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1.
以沈阳浑南垂直流人工湿地模拟系统为研究对象,考察了湿地模拟系统对生活污水的处理效果,重点研究了不同水力负荷的影响。结果表明,垂直流湿地模拟系统对生活污水具有较好的处理效果,出水NH4+-N、TP、CODCr和BOD5均达到了《城镇污水处理厂污染物排放标准》(GB18918-2002)一级A 标准;水力负荷为0.156 t/m2•d时,是垂直流湿地模拟系统运行的最佳负荷。  相似文献   

2.
以美人蕉、芦苇、香蒲、黄色鸢尾、水菖蒲、茭白为供试植物,以河沙和青砂为供试基质,通过模拟不同的人工湿地系统研究了植物生长特征及其人工湿地净化能力的变化.结果表明:与河沙处理相比,河沙+蚯蚓处理和河沙+青砂+蚯蚓处理中美人蕉的株高分别增加了42%和47%,叶长分别增加了36%和49%,株径分别增加了28%和20%;同样地,黄花鸢尾的株高分别增加了33%和23%,叶长分别增加了39%和29%,且水菖蒲的株高分别增加了53%和32%.与河沙处理相比,河沙+蚯蚓处理,河沙+青砂+蚯蚓处理中水菖蒲的SPAD值分别增加了20%和30%,黄花鸢尾的SPAD值分别增加了59%和65%,美人蕉的SPAD值分别增加了18%和11%.与对照人工湿地(CK)相比,人工湿地Ⅰ(河沙+植物)、人工湿地Ⅱ(河沙+植物+蚯蚓)和人工湿地Ⅲ(河沙+青砂+植物+蚯蚓)对COD的去除率分别增加了20%,24%和26%,对TP的去除率分别增加了14%,15%和19%,对NH4-N的去除率分别增加了17%,23%和21%,对TN的去除率分别增加了5%,15%和12%.人工湿地Ⅱ中茭白、芦苇、水菖蒲和黄花鸢尾的密度高于人工湿地Ⅲ.粒径较小的河沙有利于植物的生长和氮的去除,而粒径较大的青砂对磷有较高的去除率.  相似文献   

3.
高炉矿渣基质人工湿地除磷特性研究   总被引:5,自引:0,他引:5       下载免费PDF全文
本文以冶金废物高炉矿渣作为人工湿地基质,研究了其对生活污水中磷的去除效果。等温吸附/解吸实验表明,高炉矿渣的磷素理论饱和吸附量为3333mg•kg-1,是砂子(270mg•kg-1)的12倍左右;高炉矿渣基质的磷吸附解吸率为0.68%,也远小于砂子的7.59%。复合垂直流湿地各基质层对磷的吸附量实验表明,表层基质层磷含量远高于其它层,各基质层磷含量沿水流方向和基质深度呈逐渐降低的趋势;表层添加高炉矿渣的湿地单元,表层基质对磷的吸附效果远高于对照。结果表明,高炉矿渣基质具有较强的磷吸附能力,作为人工湿地基质是可行的,建议根据表层基质磷吸附饱和情况,随着植物的收割适当更换表层基质,延缓湿地的除磷年限。  相似文献   

