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1.
采用实验室模拟研究了以盐碱土壤为基质的不同湿地植物人工湿地系统以及对水中低质量浓度氮和磷的去除效率。实验表明,芦苇系统、香蒲系统、车钱草系统和无植物系统均对水中低质量浓度的N具有净化效果。3种植物系统相比,香蒲系统的净化效果较其他二者较佳,芦苇系统与车钱草的净化效果相当;同时实验也表明4种湿地系统对低质量浓度的P不具有净化效果,随着水力停留时间的增加,系统中的P质量浓度反而会有所增加。  相似文献   

2.
芦苇人工湿地对农村生活污水磷素的去除及途径   总被引:9,自引:0,他引:9  
徐和胜  付融冰  褚衍洋 《生态环境》2007,16(5):1372-1375
构建了芦苇(Phragmites australis)水平潜流人工湿地处理农村生活污水中的磷素,考察了湿地除磷效果以及地上植物吸磷量。结果表明,人工湿地对磷素的去除随水力停留时间的延长而增加,停留时间大于5.3 d时,芦苇湿地除磷效率可以高于88%。湿地进水TP负荷与磷去除速率之间有较好的线性关系(R2>0.91)。湿地植物在11月份收割时,地上生物量为1.65 kg.m-2,芦苇地上部分吸收磷量为3.68 g.m-2.a-1。分析了湿地除磷途径,在试验条件下,湿地填料的吸附和沉淀等作用是水平潜流人工湿地除磷的主要途径,植物吸收仅占湿地总磷去除量的9.1%,但是湿地水生植物是人工湿地重要组成部分,可以通过影响湿地的其他条件间接影响湿地除磷效果。试验证明,人工湿地是适用于农村地区的优良的污水处理技术。  相似文献   

3.
几种植物在生长过程中对人工湿地污水处理效果的影响   总被引:12,自引:0,他引:12  
不同的植物及植物的不同生长阶段对人工湿地系统污水处理效果都有影响。对几种华南地区常见的湿地植物在其不同生长阶段处理污水的效果进行了研究,采用了不种植物的沙滤系统作对照。结果表明:(1)植物生长过程中,植物高度能反映污水处理效果总体上的变化;(2)在植物的生长过程中,各人工湿地系统污水处理能力总体上持续增强,各水质指标pH、DO、TN、NH3-N、NO3-N、TP和CODCr等均呈下降趋势,其中TP和CODCr呈逐步下降,pH、DO、TN、NH3-N、NO3-N则呈现锯齿形波动,但总体上仍是下降过程;(3)植物系统氮处理能力好于无植物沙滤系统,而对磷TP和CODCr的去除则恰好相反;(4)不同植物对人工湿地污水的处理效果影响不明显。研究结果对探讨人工湿地污水处理规律和植物在人工湿地中的作用提供了新的科学依据,并为指导人工湿地工程的运行提供了参考。  相似文献   

4.
研究不同配置的挺水植物组合对河涌污水污染物的净化效果,为在河涌污水治理上构建有效的人工湿地植物处理系统提供依据。选择10种净化能力较强的挺水植物,组成6种不同配置的挺水植物组合,采用无土栽培的方式模拟人工湿地的环境进行静态培养试验,测定出不同水生植物组合及在不同污水的停留时间(HRT)下对河涌污水污染物的去除率。6种不同配置的水生植物组合在HRT为5 d时对NH4+-N、TN、TP、CODCr、BOD5的去除率(平均去除率分别为98.2%、81.2%、91.3%、71.8%、79.4%)均较高;以组合1:香根草Vetiveria zizanioides+风车草Cyperus alternifolius+美人蕉Canna indica+菖蒲Acorus calamus+再力花Thalia dealbata的处理效果为最佳。不同水生植物系统对污水的净化效率取决于HRT,当HRT从1~5 d时,NH4+-N、TN、TP去除率每天的增幅均逐渐增加,当HRT从5~7 d时,NH4+-N、TN、TP去除率每天的增幅却均迅速下降;说明3种不同配置的水生植物系统对河涌污水NH4+-N、TN、TP的净化效率均以HRT为5 d时最高。  相似文献   

