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茭草是太湖流域河、湖水陆交错带及低洼沼泽中普遍生长的挺水植物,其生长条件在当地挺水植物中具有代表性.根据该流域河道水陆交错带的现状与挺水植物生长特性,针对性地设计了置入式生态滤床、生物氧化池、潜流-表面流复合人工湿地和水平潜流人工湿地4种不同生境条件,研究茭草的生长适应性,为建立与恢复退化的河道水陆交错带植被群落提供科学依据和技术支持.结果表明,茭草能够适应不同生长环境,在沸石基质和水培环境中均能正常生长;不同环境条件下其生长速度和繁茂程度存在差异. 相似文献
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Experiments on surface aquaponics were carried out in simulatedly-eutrophicated cement ponds with the concentrations ofkjeldahl nitrogen (KN) 2.084 mg·l-1 and TP 0.248 mg·l-1 and without any interference from natural environment factors. On the surface of ponds rice was planted on floating-beds without soil for the purpose of collecting nutrients (N & P) from water by absorption and adsorption of rice roots. The results show that the design is not only feasible but also very effective. When the coverage of rice on floating-beds were 20%, 40% and 60%, respectively with the water depth of about 1.4 m, the removal rates of KN in water reached 29.0%, 49.8% and 58.7%, respectively and those of TP 32.1%, 42.0% and 49.1%, respectively during the test period of 84 days from tillering to maturing of rice. Other main parameters of water quality were greatly improved. The results provided a scientific basis for surface aquaponics engineering to purify eutrophicated water bodies by planting terrestrial higher plants on floating-beds. 相似文献
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