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1.
3种水生植物对富营养化水质的净化性能比较   总被引:1,自引:0,他引:1  
选择芦苇、狐尾藻、菖蒲3种水生植物净化富营养化水体,考察了不同水生植物及组合对富营养化水体中硝酸盐氮、氨氮、TN、TP、COD、BOD5的去除效果。结果表明,菖蒲对氮、磷的去除效果明显优于芦苇和狐尾藻,狐尾藻在COD的去除上表现出一定的优势,而芦苇对BOD5的去除效果最加。在植物组合处理中,菖蒲+狐尾藻组合对氮、BOD5去除效果最佳,处理28d后,TN、BOD5去除率分别达80%、57%,芦苇+菖蒲组合对TP、COD去除效果优于其他组合,处理28d后,TP、COD去除率分别达87%、72%;处理过程中,狐尾藻生物量增长最多,且对芦苇、菖蒲具有明显的抑制作用,是3种植物中的优势物种。综合考虑水质净化效果及植物生长状况,菖蒲和芦苇可作为富营养化水体的净化植物,而狐尾藻则应该谨慎使用。  相似文献   

2.
不同水生植物去除水体氮磷的效果   总被引:3,自引:0,他引:3  
为研究水生植物对污染河流的脱氮除磷效果,实验采用人工配置污水,对大薸、凤眼莲、慈菇、菖蒲、香蒲和水葱这6种水生植物去除氮磷的效果进行了实验研究。结果表明,所选植物都能较好地吸收水中的营养物质,对氨氮(NH4-N)和硝态氮(NO3-N)的去除率分别为93.71%~97.32%和76.69%~92.47%,对总磷(TP)的去除率为76.69%~92.47%,其中菖蒲对NH4-N的去除效果最好,慈菇对NO3-N的去除率最高,香蒲对TP的去除率最高。6种水生植物的氮、磷吸收贡献率分别占水质氮、磷去除率的11.71%~54.57%和17.61%~64.56%。不同种类水生植物对不同污染物的去除能力存在较大差异,因此,在实际应用时可针对污染物的种类来选择水生植物,也可考虑对水生植物之间进行搭配组合用以修复污染水体。  相似文献   

3.
在众多的水污染修复技术中,植物修复是一种非常有潜力的“绿色”处理技术.选择适合当地生境且具有良好净化效果的植物是开展植物修复的基础,选择当地常见挺水植物——香蒲用以研究对污染缓流水体的修复效果.结果表明,河南省利用香蒲修复污染缓流水体时,要避免移栽过程中温度过低、日照时数少导致植物萎缩和死亡,注意温度和日照时数等气象参数对植物生长的影响.香蒲对高锰酸盐指数和TP的去除率较高,而对TN的去除率较低.香蒲植株个体大小会对TN的去除产生差异,但对高锰酸盐指数和TP影响较小.建议河南省可用香蒲净化有机耗氧型污染水体或者由磷引起的富营养化水体.  相似文献   

4.
3种浮萍对富营养化水体的修复   总被引:2,自引:0,他引:2  
选用Spirodela polyrhiza、Lemna aequinoctialis和Landoltia punctata 3种太湖浮萍为实验对象,在实验室条件下,研究其生长状况及其对模拟太湖水体的净化效果。结果表明,3种浮萍对水体总氮、氨氮、硝氮和总磷都具有很好的净化效果,S.polyrhiza,L.aequinoctialis和L.punctata对总氮的去除率分别为80.3%、73.7%和83.8%,对总磷的去除率分别为98.8%,96.4%和99.3%,但对有机物的去除作用比较有限。除营养吸收外,浮萍的水质净化能力还表现在对水中环境因子的影响,3种浮萍都能够维持水体p H在4.6~6.5的范围内以适合自身生长,并能够在一定程度上增加水体的溶解氧含量。硝化和反硝化作用是氮去除的主要途径,由于水体溶解氧含量较高,促进了好氧反硝化作用的进行。相比于S.polyrhiza和L.aequinoctialis,L.punctata具有较强的水体净化效果和生长速度,是净化太湖富营养化水体的理想水生植物。  相似文献   

5.
水生植物生态修复重金属污染水体研究进展   总被引:1,自引:0,他引:1  
综述了挺水植物、漂浮植物、浮叶植物、沉水植物等4种水生植物在生态修复重金属污染水体领域的进展,重点阐述了水生植物对重金属的蓄积效果以及生态修复的影响因素,总结了水生植物生态修复的适用范围和不足,并简要介绍了水体中的重金属通过水生植物进入食物网的生态过程,最后展望了提升水生植物蓄积重金属能力的研究方向。  相似文献   