5.
研究不同配置的挺水植物组合对河涌污水污染物的净化效果,为在河涌污水治理上构建有效的人工湿地植物处理系统提供依据。选择10种净化能力较强的挺水植物,组成6种不同配置的挺水植物组合,采用无土栽培的方式模拟人工湿地的环境进行静态培养试验,测定出不同水生植物组合及在不同污水的停留时间(HRT)下对河涌污水污染物的去除率。6种不同配置的水生植物组合在HRT为5 d时对NH4+-N、TN、TP、CODCr、BOD5的去除率(平均去除率分别为98.2%、81.2%、91.3%、71.8%、79.4%)均较高;以组合1:香根草Vetiveria zizanioides+风车草Cyperus alternifolius+美人蕉Canna indica+菖蒲Acorus calamus+再力花Thalia dealbata的处理效果为最佳。不同水生植物系统对污水的净化效率取决于HRT,当HRT从1~5 d时,NH4+-N、TN、TP去除率每天的增幅均逐渐增加,当HRT从5~7 d时,NH4+-N、TN、TP去除率每天的增幅却均迅速下降;说明3种不同配置的水生植物系统对河涌污水NH4+-N、TN、TP的净化效率均以HRT为5 d时...  相似文献   

6.
人工湿地对规模化养猪废水处理效果评价   总被引:1,自引:0,他引:1  
为了提高人工湿地对养猪废水中污染物去除效果,针对复合人工湿地存在的地下水污染问题,建立与防渗膜连为一体的复合型人工湿地畜禽养殖废水系统,湿地底层铺设PE防渗膜,选用煤渣、砾石、粗砂作为湿地填料,种植美人蕉(Canna indica)、水芹菜(Oenanthe javanica)、菖蒲(Acorus calamus)、水葱(Scirpus tabernaemontani)、水葫芦(Eichhornia crassipes)湿地植物,考察复合人工湿地运行期间对养猪废水污染物的去除效率,并对温度和系统处理污染物效率的变化进行分析。结果表明:湿地植物在启动初期,对污染物的去除效率较低(NH4+-N、TP和CODCr的去除效率分别为53.6%、61.4%和41.7%),需经过一段时间形成良好的根系结构后,NH4+-N、TP和CODCr的去除能力才会稳定提高;地表流人工湿地植物在气温较高时容易枯死,在高温情况下应设置防晒措施;本研究复合人工湿地处理养猪废水污染物效率在10月达到最高,NH4+-N、TP和CODCr的去除效率分别为98.8%、62.1%和87.1%,湿地后续单元增加曝气能有效处理养猪废水中的NH4+-N;气温变化会影响人工湿地处理NH4+-N、TP和CODCr的效率,气温对NH4+-N和TP去除效果影响明显大于对CODCr去除的影响。该处理系统对养猪废水中的污染物去除效果较好,能够将废水水质提高到理想的水平,可为中小型养猪场构建人工湿地提供理论依据和技术参考。  相似文献   

7.
不同植物人工湿地对污水的净化效果   总被引:4,自引:3,他引:1  
通过对栽种芦苇(Phragmites australis)、香蒲(Typha latifolia)和菖蒲(Acorus calamus)3种植物的潜流人工湿地进行试验研究,分析3种植物对污水的净化效果,及在不同水力停留时间下的变化规律.试验结果表明,在最佳运行条件下,COD、TN、TP的去除率分别在50%、75%和65%以上;3种植物对比可以看出,香蒲的净化效果明显好于芦苇和菖蒲,香蒲对COD、TN、TP的去除率分别达到67.2%、89.7%、88.9%.  相似文献   

8.
人工湿地的磷去除机理   总被引:39,自引:2,他引:39  
卢少勇  金相灿  余刚 《生态环境》2006,15(2):391-396
人类生产和生活所产生的磷负荷导致了全中国范围湖泊的富营养化,控制此磷负荷的廉价而有效的具有非常广阔的应用前景技术是人工湿地技术。人工湿地中的磷的存在形态主要有有机磷(生物态和非生物态的)、磷酸、可溶性磷酸盐和不溶性磷酸盐。文章总结了人工湿地中的磷去除机理,在防渗人工湿地系统中,主要的磷去除机理包括化学作用(如沉淀作用和吸附作用);生物作用(如植物吸收作用和微生物吸收与积累作用)和物理作用(如沉积作用)。在未防渗的人工湿地系统中,湿地系统和周围水体(如地下水)的交换量对湿地的磷去除有重要的影响。通常情况下,物理作用和化学作用是人工湿地中最主要的磷去除途径。人工湿地中微生物对磷的去除作用的大小和其所处环境中的氧状态密切相关,植物吸收对磷的去除作用的大小和收割频率与时期、进水负荷、植物物种和气候条件等有关。  相似文献   

