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81.
Water quality in rivers is vital to humans and to maintenance of biotic and ecological integrity. During the Four Major Rivers restoration of South Korea, remarkable attempts have been made to decrease external nutrient loads and moveable weirs were designed to discharge silt that may deposit in pools. However, recently eutrophication of the Nakdong River, which was limited to the lower reaches, is seen to be spreading upstream. The reduction of external nutrient loads to rivers is a long-term goal that is unlikely to lead to reductions in algal blooms for many years because of the time required to implement effective land management strategies. It would therefore be desirable to implement complementary strategies. Regulating the amount of water released is effective at preventing algae blooms in weir pools; so, the relationship between discharge, stratification and bloom formation should be understood in this regard. However, pollutants are likely to accumulate in the riverbed upstream from release points. Thus, to control phosphorus levels, total phosphorus density should be lowered by applying in-river techniques as well. As many ecosystem properties are controlled by multiple processes, simultaneous river bottom improvement techniques, such as combined dissolved oxygen supply and nutrient inactivation, are likely to be effective. The purpose of this review is to present a series of technological approaches that can be used to improve the river bottom area and hence sediment nutrient release, and to illustrate the application of these techniques to the Nakdong River.  相似文献   
82.
Expansion of irrigation in the Yellow River (Huang He in Chinese) Basin of China is a major accomplishment of the post-revolutionary period in China. Irrigation reliance on the Yellow River was anticipated to not only supply greater reliability of water for crops, but also to improve the productivity of aeolian, saline and alkali soils because of the high sediment loads in the river. Irrigation expansion also was a significant factor in affecting human modification of the landscape ecosystem in the lower reaches of the Yellow River. Based on field investigation and sampling of the amount and distribution of used suspended sediment load in irrigated areas, this paper analyzes the impact of the suspended sediment on soil texture, fertility and salinity and the consequences to the landscape ecosystem. Results indicate that soil quality has indeed been improved through irrigation and related deposition of sediment, but some local problems created by long periods of irrigation should not be ignored in the future.  相似文献   
83.
为探究高原型水库上游流域的污染负荷来源及其贡献率,并计算水库的水环境容量,以云南高原柴石滩水库为研究对象,应用排污系数法估算了水库上游流域污染来源,运用水文和水质同步监测资料计算入库污染负荷,采用富营养化模型核算了不同水质目标情景下水库TN和TP的最大容量.结果表明:(1)柴石滩水库及其以上流域主要特征污染物为TN和TP;(2)水库上游流域的COD和TP主要来源于农村面源污染,贡献率分别为49.40%和50.11%; NH+4-N和TN主要来源于城镇生活污染,贡献率分别为45.76%和33.77%;农村面源污染贡献中,陆良县COD和TP贡献率最大,分别为34.82%和36.82%;城镇生活污染贡献中,麒麟区COD、 NH+4-N、 TN和TP贡献率最大,均高达65%.(3)COD、 NH+4-N、 TN和TP污染负荷入河量分别为28 050.90、2 465.16、4 680.54和870.93 t·a-1,TN和TP污染负荷入库量分...  相似文献   
84.
