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391.
汞(Hg)是人们持续关注的全球环境污染物之一,其对地下水的污染严重威胁着与地下水相关的生态环境系统.汞在地下水系统中的物理与地球化学反应过程的准确刻画是研究汞迁移转化规律的重点和难点.基于某工业场地汞污染数据,首先采用PHREEQC研究地下水中无机二价汞的存在形态,然后利用PHT3D程序建立汞污染物反应性溶质运移二维剖面模型.该模型考虑了汞污染物在地下水系统中的对流、弥散过程及地球化学反应过程(包括水相络合作用、表面络合吸附作用及受动力学控制的氧化还原作用).结果表明,无机二价汞的存在形态以HgCl2和Hg(OH)Cl占主导地位,氧化还原作用是影响地下水中汞污染反应性运移的主要控制因素;另一方面,水合氧化铁HFO对汞迁移的阻滞影响较小,而溶解性有机质对汞较强的络合作用不能忽视.本文研究成果可为预测与评估特定污染场地地下水汞污染的变化趋势及制定相应的修复策略提供科学依据. 相似文献
392.
光化学烟雾模拟实验系统 总被引:4,自引:2,他引:4
为开展光化学污染成因的敏感性分析,设计和建立了目前国内唯一的大型光化学烟雾模拟实验系统.该系统主要包括烟雾箱系统、空气充填置换系统、采样测试系统和记录显示控制系统等4个分系统.与国内外同类型实验系统相比,该系统具有烟雾箱在实验过程中受光均匀、换气系统快捷、效率高以及可实现两箱对比实验等特色.利用实验系统开展了光化学污染过程的模拟实验,得到了典型的污染特征.进行了同等条件的两箱对比实验,实验结果完全一致,表明该实验系统能够开展基于对比实验的敏感性分析研究,从而为进一步针对北京实际开展光化学污染的模拟研究奠定了良好的基础. 相似文献
393.
Local pollution and the cross-boundary transmission of pollutants between cities have an inevitable impact on the atmosphere. Quantitative assessments of the contribution of transport to pollution in inland and coastal cities are necessary for the implementation of practical, regional, and joint emission control strategies. In this study, the Comprehensive Air Quality Model (CAMx), together with the Weather Research and Forecasting model (WRF), was used to simulate the contributions to pollution of different cities in 2016. The monthly inflow, outflow, and net flux from the ground to the extended layers served as the three main indicators for the analysis of the interactions of PM2.5 transport between adjacent cities. Between inland and coastal cities, the magnitude of inflow and outflow are larger in the former than in the latter. The inflow flux in the inland cities (Beijing and Shijiazhuang) was 10.6 and 10.7 kt/day, respectively, while that in the coastal cities (Tianjin, Shanghai, Hefei, Nanjing, and Hangzhou) was 9.1, 3.3, 5.8, 4.4, and 3.7 kt/day, respectively. In terms of variation over the year, the strongest inflow in the BTH region occurred in April, followed by October, July, and January, while that in the coastal cities in YRD occurred in January, followed by October, April, and July. Therefore, based on the flux intensity calculations and the transport flux pathways, effective joint control measures can be provided with scientific support, and a better understanding of the evolutionary mechanism among inland and coastal cities can be acquired. 相似文献
394.
土壤连续属性空间插值方法及其精度的研究进展 总被引:21,自引:0,他引:21
作为土壤变化的时空定量监测方法,土壤属性空间插值方法及其精度是计量土壤学和"数字土壤"领域的重要研究内容。文章首先介绍了土壤属性空间插值的常用方法,包括克立格插值法(Kriging)、反距离权重法(IDW)、样条插值法(Spline)、贝叶斯最大熵(BME)、地理加权回归(GWR)以及高精度曲面建模方法(HASM);其次阐述了土壤属性空间插值精度验证的方法和指标;再次总结了能够提高土壤属性插值精度的6种途径,包括合理选择插值方法、准确设定插值方法参数、合理设计采样数目和密度、注意空间自相关程度和范围的影响、科学安排实验分析顺序以及结合辅助信息进行插值;最后从插值方法的选择、验证指标的选取以及辅助信息的结合三个方面指出了土壤属性空间插值方法及其精度的未来研究方向。 相似文献
395.
目前国内外已发展了一系列成熟的地下水污染物运移模拟软件,但是软件功能各异,易造成使用者的选择困扰.为满足HJ 610—2016《环境影响评价技术导则地下水环境》(简称“《导则》”)中关于环境影响预测工作精细化的要求,对国内外常用饱和带和包气带污染物运移模拟软件的适宜性进行了评估.首先,针对三款常用饱和带污染物运移模拟软件BIOSCREEN、AT123D和MT3D,基于理想算例对比4组水动力条件设置下的计算结果,分析软件的适宜性;其次,针对《导则》中暂未给出的包气带污染物运移模拟软件,以FEMWATER为例探讨了包气带阻滞作用对于地下水环境影响评价的重要性.结果表明:①BIOSCREEN由于忽略了分子扩散作用,当Pe(Peclet数)为0.25×10-3时,其预测的污染源下游10 m处污染物浓度为AT123D和MT3D计算值的1.8倍,存在高估污染风险的可能.②相比污染源直接设置于潜水面的情景,污染物从距潜水面11 m的地表泄露,经过包气带后污染源强降低了24%,下游85 m处污染物浓度达到0.1 mg/L的时间延迟了390 d.③当地下水流速较慢,分子扩散作用相比对流作用占优势时,适用MT3D开展数值模拟或者采用AT123D进行解析预测;当对流作用占优势且水文地质条件接近解析解假设时,可利用BIOSCREEN粗估污染风险.研究显示,包气带污染物运移模拟软件有助于合理地预测污染物在地下水环境中的运移转化行为,从而更准确地估计污染源强和判定地下水环境污染风险. 相似文献
396.
