1,自引:0,他引:1  
为了探讨水葫芦对富营养湖泊底泥氮磷营养盐释放的影响,通过原位采集滇池柱状底泥,以蒸馏水为上覆水,进行了25d的室内静态模拟实验。实验比较了水葫芦处理组和空白对照组底泥氨氮(NH4-N)、硝态氮(NO3^-N)、溶解性总氮(DTN)、正磷酸盐(PO4^3--P)等的释放特征。结果表明,与对照组相比,水葫芦处理组上覆水溶解氧、pH显著性降低,而PO4^3-P浓度显著性升高;在实验前2d,水葫芦处理组上覆水NH4^+N和DTN浓度显著性高于对照组,而在5~25d时,其显著性低于对照组。根据上覆水营养盐浓度、水葫芦植株吸收营养盐总量,推算底泥氮磷营养盐释放的平均速率,表明水葫芦加速了滇池底泥氮、磷营养盐的释放速率,处理组氮、磷释放速率分别为对照组的5.3~170.2和1.5~21.6倍。  相似文献   

12.
An ecological engineering project using water hyacinth for nutrient removal was performed in Baishan Bay of a large shallow eutrophic lake, Lake Dianchi in China. In the present study, a systematic survey of water quality, macrozoobenthos and zooplankton inside (IWH), around (AWH) and far away (FWH) water hyacinth mats was conducted in Baishan Bay from August to October 2010. The results showed that the water quality significantly improved at AWH area. Concentrations of nitrogen and phosphorus were lower and transparency was higher at AWH area than those in IWH and FWH areas. Total densities, dominant species densities, and biodiversity indexes of macrozoobenthos and cladocerans as well as copepods did not differ (P > 0.05) among each other in all three areas. It was significantly (P < 0.05) different for those of rotifers at IWH area compared to those in AWH and FWH areas. The results might suggest a tremendous potential for the utilization of water hyacinth in the eutrophic lake like Lake Dianchi for nutrients removal.  相似文献   

13.
The Waigang River, a major tributary of the Qinhuai River system, has suffered from long-standing pollution because of lack of management. Restoration was commenced in April 2006 to reduce pollutants and improve water quality. Four ecological areas and ten surface carriers were constructed for the culture of plants (mainly water hyacinth (Eichhornia crassipes) and ryegrass (Lolium perenne L.)) for phytoremediation. Chemical oxygen demand (COD), total suspended solids (TSS), total phosphorus, total nitrogen (TN), ammonia?Cnitrogen (NH3?CN), water transparency, and variations in phytoplankton population were investigated to evaluate the effects of restoration. Over 36?months, TSS, COD, TN, and NH3?CN levels decreased by 91.1, 55.3, 91.5, and 86.5?%, respectively. Transparency increased from 25?cm in 2006 to 165?cm in 2009. Improvements in water quality significantly enhanced the diversity of phytoplankton, which were harmed by pollution stress. Our results show that the water hyacinth and ryegrass cultured in the ecological areas and the surface carriers can be used to restore other heavily polluted rivers with conditions similar to those of the Waigang River, especially in the initial stages of restoration.  相似文献   

14.
水体遮光剂能干扰水下光照,抑制藻类生长。为了探讨水体遮光剂-增蓝剂在自然水体的作用情况,对围隔内增蓝剂的停留时间及水质、浮游藻类和沉水植物的变化特征进行分析。结果表明,当围隔水体中增蓝剂浓度为1 mg/L时,5周内其降解超过50%,9周后降解超过95%。与对照组相比,增蓝剂对围隔内总氮、总磷浓度无明显影响,易氧化成分的存在导致CODMn浓度升高至8.60 mg/L,但CODMn浓度随增蓝剂的降解逐步降至7.81 mg/L。在增蓝剂作用下水下光照度衰减明显,水深0.2 m处仅占水表面光强的21.16%,光衰减系数(k)为0.7 m-1。增蓝剂对藻类生长抑制作用明显,抑制率高达56.24%,但对金鱼藻生长无显著影响。  相似文献   

15.
The capacity to reach lower bounds for extraction of pollutants from wastewater by four floating aquatic macrophytes--water hyacinth (Eichhornia crassipes), water lettuce (Pistia stratiotes), salvinia (Salvinia rotundifolia), and water primroses (Ludvigia palustris)--is investigated. It is shown that the following lower bounds can be established for wastewater purification with water hyacinth: biochemical oxygen demand (BOD), 1.3 mg/L; chemical oxygen demand (COD), 11.3 mg/L; total suspended solids (TSS), 0.5 mg/L; turbidity, 0.7 NTU; ammonia, 0.2 mg/L; and phosphorus, 1.4 mg/L. Also, the following lower bounds can be established for wastewater purification with water lettuce: BOD, 1.8 mg/L; COD, 12.5 mg/L; TSS, 0.5 mg/L; turbidity, 0.9 NTU; ammonia, 0.2 mg/L; and phosphorus, 1.6 mg/L. These lower bounds were reached in 11- to 17-day experiments that were performed on diluted wastewater with reduced initial contents of the tested water quality indicators. As expected, water hyacinth exhibited the highest rates and levels of pollutant removal, thereby producing the best lower bounds of the water quality indicators. Given the initially low levels, BOD was further reduced by 86.3%, COD by 66.6%, ammonia by 97.8%, and phosphorus by 65.0% after 11 days of a batch experiment. The capacity of water plants to purify dilute wastewater streams opens new options for their application in the water treatment industry.  相似文献   