9.
湿地土壤因素对污水处理作用的模拟研究   总被引:37,自引:0,他引:37  
人工湿地是近年来发展较快的污水处理设置,本文用室内模拟的方法研究了湿地土壤在处理生活污水的作用。结果表明,在排除了植物因子的前提下,人工湿地土壤-生生物系统对污水的民人仍具有良好的去除作用。系统不同单位区段对污水中的总有机碳(TOC),总氮(TN)去除率存在差异,在第一个单位区段的处理效率最高,分别达48%和38%,远大于第二、三、四区段,土壤吸收吸附磷的过程中存在着积累现象,土壤磷浓度在第一区段  相似文献   

10.
植物根际是人工湿地通过物理、化学、生物三重协同作用达到污染物去除的重要反应区域,然而关于植物根际土壤酶活性分布及根系分泌物及对人工湿地除污效果的影响目前仍缺乏系统研究。为了明确人工湿地中植物对脱氮的贡献,试验选取当地常见的7种经济耐寒性湿地植物——富贵竹(Dracaena sanderiana)、千屈菜(Spiked loosestrlfe)、美人蕉(Canna indica)、水葱(Scirpus tabernaemotani)、菖蒲(Acorus calamus)、香蒲(Typha angustiolia)、芦苇(Phragmites australis)作为研究对象,考察了不同植物的根际与非根际脲酶活性分布,并探究了植物根系分泌物对土壤脲酶活性及硝化-反硝化作用强度的影响。结果表明:湿地植物根系可以影响脲酶活性,表现为稳定生长的植物根际脲酶活性普遍高于非根际,以美人蕉和香蒲最为显著;不同植物根系对土壤脲酶活性的影响存在差异性,其中,富贵竹、美人蕉和菖蒲根际的脲酶活性接近,且明显高于香蒲、芦苇等其他受试植物;土著微生物对植物植入具有适应期和调整期,使植物对土壤酶活性的刺激效应滞后,表现为植物生长稳定期的脲酶活性平均值基本低于空白样,植物生长迅速期的脲酶活性平均值普遍明显高于空白样,说明植物的存在对土壤脲酶活性具有促进作用;25%的菖蒲根系分泌物对土壤脲酶具有一定程度的促进作用,在培养第25天时达到最佳效果;菖蒲根系分泌物对硝化作用强度有一定的促进作用,但对反硝化作用强度的影响不明显。  相似文献   

11.
牧草轮作对奶牛场污水氮、磷的净化效果研究   总被引:1,自引:0,他引:1  
以土壤为基质,选择象草(Pennisetum purpureum)和黑麦草(Lolium perenne)两种牧草作为植被模拟人工湿地净化系统,研究牧草全年轮作在间歇流人工湿地中对奶牛场高质量浓度污水的适应性及对污水氮、磷的净化效果。结果表明:象草、黑麦草在间歇性高质量浓度污水中生长良好,可作为畜牧场高质量浓度污水修复植物进行全年轮作,并适时的收割,去除污水中的氮、磷。在不同污水质量浓度处理的牧草净化系统中,水力停留时间为8 d的条件下,铵氮的去除率为75.9%~94.9%;硝态氮的去除率为65.4%~90.9%;总氮的去除率64.2%~90.1%;总磷的去除率在90%以上;象草和黑麦草对污水中氮、磷的吸收转化在系统对氮磷净化中的贡献率平均分别为氮25.12%和20.03%、磷31.20%和20.42%;各处理氮、磷的去除效果与污水的质量浓度呈负相关。  相似文献   