4.
湿地是人类生存和发展的重要环境之一,然而城镇化在带动经济发展的同时也严重影响了湿地生态系统。本文利用城乡梯度研究方法结合湿地分布特征,设置从沈阳城市中心到城市边缘的研究样带,沿着城镇密集区(浑河)—郊区(蒲河)—乡村(卧龙湖,仙子湖)梯度带选取典型湖泊和河流湿地样地为研究对象,系统分析城镇化对湿地水体碳氮磷含量的影响。研究发现湿地水体碳氮磷含量与城乡梯度具有相关性,总碳(TC)和可溶性有机碳(DOC)含量及SUVA280值沿城镇密集区—郊区—乡村梯度带逐渐增加,即远离市中心的乡村卧龙湖湿地最高,分别为(120.68±2.34)mg/L,(41.56±6.27)mg/L和(0.35±0.10)L/(mg·m),显著高于位于四环以外乡村仙子湖湿地、流经沈阳市四环蒲河和穿越三环浑河湿地水体。湿地水体氮磷含量总体上沿着城乡梯度带呈降低趋势,但蒲河湿地水体总氮(TN)和总磷(TP)含量最高,分别为(5.35±0.19)mg/L和(1.45±0.07)mg/L,显著高于位于城镇密集区的浑河湿地水体。城镇化作用总体上增加了湿地水体铵态氮(NH4+-N)和硝态氮(NO3--N)含量,其中,横穿城镇密集区的浑河湿地水体NH4+-N含量最高,为(1.28±0.14)mg/L;NO3--N含量则是位于郊区的蒲河湿地水体最高,为(1.42±0.15) mg/L。研究结果表明城镇化改变了湿地生态系统水体碳氮磷含量,使水体DOC含量降低,小分子化合物增多,不利于DOC在水体中的累积;同时由于人类活动的加剧也使氮磷排放增加,使水体氮磷超标,导致流经城镇密集区部分的浑河和蒲河湿地NH4+-N和NO3--N含量高于乡村。未来随着城镇化的不断发展,应严加控制和合理规划,防止城镇化导致的湿地水体污染和生态系统的破坏。  相似文献   

5.
研究了废水中不同含盐量对生化处理效果以及生物学变化规律的影响.在废水含盐量低于22 g/L时,废水生化处理系统对COD的去除率可稳定在70%左右,污泥活性良好;随着进水盐浓度的增加,含盐量达到22 g/L时,污泥活性开始受到抑制,COD去除率急剧下降到50%左右;当废水含盐量达到31 g/L时,污泥活性明显受到抑制,污泥絮体开始部分解体,COD去除率下降到40%左右.  相似文献   

6.
为了填补《2006 IPCC国家温室气体清单指南》有关湿地的温室气体排放与吸收清单编制方法学指南的空缺,IPCC于2014年2月底发布了《对2006IPCC国家温室气体清单指南的2013增补:湿地》。该指南在考虑人类活动影响以及对湿地定义进行重新梳理的基础上,给出了湿地排干、还湿的温室气体排放与吸收的估算方法;同时,也增补了滨海湿地、用于污水处理人工湿地的温室气体排放与吸收的估算方法。该指南的发布为清单编制者估算人类活动所导致的湿地温室气体排放与吸收提供了较全面的方法学。当然,受到科学认识水平与文献的限制,该指南在随排水流失的颗粒有机碳损失量的估算、随还湿来自于湿地外其他生态系统有机碳的进入所产生排放量估算等方面存在着需进一步完善的内容。  相似文献   

7.
结合福建省霞浦县广播电视局目莲山转播天线发射塔机房防雷工程的设计、施工经验,针对高土壤电阻率条件下组合地网的防雷效果进行分析,并提出组合地网的泄流均压作用受地网垂直接地体长度、接地连接线长度及其分布参数的影响。在设计、施工中要注意以下三点:主地网垂直接地体埋设长度适当增加可改善雷电流的泄流效果;主地网与辅助地网间的距离应满足最大距离要求;主地网和辅助地网间连接线的使用应考虑分布参数效应。  相似文献   

8.
研究了废水中不同含盐量对生化处理效果以及生物学变化规律的影响。在废水含盐量低于22g/L时,废水生化处理系统对COD的去除率可稳定在70%左右,污泥活性良好;随着进水盐浓度的增加,含盐量达到22g/L时,污泥活性开始受到抑制,COD去除率急剧下降到50%左右;当废水含盐量达到31g/L时,污泥活性明显受到抑制,污泥絮体开始部分解体,COD去除率下降到40%左右。  相似文献   