6.
人工湿地防治湖泊富营养化污染探讨   总被引:1,自引:0,他引:1  
针对湖泊富营养化问题,结合抚仙湖当前污染状况,以马料河人工湿地为例,探讨利用人工湿地控制水体水质下降、脱氮除磷机理及其去除效率.结果显示:马料河人工湿地对TN、TP、SS的去除效率分别为:44.21%、46.03%、86.6%;其中TN的去除效率与进水流速具有一定的相关性;TP的去除效率相对稳定,去除机制主要与湿地基质有关.  相似文献   

7.
人工湿地植物研究进展   总被引:19,自引:0,他引:19  
人工湿地具有去除污染效果好、运行费用低和易维护等特点,已被广泛用于污水处理中.湿地植物在其中起着重要作用,主要包括直接吸收氮、磷等污染物,通过根系输氧促进根区的氧化还原反应与好氧微生物活动及增强和维持介质的水力传输等.综述了人工湿地植物的去污机理,阐述了湿地植物对生物可降解的有机物、营养性污染物和有毒有害物质净化的研究成果与应用,并展望今后进一步研究的重点.  相似文献   

8.
水生蔬菜型湿地植物对氮、磷营养盐的吸收动力学   总被引:1,自引:0,他引:1  
采用改进的常规耗竭法研究了6种蔬菜型湿地植物根系对氮、磷营养盐的吸收特征及差异。这6种植物根系对NH_4~+-N、NO_3~--N和H_2PO_4~-的吸收动力学特征均可采用Michaelis-Menten方程描述。结果表明:不同植物对氮、磷的最大吸收速率I_(max)和最小亲和力K_m有显著差异。6种植物对NH_4~+-N的吸收速率最大,对H_2PO_4~-的亲和力常数较小,所以当水体中氮、磷浓度较低时,优先选择吸收磷,但对铵态氮的吸收速率最快。通过对6种植物根系吸收氮、磷的最大吸收速率I_(max)和亲和力常数K_m的比较可知,空心菜根系拥有最大的I_(max)和最小K_m,说明空心菜能够适应任意浓度的水体净化,芋头I_(max)较低而K_m较大,说明芋头不适宜作为生态修复植物;韭菜适合高氮、磷水平的水体净化,可用作水体修复中的先锋植物,生菜适合低氮、磷水平的水体净化;雪里蕻适宜用于低P、低NH_4~+-N、高NO_3~--N水体修复,金花菜则是对高P、高NH_4~+-N、低NO_3~--N水平的污染水体处理效果相对较好;但考虑食用安全性问题,重金属含量可能超标,工程应用时需谨慎。  相似文献   

9.
研究了两套不同基质复合垂直流人工湿地小试装置在不同季节对富营养化景观水的净化效果,分析了温度变化对污染物去除效果的影响,考察了微生物的硝化强度和反硝化强度以及基质理化性质对植物生长状况的影响,并探讨了氮、磷的去除途径.结果表明:不同基质复合垂直流人工湿地随季节变化对浊度、COD和磷的去除效果差异不明显;温度降低对脱氮效果影响显著,对磷的去除影响不大.沸石-页岩湿地硝化强度和反硝化强度优于砾石湿地.采用沸石作为基质可以提高系统对氮的去除效率,促进湿地植物的生长.对氮、磷去除途径的分析表明:微生物的硝化反硝化作用以及基质对磷的吸附沉淀作用是复合垂直流人工湿地去除氮、磷的主要途径;植物吸收分别占湿地TN、TP去除量的16%和35%左右,也是个重要途径.  相似文献   

10.
滨河湿地对农业非点源氮污染控制研究进展   总被引:3,自引:0,他引:3  
氮素是农业径流最重要、最普遍的水体污染物。滨河湿地因受到陆地生境和水生生境双重影响而显得非常独特,作为重要的陆地和水生环境的生态交错带,滨河湿地能够阻断和改变水运污染物,特别是农业径流中的氮排入临近的小溪和河流。植物吸收和反硝化作用是滨河湿地两种最重要的截留和缓解氮负荷的有效途径,氮素可以通过生物转化、植物吸收、微生物暂时固氮等方式去除,但是永久性的去除氮却是通过反硝化过程来完成的。为了系统认识和了解滨河湿地生态系统对农业非点源氮污染控制过程,通过大量文献分析讨论了滨河湿地对农业非点源氮的净化能力、净化机制及其影响因素,并结合我国研究现状展望了该领域的研究前景。滨河湿地对农业非点源氮污染的控制作用研究将成为滨河湿地生态系统服务功能评价、滨河湿地生态系统健康与稳定的诊断和退化滨河湿地生态系统修复的重要基础理论。  相似文献   