12.
Contamination caused by pesticides in agriculture is a source of environmental poor water quality in some of the European Union countries. Without treatment or targeted mitigation, this pollution is diffused in the environment. Pesticides and some metabolites are of increasing concern because of their potential impacts on the environment, wildlife and human health. Within the context of the European Union (EU) water framework directive context to promote low pesticide-input farming and best management practices, the EU LIFE project ArtWET assessed the efficiency of ecological bioengineering methods using different artificial wetland (AW) prototypes throughout Europe. We optimized physical and biological processes to mitigate agricultural nonpoint-source pesticide pollution in artificial wetland ecosystems. Mitigation solutions were implemented at full-scale demonstration and experimental sites. We tested various bioremediation methods at seven experimental sites. These sites involved (1) experimental prototypes, such as vegetated ditches, a forest microcosm and 12 wetland mesocosms, and (2) demonstration prototypes: vegetated ditches, three detention ponds enhanced with technology of constructed wetlands, an outdoor bioreactor and a biomassbed. This set up provides a variety of hydrologic conditions, with some systems permanently flooded and others temporarily flooded. It also allowed to study the processes both in field and controlled conditions. In order to compare the efficiency of the wetlands, mass balances at the inlet and outlet of the artificial wetland will be used, taking into account the partition of the studied compound in water, sediments, plants, and suspended solids. The literature background necessary to harmonize the interdisciplinary work is reviewed here and the theoretical framework regarding pesticide removal mechanisms in artificial wetland is discussed. The development and the implementation of innovative approaches concerning various water quality sampling strategies for pesticide load estimates during flood, specific biological endpoints, innovative bioprocess applied to herbicide and copper mitigation to enhance the pesticide retention time within the artificial wetland, fate and transport using a 2D mixed hybrid finite element model are introduced. These future results will be useful to optimize hydraulic functioning, e.g., pesticide resident time, and biogeochemical conditions, e.g., dissipation, inside the artificial wetlands. Hydraulic retention times are generally too low to allow an optimized adsorption on sediment and organic materials accumulated in artificial wetlands. Absorption by plants is not either effective. The control of the hydraulic design and the use of adsorbing materials can be useful to increase the pesticides residence time and the contact between pesticides and biocatalyzers. Pesticide fluxes can be reduced by 50–80% when hydraulic pathways in artificial wetlands are optimized by increasing ten times the retention time, by recirculation of water, and by deceleration of the flow. Thus, using a bioremediation method should lead to an almost complete disappearance of pesticides pollution. To retain and treat the agricultural nonpoint-source po a major stake for a sustainable development.  相似文献   

13.
陆梅  田昆  张仕艳  莫剑峰  原海红 《生态环境》2010,19(12):2783-2788
采用In-situ野外取样技术与室内实验分析相结合,对不同人为干扰程度下滇西北高原湿地纳帕海土壤酶活性和微生物数量特征进行研究。结果表明:(1)在人为活动干扰下,湿地类型从原生沼泽向沼泽草甸-草甸-垦后湿地逆向演替,F检验显示土壤脲酶、蛋白酶和蔗糖酶活性在各类型湿地间差异显著(F脲酶=14.246,F蛋白酶=13.760,F蔗糖酶=15.392),表现为垦后湿地〉沼泽草甸〉草甸〉原生沼泽,过氧化氢酶活性差异不显著(F过氧化氢酶=2.697),且与上述三种水解酶变化规律不同。(2)F检验显示,土壤细菌数量差异显著(F细菌=10.883),呈现沼泽草甸〉草甸〉垦后湿地〉原生沼泽;土壤真菌与放线菌数量差异显著(F真菌=18.032,F放线菌=15.078),呈现沼泽草甸〉垦后湿地〉草甸〉原生沼泽。(3)回归分析表明,土壤脲酶与过氧化氢酶极显著正相关。在草甸湿地类型中,土壤脲酶、蔗糖酶、蛋白酶间呈显著线性正相关。土壤酶活性虽与微生物数量相性不显著。(4)纳帕海湿地土壤微生物数量与酶活性变化是对人为不同干扰类型与强度的响应。  相似文献   

14.
White clover potted experiments were performed to investigate the effects of seven indigenous arbuscular mycorrhizal fungi (AMF) communities isolated from different test plots subjected to long-term fertilisation on soil enzyme activities, number of soil bacteria and fungi. The results showed that the inoculation of arbuscular mycorrhizal fungi communities increased the mycorrhizal infection rate of the plants and promoted the growth of plants. The Mnp treatment was most effective. The shoot biomass, root biomass, potassium and nitrogen uptake of the white clover in Mnp treatment group were increased by 61.54%, 84.00%, 62.50% and 46.71% respectively, compared with those in non-inoculation treatment. The inoculation of AMF communities had little effect on the number of bacteria in the soil, but significantly increased the number of soil fungi. Mnk treatment group had the highest number of fungi in the soil, which was 9.91 times that of the non-inoculation treatment group. The catalase and dehydrogenase activities were both significantly improved in Mnp treatment by 28.12% and 205.38% respectively, compared with those of the control treatment (-M). The urease, invertase and cellulase activities reached the highest levels in the Mck treatment; they were increased by 142.79%, 41.17% and 77.62% respectively, compared with those of the control treatment. Pearson correlation analysis showed that the soil enzyme activity was not correlated with the mycorrhizal infection rate, but correlated with the spore number of the AMF community. The impact of AMF community on soil quality is important for us to understand the function of the ecosystems. Relevant study provides important guidance for maintaining the balance of the soil-plant system and the development of sustainable agriculture.  相似文献   

