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371.
Surface clogging process modeling of suspended solids during urban stormwater aquifer recharge 总被引:1,自引:0,他引:1
Aquifer recharge,which uses urban stormwater,is an effective technique to control the negative effects of groundwater overexploitation,while clogging problems in infiltration systems remain the key restricting factor in broadening its practice.Quantitative understanding of the clogging process is still very poor.A laboratory study was conducted to understand surface physical clogging processes,with the primary aim of developing a model for predicting suspended solid clogging processes before aquifer recharge projects start.The experiments investigated the clogging characteristics of different suspended solid sizes in recharge water by using a series of one-dimensional fine quartz sand columns.The results showed that the smaller the suspended particles in recharge water,the farther the distance of movement and the larger the scope of clogging in porous media.Clogging extents in fine sand were 1 cm,for suspended particle size ranging from 0.075 to 0.0385 mm,and 2 cm,for particles less than 0.0385 mm.In addition,clogging development occurred more rapidly for smaller suspended solid particles.It took 48,42,and 36 hr respectively,for large-,medium-,and small-sized particles to reach pre-determined clogging standards.An empirical formula and iteration model for the surface clogging evolution process were derived.The verification results obtained from stormwater recharge into fine sand demonstrated that the model could reflect the real laws of the surface clogging process. 相似文献
372.
基于水质模拟的不确定条件下两阶段随机水资源规划模型 总被引:1,自引:0,他引:1
针对流域内不同企业的水资源分配及企业生产污染排放导致的水环境问题,运用区间两阶段随机规划的方法,耦合区间两阶段模型(ITSP)和区间水质模型(IS-P),建立不确定两阶段随机水质-水量耦合规划模型(ITSP-SP).该模型以流域内系统利益最大为目标函数,模拟了流域内各个企业的水量分配及排污过程中河道水质变化,并在保证河流水质达标前提下优化预计分配水量,调整企业生产规模.通过模型运算得到区间解,为管理者提供了多样的决策方案.并且,该模型充分考虑不确定因素对系统利益的影响,能够有效的规避系统决策失误及方案缺失现象. 相似文献
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采用不透光烟度计采集了成都市典型工程机械(挖掘机、装载机、叉车和压路机)排气烟度,研究了机械功率对其活动水平(燃油消耗量和年均工作时间)的影响,同时也研究了机械发动机构造和机械排放标准对其排气烟度的影响;同时,采用氮硫测定仪分析了机械油品硫含量,研究了硫含量对其排气烟度的影响.试验结果表明:机械功率越大的工程机械,燃油消耗量和年均工作时间数越高.成都典型工程机械排气烟度排放水平最低的为装载机,最高的为压路机;同时,超高排放装载机与叉车的占比较高.工程机械排气烟度受机械发动机排量、机械发动机构造、机械发动机排放标准和机械用油的综合影响,通过对工程机械装配电控发动机、提高原机排放标准和使用低硫燃油均能直观反映出机械排气烟度不同程度的改善.此外,油品中硫含量越高,机械排气烟度越大. 相似文献
377.
不同光照条件下浒苔与三种赤潮微藻的竞争 总被引:2,自引:0,他引:2
针对苏北浅滩水体浊度高、营养盐含量大、且被大多数学者认为是南黄海绿潮起源的实际情况,本文通过室内培养实验,研究了不同光照条件(0~4500lx)下浒苔与中肋骨条藻、东海原甲藻和新月菱形藻对营养盐的竞争作用;并与苏北浅滩实际水体光照相结合,评估了浒苔与3种微藻在不同深度下的生理状态.浒苔与微藻的竞争,是决定暴发何种藻华的关键因素之一.结果表明,与3种微藻相比,浒苔对光照的适应性更强,最大日均相对增长率为11.91%/d.微藻与浒苔共培养时,生长情况明显劣于单独培养,中肋骨条藻、东海原甲藻和新月菱形藻的生长抑制率分别为30%~46%,3%~44%,25%~41%,并且不同微藻对竞争作用的响应不同.营养盐监测数据表明,对有限营养盐的争夺是浒苔和微藻竞争作用的主要机制,研究结果为苏北浅滩浒苔绿潮的暴发机制提供了依据. 相似文献
378.