11.
水厂常规工艺去除有机物和总磷   总被引:3,自引:0,他引:3  
有机物、总磷是我国地表水源主要污染物,涉及范围广,污染浓度高,是影响水厂出水安全的重要因素。以某水厂净水系统为依托,分析水厂常规工艺对有机物和总磷的去除效果及影响因素。研究表明,地表水源水厂所采用的混凝+沉淀+过滤+消毒的传统工艺对有机物的去除率不高,在22.1%~61.3%之间,平均去除率为38.3%;其中,混凝沉淀是常规工艺中去除CODMn的关键环节,占总去除效果的43%~68%,过滤环节去除率约为10%;温度和混凝剂投加量是影响CODMn去除效果的主要因素。常规工艺对总磷的去除效果较好,去除率约为60%~90%,冬季略低,其他季节略高;混凝沉淀单元与过滤单元对总磷均有较好的去除效果,去除率分别为25%~77%和40%~76%。在当前水质条件下,水厂现行工艺可满足常规状况下有机物和总磷的去除需要。  相似文献   

12.
Heavy metals in plants and phytoremediation   总被引:2,自引:0,他引:2  
GOAL, SCOPE AND BACKGROUND: In some cases, soil, water and food are heavily polluted by heavy metals in China. To use plants to remediate heavy metal pollution would be an effective technique in pollution control. The accumulation of heavy metals in plants and the role of plants in removing pollutants should be understood in order to implement phytoremediation, which makes use of plants to extract, transfer and stabilize heavy metals from soil and water. METHODS: The information has been compiled from Chinese publications stemming mostly from the last decade, to show the research results on heavy metals in plants and the role of plants in controlling heavy metal pollution, and to provide a general outlook of phytoremediation in China. Related references from scientific journals and university journals are searched and summarized in sections concerning the accumulation of heavy metals in plants, plants for heavy metal purification and phytoremediation techniques. RESULTS AND DISCUSSION: Plants can take up heavy metals by their roots, or even via their stems and leaves, and accumulate them in their organs. Plants take up elements selectively. Accumulation and distribution of heavy metals in the plant depends on the plant species, element species, chemical and bioavailiability, redox, pH, cation exchange capacity, dissolved oxygen, temperature and secretion of roots. Plants are employed in the decontamination of heavy metals from polluted water and have demonstrated high performances in treating mineral tailing water and industrial effluents. The purification capacity of heavy metals by plants are affected by several factors, such as the concentration of the heavy metals, species of elements, plant species, exposure duration, temperature and pH. CONCLUSIONS: Phytoremediation, which makes use of vegetation to remove, detoxify, or stabilize persistent pollutants, is a green and environmentally-friendly tool for cleaning polluted soil and water. The advantage of high biomass productive and easy disposal makes plants most useful to remediate heavy metals on site. RECOMMENDATIONS AND OUTLOOK: Based on knowledge of the heavy metal accumulation in plants, it is possible to select those species of crops and pasturage herbs, which accumulate fewer heavy metals, for food cultivation and fodder for animals; and to select those hyperaccumulation species for extracting heavy metals from soil and water. Studies on the mechanisms and application of hyperaccumulation are necessary in China for developing phytoremediation.  相似文献   

13.
3种浮床植物系统对富营养化水体净化效果研究   总被引:10,自引:3,他引:7  
研究了风车草(Cyperus alternifolius)、菖蒲(Acorus calamus)和富贵竹(Dracaena sanderiana)3种浮床植物系统对富营养化水体净化效果,试验共持续35 d。结果表明,在水温24~30℃条件下,风车草和菖蒲生长良好,生物量大,而富贵竹生长较差,生物量增加少;3种植物对NH_4~+-N的去除率分别为76.8%、85.5%和53.6%,对TN的去除率分别为69.1%、66.2%和54.4%,对TP的去除率分别为76.9%、84.6%和61.5%,对PO_4~(3-)-的去除率分别为91.7%、91.7%和75%,对真实色度有明显的去除效果;3种植物对氮磷和真实色度去除效果与对照之间均达到显著差异(P0.05),自然沉淀是浊度去除的主要原因,植物吸收同化作用是NH_4~+-N去除的主要途径,植物吸收是溶解性磷去除的主要途径。试验表明,风车草和菖蒲对富营养化水体中氮磷和真实色度有较好的去除效果,可作为富营养化水体治理的优良物种而推广使用。  相似文献   