9.
陆汉城  葛晶晶  钟玮 《湖北气象》2010,29(2):105-110,147
从中尺度组织化深厚湿对流具有强烈的辐散风效应和强垂直运动的观测事实出发,评述了平衡流和非平衡流在对旋转风和辐散风的诊断分析中的作用和不足,介绍了准平衡流的原理、计算方法及其分别在台风暴雨和梅雨锋暴雨诊断研究中的应用。研究结果表明:准平衡流能真实反映涡散共存的大振幅垂直运动特征,暴雨区的垂直环流中有50%~70%归于准平衡流部分,准平衡流可以描述致洪暴雨过程中具有较长生命史组织化过程的深厚湿对流系统中垂直运动的主要部分,准平衡流场具有涡散运动共存的特征,准平衡流分析方法在中尺度深厚湿对流系统诊断研究中具有重要作用。  相似文献   

10.
多普勒雷达产品在人工增雨效果检验中的应用   总被引:5,自引:1,他引:5  
利用多普勒天气雷达提供的垂直积分液态水含量、回波顶高、风暴体积、体积含水量、反射率因子产品,以及回波面积和降水通量等,对2004年6月28日的一次人工防雹作业前后的有关参数变化进行了分析,对作业效果进行了检验。结果表明,云体的相关参数在作业后发生了显著变化,对流发展趋势得到减弱。选取合适的多普勒雷达产品进行综合分析,可以对人工影响天气作业效果进行检验,为建立以新一代天气雷达为基础的人工影响天气效果检验系统提供参考。  相似文献   

11.
以黄河三角洲退化湿地人工引水恢复区为研究对象,采用野外植被调查、土壤采样结合室内实验方法,对植被的种类、密度、盖度、频度和重要值以及土壤含水量、pH值、有机质、全氮以及全磷等指标进行分析,旨在探讨人工引水恢复工程对黄河三角洲退化湿地所产生的生态效应。结果表明:随着水分条件的改善,恢复区植被呈现出正向演替;恢复区土壤含水量明显高于未恢复区,pH值则明显降低,土壤有机质含量高于未恢复区,土壤全氮、全磷含量变化不大。可见,引水恢复工程已经使退化湿地的生态环境得到了一定程度的改善,淡水资源仍是制约退化湿地恢复的关键因素。  相似文献   

12.
Successful adaptation to global environmental change will require confronting multiple unfolding challenges in concert. Coastal regions vulnerable to sea level rise and tropical storms will likely also be influenced by resource limitation in an uncertain future. In this paper, we explore the interrelated dynamics of coastal population migration, economic instability, and anthropogenic phosphorus (P) flows. Accounting for P flows and improving human P use efficiency are critical tasks given the finite global supply of phosphate rock and widespread eutrophication. We use material flow analysis to examine societal P metabolism in the Upper Pontchartrain Basin in coastal Louisiana, USA for two 5-y time periods (2001–2005 and 2006–2010) to capture the effects of fertilizer economics and population growth partially driven by the impact of Hurricane Katrina in the lower basin in 2005. Mass balances encompass human-mediated P fluxes in food production and consumption subsystems across agricultural, developed, and forested landscapes. Drastic reductions in locally purchased inorganic P fertilizer (78% decline between periods) were correlated to increases in fertilizer prices. Total P input to the study region decreased from 5452 to 3268 Mg P y−1 between periods. Changes in P flows were primarily driven by fertilizer economics, declining dairy production, and the influx of new residents, which has been characterized by decentralized settlement that limits P recycling. Societal P metabolic efficiency increased from 22% to 32% due largely to reduced fertilizer inputs. Leakage to the Pontchartrain Estuary and the Mississippi River represented 17–23% of total system P input, while the vast majority of P accumulated within soils, wastewater systems, and landfills. We discuss basin trends and management implications. A historic opportunity exists to encourage future coastal development characterized by synergies between local agriculture and human habitation to promote energy efficient nutrient recycling. The effect would be a decreased vulnerability to future fertilizer price spikes, along with the mitigation of current and future eutrophication.  相似文献   