Low organic matter content and high heavy metal levels severely inhibit the anaerobic digestion (AD) of sewage sludge. In this study, the effect of added manganese oxide-modified biochar composite (MBC) on methane production and heavy metal fractionation during sewage sludge AD was examined. The MBC could increase the buffering capacity, enhance the methane production and degradation of intermediate acids, buffer the pH of the culture, and stabilize the sewage sludge AD process. The application of MBC positively impacted methane production and the cumulative methane yield increased up to 121.97%, as compared with the control. The MBC addition can improve metal stabilization in the digestate. An optimum MBC dose of 2.36?g was recommended, which would produce up to 121.1?L/kg volatile solids of methane. After the AD process, even though most of the metals accumulated in the residual solids, they could be transformation from the bio-available fractions to a more stable fraction. The total organic- and sulfide-bound and residual fraction content at a 3?g dose of MBC that is 0.12?g/g dry matter were 51.06% and 35.11% higher than the control, respectively. The results indicated that the application of MBC could improve the performance of AD and promote stabilization of heavy metals in sewage sludge post the AD process. 相似文献
379.
Shengguo Xue Yuzhen Ye Feng Zhu Qiongli Wang Jun Jiang William Hartley 《环境科学学报(英文版)》2019,78(4):276-286
Bauxite residue is a highly alkaline byproduct which is routinely discarded at residue disposal areas. Improving soil formation process to revegetate the special degraded lands is a promising strategy for sustainable management of the refining industry. A laboratory incubation experiment was used to evaluate the effects of gypsum and vermicompost on stable aggregate formation of bauxite residue. Aggregate size distribution was quantified by fractal theory, whilst residue microstructure was determined by scanning electron microscopy and synchrotron-based X-ray micro-computed tomography. Amendments addition increased the content of macro-aggregates( 250 μm) and enhanced aggregate stability of bauxite residue. Following gypsum and vermicompost addition, fractal dimension decreased from 2.84 to 2.77, which indicated a more homogeneous distribution of aggregate particles. Images from scanning electron microscopy and three-dimensional microstructure demonstrated that amendments stimulate the formation of improved structure in residue aggregates. Pore parameters including porosity, pore throat surface area, path length, and path tortuosity increased under amendment additions. Changes in aggregate size distribution and microstructure of bauxite residue indicated that additions of gypsum and vermicompost were beneficial to physical condition of bauxite residue which may enhance the ease of vegetation. 相似文献
380.
Tao M Fengkui Duan Kebin He Yu Qin Dan Tong Guannan Geng Xuyan Liu Hui Li Shuo Yang Siqi Ye Beiyao Xu Qiang Zhang Yongliang Ma 《环境科学学报(英文版)》2019,31(9):8-20
With rapid economic growth and urbanization, the Yangtze River Delta(YRD) region in China has experienced serious air pollution challenges. In this study, we analyzed the air pollution characteristics and their relationship with emissions and meteorology in the YRD region during 2014–2016. In recent years, the concentrations of all air pollutants, except O_3,decreased. Spatially, the PM_(2.5), PM_(10), SO_2, and CO concentrations were higher in the northern YRD region, and NO_2 and O_3 were higher in the central YRD region. Based on the number of non-attainment days(i.e., days with air quality index greater than 100), PM_(2.5) was the largest contributor to air pollution in the YRD region, followed by O_3, PM_(10), and NO_2.However, particulate matter pollution has declined gradually, while O_3 pollution worsened.Meteorological conditions mainly influenced day-to-day variations in pollutant concentrations. PM_(2.5) concentration was inversely related to wind speed, while O_3 concentration was positively correlated with temperature and negatively correlated with relative humidity.The air quality improvement in recent years was mainly attributed to emission reductions.During 2014–2016, PM_(2.5), PM_(10), SO_2, NO_x, CO, NH_3, and volatile organic compound(VOC)emissions in the YRD region were reduced by 26.3%, 29.2%, 32.4%, 8.1%, 15.9%, 4.5%, and0.3%, respectively. Regional transport also contributed to the air pollution. During regional haze periods, pollutants from North China and East China aggravated the pollution in the YRD region. Our findings suggest that emission reduction and regional joint prevention and control helped to improve the air quality in the YRD region. 相似文献