15.
黄河三角洲湿地土壤微生物群落结构分析   总被引:5,自引:0,他引:5  
采用末端限制性片段长度多态性分析(T-RFLP)技术和16S rDNA克隆文库的方法,分析了黄河三角洲滨海湿地土壤不同深度细菌和古菌的群落结构.研究表明,随着深度的增加,细菌群落的多样性下降,而古菌群落多样性则有上升的趋势,且土壤的细菌和古菌群落结构都呈现出规律的层状分布.该土壤包括各种硫酸盐还原菌、产甲烷古菌、光合细菌等丰富的细菌和古菌资源.图5参27  相似文献   

16.
人工湿地植物量及其对净化效果影响的研究   总被引:7,自引:0,他引:7  
人工湿地污水处理系统中,植物对污水净化效果起着非常重要的作用,而植物量是植物生长的关键参数之一。为了明确植物量对污水处理效果的影响,在2002—2008年期间,详细测定了芦苇(Ph.australis Trin)、再力花(Thalia dealbata)、荻(M.sacchariflorus)和美人蕉(Canna indica)4种典型湿地植物不同年度的生物量、不同生长阶段的生物量、生物量年产率,以及同期湿地COD、BOD5、TN和TP等的去除率。结果表明:湿地植物在栽植成活、稳定生长以后,至少要再经过1个以上的生长周期才能完全适应湿地环境,达到生物量的最大值,其中芦苇根系和茎叶生物量显著高于其他植物;同种植物的植物量与COD、BOD5、TN去除率呈显著正相关,与TP相关性不强;植物量随生长周期的变化对湿地净化能力的影响显著,确定合理收割期有利于湿地的稳定运行;不同种类植物生物量年产率与各种污染物的去除率均显著相关,芦苇、再力花和美人蕉均具有较高的生物量年产率,污染物去除能力较好。在试验范围内,芦苇湿地的运行稳定性最好,再力花湿地具有最强的脱氮能力,美人蕉湿地能快速形成规模、实现稳定运行,这些为构建不同特点和不同需要的湿地提供了重要参考。  相似文献   

17.
Predicting preferential water flow and solute transport in soils is in the interest of scientists and engineers in the fields of agricultural soil, forest hydrology, soil physics and wastewater treatment by constructed wetland. In artificial wetlands, any preferential pathway induces an insufficient residence time of pollutants in the soil, making an incomplete and unfinished biodegradation process, a wrong evaluation of the hydraulic residence time of the system which would hinder its management in a complete system with several entities of treatment and a non-homogeneous growth of the biofilm in the solid filter mass. This paper is a contribution in tracer experiment data analysis within a horizontal flow constructed wetland built in a storm water basin. A two-dimensional numerical model was used to simulate flow and reactive solute transport. The flow model was successfully calibrated in very dry soil conditions. The adsorption profiles used in the reactive transport modeling are those of five molecules: metolachlor, atrazine, deethylatrazine (DEA), deisopropylatrazine (DIA), and hydroxyatrazine (HA). We show that the adsorption distribution is an internal factor of soil which is responsible to the “preferential” pathway transport in a homogeneous gravel texture. The mean residence time of pollutants within the filter is strongly correlated with the average value of the adsorption coefficient. Moreover, we note a lack of significant impact of the heterogeneity of the medium on the statistical moments of breakthrough curve. It appears that a uni-modal breakthrough curve is not significant to the absence of preferential flow in the medium and at least a two-dimensional display can provide sufficient evidence on the presence or absence of preferential pathways. Finally, using a PLS regression, it is possible to perfectly discriminate the number of peaks of concentration and the asymmetry of the breakthrough curve.  相似文献   

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