Federal agencies of several nations have or are currently developing guidelines for critical forest soil acid loads. These guidelines are used to establish regulations designed to maintain atmospheric acid inputs below levels shown to damage forests and streams. Traditionally, when the critical soil acid load exceeds the amount of acid that the ecosystem can absorb, it is believed to potentially impair forest health. The excess over the critical soil acid load is termed the exceedance, and the larger the exceedance, the greater the risk of ecosystem damage. This definition of critical soil acid load applies to exposure of the soil to a single, long-term pollutant (i.e., acidic deposition). However, ecosystems can be simultaneously under multiple ecosystem stresses and a single critical soil acid load level may not accurately reflect ecosystem health risk when subjected to multiple, episodic environmental stress. For example, the Appalachian Mountains of western North Carolina receive some of the highest rates of acidic deposition in the eastern United States, but these levels are considered to be below the critical acid load (CAL) that would cause forest damage. However, the area experienced a moderate three-year drought from 1999 to 2002, and in 2001 red spruce (Picea rubens Sarg.) trees in the area began to die in large numbers. The initial survey indicated that the affected trees were killed by the southern pine beetle (Dendroctonus frontalis Zimm.). This insect is not normally successful at colonizing these tree species because the trees produce large amounts of oleoresin that exclude the boring beetles. Subsequent investigations revealed that long-term acid deposition may have altered red spruce forest structure and function. There is some evidence that elevated acid deposition (particularly nitrogen) reduced tree water uptake potential, oleoresin production, and caused the trees to become more susceptible to insect colonization during the drought period. While the ecosystem was not in exceedance of the CAL, long-term nitrogen deposition pre-disposed the forest to other ecological stress. In combination, insects, drought, and nitrogen ultimately combined to cause the observed forest mortality. If any one of these factors were not present, the trees would likely not have died. This paper presents a conceptual framework of the ecosystem consequences of these interactions as well as limited plot level data to support this concept. Future assessments of the use of CAL studies need to account for multiple stress impacts to better understand ecosystem response.  相似文献   
85.
广州西塔节点层系采用大直径体外预应力拉索直接对钢管柱施加楼层平面内方向的体外预应力.选取3根φ7×199的预应力锚具组装件进行了50次周期荷载试验及静载锚同性能足尺试验.采用两台YC-1350型液压千斤顶同步顶推箱梁对预应力试验索进行张拉,测定拉索的周期载荷性能、静载锚同性能、拉伸弹性模量以及极限拉力时的总应变和锚杯与锚板间相对位移,考核锚具拉伸时锚固情况、拉伸过程及卸载后锚具的变形情况.结果表明,经过50次循环加载后试验索均无断丝,破断荷载超过12151kN,其他各项指标也均符合要求,因而能保证广州西塔体外预应力设计的安全性.  相似文献   
86.
Lake Fuxian is the largest deep freshwater lake in China. Although its average water quality meets Class I of the China National Water Quality Standard (CNWQS), i.e., GB3838-2002, monitoring data indicate that the water quality approaches the Class II threshold in some areas. Thus it is urgent to reduce the watershed load through the total maximum daily load (TMDL) program. A three-dimensional hydrodynamic and water quality model was developed for Lake Fuxian, simulating flow circulation and pollutant fate and transport. The model development process consists of several steps, including grid generation, initial and boundary condition configurations, and model calibration processes. The model accurately reproduced the observed water surface elevation, spatiotemporal variations in temperature, and total nitrogen (TN), total phosphorus (TP), and chemical oxygen demand (COD) concentrations, suggesting a reasonable numerical representation of the prototype system for further TMDL analyses. The TMDL was calculated using two interpretations of the water quality standards for Class I of the CNWQS based on the maximum instantaneous surface and annual average surface water concentrations. Analysis of the first scenario indicated that the TN, TP and COD loads should be reduced by 66%, 68% and 57%, respectively. Water quality was the highest priority; however, local economic development and cost feasibility for load reduction can pose significant issues. In the second interpretation, the model results showed that, under the existing conditions, the average water quality meets the Class I standard and therefore load reduction is unnecessary. Future studies are needed to conduct risk and cost assessments for realistic decision-making.  相似文献   
87.
在室温下,采用R1、R2、R3三组相同的SBR反应器接种污水厂回流污泥,比较了添加好氧颗粒、除磷颗粒对亚硝化颗粒污泥启动及稳定运行的影响.结果表明,在S1(0~22 d)阶段,R1、R2、R3均用了19 d启动亚硝化.在S2阶段(23~56d),R1不添加颗粒污泥,R2、R3分别添加20%好氧颗粒和20%除磷颗粒诱导亚硝化絮状污泥颗粒化,R1、R2和R3分别在76、42 d和56 d平均粒径达到412、468、400μm,均成功实现颗粒化.在S3阶段(57~108 d),进水氨氮负荷和COD负荷分别由0.4 kg·(m~3·d)~(-1)提高到0.5 kg·(m~3·d)~(-1)和0.2 kg·(m~3·d)~(-1)提高到0.5 kg·(m~3·d)~(-1),R1、R2反应器中颗粒粒径增加明显,但R3发生了污泥膨胀.在运行末期(108 d),R1和R2的平均粒径分别达到689μm和893μm.接种好氧颗粒和除磷颗粒均能快速实现亚硝化污泥的颗粒化,并且接种好氧颗粒的亚硝化颗粒污泥系统能适应较高C/N比进水,耐冲击负荷,能长期稳定运行.  相似文献   
88.