14.
漂浮植物塘协同处理农村分散生活污水研究   总被引:3,自引:1,他引:2  
通过实验考察了漂浮植物塘对经模拟化粪池简易处理的农村分散生活污水的深度净化效果,结果表明:水葫芦、大薸、聚草塘对上述污水均具有良好的净化效果,水葫芦塘对TP的去除效果最好,大薸塘对TN和NH+4-N的去除效果最好。当水力停留时间为20 d时,3种漂浮植物塘的出水污染物含量可低于GB/T 18921-2002观赏性景观环境用水河道类标准。在南方农村宅沟园河内种植漂浮植物是构建农村实用生活污水收集处理系统、控制农村生活污水对河道污染的一种有效措施。  相似文献   

15.
This paper examines potential uses of naturally growing aquatic plants for wastewater purification. These plants enhance the removal of pollutants by consuming part of them in the form of plant nutrients. This applies to urban and agricultural wastewater, in particular, where treatment units of different sizes can be applied at the pollution source. The effectiveness of wastewater purification by different plants was tested on laboratory and pilot scales. The growth rate of the plants was related to the wastewater content in the water. Batch and semicontinuous experiments verified that the plants are capable of decreasing all tested indicators for water quality to levels that permit the use of the purified water for irrigation. This applies to biochemical oxygen demand (BOD), chemical oxygen demand, total suspended solids. pH, and turbidity. In specific cases, the turbidity reached the level of drinking water. Comparison of BOD concentrations with typical levels in water treatment facilities across the country indicates the effectiveness of water purification with plants. A major effect of treatment with plants was elimination of the disturbing smell from the wastewater. It is shown that mixtures of wastewater and polluted water from the Kishon River are amenable in varying degrees to treatment by the plants. The higher the wastewater content in the mixture, the more effective the treatment by the plants. In this context, a scheme for rehabilitation and restoration of the Kishon River is presented and technical and economical aspects of the purification technology are considered.  相似文献   

16.
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   

17.
5种水培植物对富营养化水体的净化能力   总被引:5,自引:0,他引:5  
为了研究水培植物对富营养化水体的净化能力,将莴笋(Lactuca sativa var.angustata)、空心菜(Ipomoeaaquatica)、番茄(Lycopersicon esculentum)、生菜(Lactuca sativa var.ramosa)和黄瓜(Cucumis sativus)5种蔬菜放置于富营养化水体中培养,定期测定水体中总氮和总磷含量的变化。实验结果表明,水培莴笋、空心菜、番茄、生菜和黄瓜对富营养化水体中总氮的去除率分别为66.45%、91.28%、93.74%、93.04%和90.11%;对总磷的去除率分别为96.44%、97.48%、85.62%、88.08%和90.97%。比较5种水培蔬菜单位鲜重的总氮和总磷去除能力,结果表明,生菜的总氮和总磷去除能力最强,分别为0.69 mg/(L.g FW)和0.06 mg/(L.g FW),可作为净化富营养化水体优先选择的植物物种。  相似文献   

18.
实验以扎龙湿地底泥做为介质,模拟表面流湿地系统,研究了不同底质和进水浓度对表面流湿地净化效率及其稳定性的影响。通过对各个指标去除率均值,变异系数和方差的综合分析,表明在本实验设计的高、中、低3种浓度梯度下,高、中浓度进水时,湿地底质的净化效果更好。粘土对TN、NO3--N去除效果最好,粉砂土对NH4+-N、COD去除效果较好。3种底质对磷的去除效果没有显著差异。此外,随着进水浓度的不同,底质因素的影响也发生相应的变化。即粘土和粉砂土的去除率受进水浓度影响大,亚砂土的去除效果相对稳定。实验结果客观反映了扎龙湿地不同底质地段的净化污水功能,为表面流人工湿地净化不同浓度的污水水质和选择最佳净化效果的湿地底质提供理论依据。  相似文献   

19.
影响生物脱氮除磷的因素   总被引:2,自引:0,他引:2  
陈清后 《污染防治技术》2007,20(1):41-42,80
对生物脱氮除磷的基本原理作了简要分析,因其脱氮和除磷受多种因素影响,择其主要影响因素进行综述,以便为工程应用提供依据。  相似文献   

20.

Background, aim, and scope  

Water quality impairment by nutrient enrichment from agricultural activities has been a concern worldwide. Phytoremediation technology using aquatic plants in constructed wetlands and stormwater detention ponds is increasingly applied to remediate eutrophic waters. The objectives of this study were to evaluate the effectiveness and potential of water lettuce (Pistia stratiotes L.) in removing nutrients including nitrogen (N) and phosphorus (P) from stormwater in the constructed water detention systems before it is discharged into the St. Lucie Estuary, an important surface water system in Florida, using phytoremediation technologies.  相似文献   

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