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Strategy &Techniques for Restoration of Healthy Aquaecosystem from Toxic Super Eutrophic Water Body 被引量:1
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作者 Peimin Pu Jiangping Pu 《Journal of Geoscience and Environment Protection》 2015年第6期55-61,共7页
There are complex river-lake systems in the Taihu Lake catchment with total water surface area of 6174.7 km2, and population density of 1079/km2, including Taihu Lake water surface area of 2338 km2. The water systems ... There are complex river-lake systems in the Taihu Lake catchment with total water surface area of 6174.7 km2, and population density of 1079/km2, including Taihu Lake water surface area of 2338 km2. The water systems in this catchment have healthy aquaecosystems during long history. However, in some riverlets in this catchment the water quality was estimated as “acute toxicity for higher organisms” and over standards for many heavy metal elements content;there were no any living plants and macro organisms in the water body, because there were developed a series of industry with abundant release of heavy metals and difficult decomposition organic chemical components along the riverlets during last decades. The even more serious situation was observed in sediments of the riverlets. How to restore such riverlet into a healthy aquaeosystem with abound plants and higher organisms? The main strategy and techniques are described in this paper as summarizing a report of engineering in a riverlet in Wuxi New District during last years, which leads to restore the aquaecosystem into a healthy one with abundant surface plant cultured on floating islands and observed living fish, lobster, frog, toad, mollusk and others in the riverlet. The main techniques are: 1) softwall buffer technic;2) floating eco-island technic by using which can culture any plant which can be cultured in solution;3) immobilized nitrogen cycle bacteria (INCB) technic;4) tattering esters and other big-molecule organic chemicals by using electronic pulse technic and photosensitization technic;5) mist spray facility technic for improving dissolved oxygen in deep water layers;6) technic for buffering and suppressing H2S release from water;7) the appropriate portion of surface with cultured plant to the total water surface area is about 1/3;8) Cress [Oenanthe Ljavanica (Bl.) DC.] and Myriophyllum verticilatum L. may be cultured in Taihu Lake catchment during the whole year as main plants with mosaic combination of other supplement plants in different seasons. 展开更多
关键词 RESTORATION of HEALTHY aquaecosystem TOXIC Water Body Electronic Pulse Technique for DECOMPOSITION Esters PHOTOSENSITIZATION for DECOMPOSITION of Organic Matters Floating Eco-Islands Immobilized Nitrogen Cycle Bacteria
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提高水体净化能力控制湖泊富营养化 被引量:37
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作者 濮培民 李正魁 王国祥 《生态学报》 CAS CSCD 北大核心 2005年第10期2757-2763,共7页
建立了湖泊污染物质动力学方程,根据我国湖泊和美国Okeechobee湖资料,确定了控制藻类暴发的总磷阈值为0.035mg/L,总氮阈值为0.350mg/L(滇池)和1.050mg/L(太湖);用实测资料,计算得到需要削减的外污染源滇池为总磷、总氮各78%,太湖为总磷... 建立了湖泊污染物质动力学方程,根据我国湖泊和美国Okeechobee湖资料,确定了控制藻类暴发的总磷阈值为0.035mg/L,总氮阈值为0.350mg/L(滇池)和1.050mg/L(太湖);用实测资料,计算得到需要削减的外污染源滇池为总磷、总氮各78%,太湖为总磷69%、总氮56%.提出通过提高水体净化能力可以控制湖泊富营养化的理论依据和如下技术路线:提高湖泊净化率,使其超过输入的污染率,在湖内实现浓度低于控制藻类水华暴发所需要的磷、氮阈值;因地制宜综合运用到太湖、巢湖、滇池等一类大、中型湖泊,加强管理,就可以在占湖泊7%(滇池)和4%(太湖)的湖面上,依托科学布设控制其生长的凤眼莲,将其规模化地加工为有益产品,从而有效地去除湖泊中的营养盐,将水体综合净化率比现有净化率在滇池提高4.6倍,在太湖提高2.1倍,实现控制湖泊富营养化目标,并同步地在约3~4倍相应面积上修复健康水生态系统. 展开更多
关键词 物理生态工程 固定化氮循环细菌 水体净化能力 修复健康水生态系统 太湖 滇池
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