为了分析径流下渗系统在径流削减和污染控制方面的性能,本文对一个高速公路路面雨水径流下渗系统性进行了监测.结果表明,降雨量、径流量、径流削减量和径流排放量之间存在明显的正相关性(r=0.82~0.97,p0.05).该系统表现出高效的径流削减能力,当降雨量小于20 mm时,可以削减70%以上的径流量.与径流削减相比,该系统在污染物负荷控制方面更为有效.当降雨量在0~10 mm之间时,污染负荷的削减率几乎为100%;而当降雨在10~20 mm之间时,污染负荷的削减率仍然可以超过60%.相对总氮(TN)和总磷(TP)而言,下渗系统对悬浮物(SS)和化学需氧量(COD_(Cr))的去除能力要更高、更稳定.研究表明,径流下渗系统作为雨水管理的工具,在径流削减和改善水质方面具有良好的性能.  相似文献   
89.
高有机负荷冲击对填料型MBR运行性能的影响   总被引:1,自引:0,他引:1  
针对分散式农村生活污水有机负荷变化明显的特点,研究了填料型厌氧-缺氧-好氧膜生物反应器(A2O-MBR)抗高有机负荷的能力,考察了高有机负荷冲击对污染物去除效果、悬浮和附着污泥性质以及膜污染的影响.结果表明,高负荷冲击期间污染物去除稳定,氨氮去除率在冲击第3d从99.1%下降到78.5%,出水氨氮浓度高于5mg/L,随后去除率恢复至97.6%;悬浮和附着微生物的三磷酸腺苷(ATP)含量增加;附着生物量显著增加;细胞外聚合物(EPS)增加;高有机负荷冲击期间膜污染更严重,膜面污染层EPS含量显著增加;太阳能微动力A2O-MBR系统能减少10%的碳排放.  相似文献   
90.
针对垃圾渗滤液中ρ(NH3-N)较高、可生化性较差、处理困难的问题,以老龄垃圾渗滤液为研究对象,探讨了改良SRIS(土地快速渗滤系统)对NH3-N的处理效果与最高处理负荷量,同时分析了系统不同深度的ρ(NH3-N)的变化,并利用高通量测序技术分析了进水前、后系统中的微生物群落演替情况.结果表明:①在进水ρ(NH3-N)为125 mg/L左右、水力负荷为0.11 m3/(m2·d)、进水频率为1次/d下,垃圾渗滤液经改良SRIS的一级、二级渗滤柱处理后出水ρ(NH3-N)平均值为3 mg/L,NH3-N去除率在97.5%以上;提高水力负荷为0.22 m3/(m2·d)后,NH3-N去除率为87.27%;进水频率改为2次/d,NH3-N去除率达到96.17%.②改良SRIS的一级、二级渗滤柱所能处理的最高NH3-N去除量分别为200和110 mg/L,并且主要在下层和底层部分发生去除.③改良SRIS中下层微生物群落多样性最为丰富,微生物群落以变形菌门(Proteobacteria)为主,在属水平下微小杆菌属(Exiguobacterium)相对丰度最高,同时还存在多种有利于NH3-N去除的硝化、反硝化细菌以及浮霉菌,为NH3-N的去除提供了保障.研究显示,改良SRIS对垃圾渗滤液中NH3-N具有良好的去除效果,可为老龄垃圾渗滤液的有效处理提供借鉴.   相似文献   
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