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The competition between submersed plants has been recognized as an important factor influencing the structure of plant communities
in shallow lakes. The ability of different species to take up and store nutrients from the surrounding ambience varies, and hence plant
community structure might be expected to affect the cycling of nutrients in lake ecosystems. In this study, the uptake of phosphorus
by Hydrilla verticillata and Vallisneria natans was studied and compared in monoculture and competitive mixed-culture plantings.
Results showed that for both studied species the phosphorus concentrations of different tissues and of whole plants was unaffected by
competition. However, the quantity of phosphorus accumulated by whole plants of H. verticillata was significantly higher in mixture
culture than in monoculture, while that of V. natans was lower in the mixed culture. The results indicated that H. verticillata has a
competitive advantage over V. natans, when the two species are grown in competition, and is able to accumulate a greater quantity of
phosphorus. 相似文献
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Qiushi Shen Qilin Zhou Jingge Shang Shiguang Shao Lei Zhang Chengxin Fan 《环境科学学报(英文版)》2014,26(2):281-288
Organic matter-induced black blooms(hypoxia and an offensive odor) are a serious ecosystem disasters that have occurred in some large eutrophic shallow lakes in China. In this study, we investigated two separate black blooms that were induced by Potamogeton crispus in Lake Taihu, China. The main physical and chemical characteristics, including color- and odor-related substances, of the black blooms were analyzed. The black blooms were characterized by low dissolved oxygen concentration(close to 0 mg/L), low oxidation-reduction potential, and relatively low pH of overlying water. Notably higher Fe2+and∑S2-were found in the black-bloom waters than in waters not affected by black blooms. The black color of the water may be attributable to the high concentration of these elements, as black FeS was considered to be the main substance causing the black color of blooms in freshwater lakes. Volatile organic sulfur compounds, including dimethyl sulfide, dimethyl disulfide, and dimethyl trisulfide, were very abundant in the black-bloom waters. The massive anoxic degradation of dead Potamogeton crispus plants released dimethyl sulfide, dimethyl disulfide, and dimethyl trisulfide, which were the main odor-causing compounds in the black blooms. The black blooms also induced an increase in ammonium nitrogen and soluble reactive phosphorus levels in the overlying waters. This extreme phenomenon not only heavily influenced the original lake ecosystem but also greatly changed the cycling of Fe, S, and nutrients in the water column. 相似文献
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Submerged vegetation removal promotes shift of dominant phytoplankton functional groups in a eutrophic lake 总被引:1,自引:0,他引:1
Historical data indicate that the dominance of submerged plants in Dianchi Lake in the 1960 s was characterized by low algal density with dominance of non-toxic group J(Scenedesmus,Pediastrum,etc.). The removal of submerged plants,which began in the 1970 s,resulted in the expansion of bloom-forming Microcystis(group M). Laboratory experiments suggested that Microcystis aeruginosa was inclined to grow and develop at elevated temperatures. The growth of Scenedesmus obliquus was slower than that of co-cultivated M. aeruginosa in the absence of Ceratophyllum demersum,especially at higher temperatures. The existence of submerged plant C. demersum could inhibit the growth of the harmful algae M. aeruginosa and this inhibitory effect by C. demersum was enhanced with an increase in temperature. Instead,with C. demersum,the growth of S. obliquus was not inhibited,but the co-cultivated M. aeruginosa was eliminated in a short time. Combined with the historical data and laboratory experiments,it was indicated that the submerged plants might play important roles in the dominance of the non-toxic group J in the historical succession. Consequently,the introduction of the submerged plant such as C. demersum might alter the dominant phytoplankton functional groups from M to J and benefit the restoration of the eutrophic lake. 相似文献
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芦苇和藨草对不同程度富营养化水体的净化效果研究 总被引:1,自引:0,他引:1
通过设置3种浓度梯度的富营养化水体净化实验,研究了芦苇和藨草的生长状况及其对富营养化水体中N、P的去除效果。结果表明:芦苇和藨草在3种梯度的富营养化水体中均能正常生长,并对水中N、P有明显的去除效果。藨草在处理轻度和中度富营养化水体时要比芦苇占优势,在重度富营养化水体中,芦苇对N、P的去除能力要高于藨草,且二者对水中TP的净化效果要好于TN。通过对受试水样的TN、TP浓度随时间变化的动态曲线拟合得出,水体中TN、TP的浓度随时间变化呈负指数衰减,芦苇和藨草对富营养化水体的净化率随其在水体中停留时间的延长而递增。实验结果为利用挺水植物修复富营养化水体的模式和机理的深入研究提供了科学依据。 相似文献
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黄连根茎和制剂具有抗菌等作用,广泛用于水产养殖,所造成水生态风险需要评估.试验设置总生物碱为0(CK),0.088(T1)、0.44(T2)和1.76 mg·L-1(T3)的黄连根茎浸提液(CRE)4种处理,研究了对斜生栅藻和蛋白核小球藻的毒理作用.结果表明,T1抑制绿藻生长,T2和T3使绿藻生长和繁殖停止;它们均显著降低绿藻叶绿素和蛋白质含量,说明CRE抑制光合作用和蛋白质合成是绿藻生长繁殖速率降低和死亡的直接原因.CRE使氢离子和胞内物质外流,导致藻液p H值显著降低和电导率提高.在T1和T2处理中,绿藻细胞SOD活性先升后降;在T3处理中,SOD活性显著降低.说明在CRE暴露初期,低中浓度的CRE诱导绿藻细胞产生抗性,随暴露时间增长或直接暴露在高浓度的CRE下,抗氧化酶系统被破坏.同样,随着CRE浓度增大,丙二醛含量增加,意味着绿藻细胞膜结构破坏,透性增加.CRE总体上对蛋白核小球藻的危害作用大于斜生栅藻.在水产养殖中,滥用黄连根茎或制剂,以及大规模集约化种植黄连对水体初级生产力具有潜在的生态风险. 相似文献
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文章重点分析了湖北长江三峡地区生态功能定位、生态保护修复重点,剖析了湖北长江三峡地区山水林田湖草生态保护修复形势,在介绍湖北长江三峡地区山水林田湖草生态保护修复工程试点的基础上,深入分析了该工程试点推进中的难点问题。提出了相应对策:坚持用系统思维推进山水林田湖草整体保护和修复;加强生态环境问题突出区域重点攻坚,着力解决生态保护修复不充分、不平衡问题;加大社会资本、绿色金融支持力度,健全多元化、差异化资金供给及管理机制;积极探索生态产品及废弃资源价值转化新途径;加强科技支撑、坚持自主创新、打造精品示范工程;提升建设项目服务水平,加强生态环境监测及风险应急能力建设。 相似文献
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水动力条件下蓝藻水华生消的模拟实验研究与探讨 总被引:2,自引:0,他引:2
蓝藻水华是当今世界共同面临的重大水污染问题之一。通过室内模拟实验,在温度、光照、初始pH值和营养盐等基本条件相同的前提下模拟水流流速分别为10cm/s、20cm/s、30cm/s、40cm/s时铜绿微囊藻(Microcystis aeruginosa)水华的产生与消亡过程,在10~40cm/s流速区间里藻类生长周期随流速增大而变长,藻类最大现存量在40cm/s流速下最大,在10cm/s流速下最小,流速为30cm/s时藻类比增率最大,较适合藻类生存,在整个水华暴发过程中水体氮磷营养浓度呈下降趋势,水体的pH、DO和Ec变化不大。 相似文献