16.
The temporal and spatial distribution characteristics of environmental parameters and the phytoplankton community were investigated in October 2010 and January 2011 in the Qinhuai River, Nanjing, China. Results showed that the water quality in the study area was generally poor, and the main parameters exceeding standards (level V) were nitrogen and phosphorus. The observed average concentrations of the total nitrogen (TN) were 4.90 mg?L?1 in autumn and 9.29 mg?L?1 in winter, and those of the total phosphorus (TP) were 0.24 mg?L?1 in autumn and 0.88 mg?L?1 in winter, respectively. Thirty-seven species, 30 genera, and four phyla of phytoplankton were detected in the river. Cyanophyta and Bacillariophyta were the dominant phyla in autumn, with average abundance and biomass of 221.5?×?104?cells?L?1 and 4.41 mg?L?1, respectively. The dominant population in winter was Bacillariophyta, and the average abundance and biomass were 153.4?×?104?cells?L?1 and 6.58 mg?L?1, respectively. The results of canonical correspondence analysis (CCA) between environmental parameters and phytoplankton communities showed that Chlorophyta could tolerate the higher concentrations of the permanganate index, nitrogen, and phosphorus in eutrophic water; Bacillariophyta could adapt well to changing water environments; and the TN/TP ratio had obvious impacts on the distributions of Cyanophyta, Euglenophyta, and some species of Chlorophyta. CCA analyses for autumn and winter data revealed that the main environmental parameters influencing phytoplankton distribution were water temperature, conductivity, and total nitrogen, and the secondary factors were dissolved oxygen, NH4 +–N, NO3–N, TN, CODMn, TN/TP ratio, and oxidation-reduction potential.  相似文献   

17.
Currently, the poor water quality in Taihu Lake is a major problem in China, so pollution control in the upstream areas has become a government priority. In Jiangsu Province, pollution emissions around the western areas of Taihu Lake, including Changzhou Municipality and Yixing City, need to be highly restricted, and calculating the water environmental capacity is important if pollution is to be reduced. In this study, 19 control units in these areas were established, and a 0-D mathematical model was used to calculate the water environmental capacity. For three important control units with important cross sections, a 1-D model was established to redress the results. Finally, the total maximum monthly loads of each control unit were obtained using temporal allocation principles. The results suggested that (1) the total pollution control of chemical oxygen demand was 58,894.2 tonnes per annum (t a?1), with ammonia nitrogen, total nitrogen, and total phosphorus amounting to 3,808, 6,054.6, and 386.6 t a?1, respectively; (2) water environmental capacity per unit water area in the ambient control units was smaller than that in the middle control units; and (3) the largest water environmental capacity was in June, and the smallest capacity was in December. The study provides important information for local governments, which will enable them to implement pollution control strategies that will improve the water quality in Taihu Lake.  相似文献   

18.
苏南某市河流水质参数时空变异性研究   总被引:1,自引:0,他引:1  
以苏南某市区320km2内的河流为研究对象,基于对高锰酸盐指数、NH3-N、TP3个主要水质参数的监测,应用地质统计学的变差函数球状模型和Kriging插值法,对河流有机污染指标、富营养化指标进行了空间插值,用以揭示其时空分布特征及变化趋势,并绘制了时空分布等值线图。结果表明,受不同区域污染物来源的差异、不同河道自身条件的差异和不同水期水生植物、入流水量、河水流动性的差异等因素的影响,研究区河流水质参数呈现出不同的时空变异特征;各水质参数污染均相当严重,尤以富营养化指标氮磷最为显著。  相似文献   

19.
模糊物元识别模型在巢湖水体富营养化评价中的应用研究   总被引:9,自引:1,他引:8  
选取TN、TP、Chl-a、COD、BOD5、DO和SD等7项指标,应用模糊物元识别模型对2000~2007年巢湖的12个水质监测点的富营养化等级进行了模糊识别。通过与巢湖同期水质浓度变化及其分布区域进行对比分析,验证了模糊物元识别模型在巢湖水体富营养化评价中的适用性。巢湖富营养化评价结果表明,2000~2007年富营养化呈逐年加重的趋势,据采样点模糊物元计算结果得知西巢湖(1#~6#)的富营养化状况比东巢湖(7#~12#)更严重,西巢湖贴近度最高值为0.9974,接近极富营养状态,而东巢湖的最高值仅为0.5866。从年际变化上看,2000~2007年东巢湖富营养化状况变化不大,营养状态级处在较低的水平,而西巢湖的富营养状况变化则较大,营养状态级则处在较高水平。  相似文献   

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