13.
Prediction of the effects of external influences such as climate change on wetland systems requires the prediction of hydrologic effects. Because wetland soils are typically heterogeneous, it is particularly important to understand the extent and connectedness of hydraulically conductive soil units, since water flow may be concentrated in such units while bypassing others of lower conductivity. However, subsurface hydrologic models typically do not represent heterogeneity adequately, being limited by sparse parameterization of soil properties. Conventional techniques for mapping units of soil within wetlands are highly laborious, requiring soil coring and laboratory testing. As an alternative, we developed a portable piezocone driver and highly sensitive piezocone designed to map wetland soil units with centimeter-scale resolution in the vertical and meter-scale resolution in the horizontal dimension. This system successfully delineated several different layers of peat, sand, and limnetic sediments, and their degree of interconnectedness in an eight-meter-thick peat deposit. Monitoring of wetland response to precipitation, changes in stream stage, and overbank flooding was then used in conjunction with the piezocone data and a two-dimensional flow model to constrain the hydraulic properties of the soil units. Thus parameterized, a standard subsurface flow model was able to realistically simulate a variety of hydrologic processes relevant to climate change, including wetland-stream water exchange, the movement of wetland porewaters to the root zone of plants, and wetland desaturation under dry conditions.  相似文献   

14.
Assessing phosphate rock depletion and phosphorus recycling options   总被引:1,自引:0,他引:1  
We analyze global elemental phosphorus flows in 2009 for (1) mining to products, (2) animal and human manure flows, (3) crop harvests and animal production, (4) food production, (5) soil erosion, (6) and crop uptake. Informed by the flow assessment the potential and cost of phosphorus usage reduction and recycling measures are quantified, and fed into a constructed phosphorus supply-demand model with reserve assessment to assess the impact of these measures on phosphate rock resource availability. According to our results in 2009 globally 21.4 Mt elemental phosphorus from rock phosphate was consumed in products of which 17.6 Mt used as fertilizers, fully able to cover erosion losses and outputs in agriculture in aggregate, but insufficient from the perspective of bio-available phosphorus in soils. We find substantial scope for phosphorus use reduction, at potentially 6.9 Mt phosphorus, or 32% of 2009 phosphate rock supply. Another 6.1 Mt, or 28% can technologically be recycled from waterways and wastewater, but at a cost substantially above any foreseeable phosphate rock fertilizer price. The model results suggests phosphate rock reserves are sufficient to meet demand into the 22nd century, and can be extended well into the 23rd century with assessed use reduction and recycling measures.  相似文献   

15.
通过求取定常线性准地转位涡模式的解析解,研究了感热加热强迫所激发的副热带定常波的结构特征,讨论了基本流、牛顿冷却及地面摩擦等对定常波振幅和位相的影响。结果表明,东风时定常波在垂直方向上表现为上、下层反位相的第一斜压结构,且地面系统远强于中高层;西风时定常波呈现出向上的传播特征,在高层,随着风速增大振幅随高度的升高有增大趋势。在近地层,东风时气旋(反气旋)主体位于加热西(东)侧;西风时气旋(反气旋)主体位于加热东(西)侧,近地层以上相反。此外,发现东、西风基本流的作用具有对称特征,这与潜热加热显著不同。研究结果还表明,牛顿冷却对定常波有重要影响,基本流越弱影响越显著。在静止大气中,感热加热强迫下无斯韦尔德鲁普(Sverdrup)解,考虑牛顿冷却时,感热强迫在热源范围内的近地层和中高层分别激发出气旋式和反气旋式环流,气旋中心位于加热中心略偏西的位置。在非静止大气中,牛顿冷却项使地面系统中心向上风方向移动,东风时向东移。牛顿冷却对高、低层系统均有削弱作用。地面摩擦则明显不同,它总会使低层系统减弱,高层系统增强。  相似文献   

16.
Surface Heterogeneity and Vertical Structure of the Boundary Layer   总被引:7,自引:3,他引:4  
  相似文献   

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