基于2021年6~8月新乡市市委党校站点观测的挥发性有机物(VOCs)、常规空气污染物和气象参数,采用基于观测的模型(OBM)对臭氧(O3)超标日的O3敏感性和前体物的管控策略进行了研究.结果发现,O3超标日呈现高温、低湿和低压的气象特征.在臭氧超标日,O3及其前体物的浓度均有上升.臭氧超标日的VOCs最高浓度组分为含氧挥发性有机物(OVOCs)和烷烃,臭氧生成潜势(OFP)和·OH反应性最大的VOCs组分为OVOCs.通过相对增量反应性(RIR)分析,新乡6月O3超标日臭氧生成处于VOCs控制区,7月和8月处于VOCs和氮氧化物(NOx)协同控制区,臭氧生成对烯烃和OVOCs最为敏感.6月各前体物的RIR值在一天中会发生变化,但始终保持为VOCs控制区;7月和8月在上午为VOCs控制区,中午为协同控制区,下午分别为协同控制区和NOx控制区.通过模拟不同前体物削减情景,结果表明削减VOCs始终有利于管控臭氧,而削减NOx 相似文献
397.
Wastewater treatment is one of critical issues faced by water utilities, and receives more and more attentions recently. The energy consumption modeling in biochemical wastewater treatment was investigated in the study via a general and robust approach based on Bayesian semi-parametric quantile regression. The dataset was derived from a municipal wastewater treatment plant, where the energy consumption of unit chemical oxygen demand (COD) reduction was the response variable of interest. Via the proposed approach, the comprehensive regression pictures of the energy consumption and truly influencing factors, i.e., the regression relationships at lower, median and higher energy consumption levels were characterized respectively. Meanwhile, the proposals for energy saving in different cases were also facilitated specifically. First, the lower level of energy consumption was closely associated with the temperature of influent wastewater, and the chroma-rich wastewater also showed helpful in the execution of energy saving. Second, at median energy consumption level, the COD-rich wastewater played a determinative role in the reduction of energy consumption, while the higher quality of treated water led to slightly energy intensive. Third, the higher level of energy consumption was most likely to be attributed to the relatively high temperature of wastewater and total nitrogen (TN)-rich wastewater, and both of the factors were preferably to be avoided to alleviate the burden of energy consumption. The study provided an efficient approach to controlling the energy consumption of wastewater treatment in the perspective of statistical regression modeling, and offered valuable suggestions for the future energy saving. 相似文献
398.
Photoactive aluminum doped ZnO(AlZnO) was synthesized by sol-gel method.After that,AlZnO photocatalyst was deposited on five carbon-based materials(CBMs) using ultrasonic route followed by solid-state mixing using ball mill.The CBMs used were poly aniline(PANI),carbon nitride(CN),carbon nanotubes(CNT),graphene(G),and carbon nanofibers(CNF).The crystal phases,elemental compositions,morphological,and optical properties of the AlZnO@CBMs composites were investigated.Experimental results revealed that two of AlZnO@CBMs composites exhibited superior bleaching efficiency(100% removal) and photocatalytic stability(three cycles) for 50 μmol/L Methylene Blue(MB) contaminated water after 60 min irradiation in visible light at pH 6.5,0.7% H_2O_2,and 5 g/L inorganic salts.Under optimum conditions,AlZnO@CBMs nanocomposites were employed for the treatment of mixed dyestuffs composed of MB,Methyl Orange(MO),Astrazone Blue FRR(BB 69),and Rhodamine B(RhB) dyes under dark,ultraviolet,visible,and direct sunlight.For mixed dyestuffs,the AlZnO@G achieved the highest dye sorption capacity(60.91 μmol dye stuffs/g) with kinetic rate 8.22 × 10~(-3) min~(-1) in 90 min via multi-layer physisorption(Freundlich isotherm) on graphene sheet.In additions,AlZnO@CN offered the highest photo-kinetic rate(K_(photo)) of~54.1 × 10~(-3) min~(-1)(93.8% after 60 min) under direct sunlight.Furthermore,the selective radical trapping experiment confirmed that the holes and oxidative superoxide radicals are crucial on dyes photodegradation pathway.Owing to their superior performance,AlZnO@G and AlZnO@CN nanocomposites can offer an effective in-situ solar-assisted adsorption/photocatalytic remediation of textile wastewater effluents. 相似文献
399.
400.
John Doherty John M. Johnston 《Journal of the American Water Resources Association》2003,39(2):251-265
ABSTRACT: The use of a fitted parameter watershed model to address water quantity and quality management issues requires that it be calibrated under a wide range of hydrologic conditions. However, rarely does model calibration result in a unique parameter set. Parameter nonuniqueness can lead to predictive nonuniqueness. The extent of model predictive uncertainty should be investigated if management decisions are to be based on model projections. Using models built for four neighboring watersheds in the Neuse River Basin of North Carolina, the application of the automated parameter optimization software PEST in conjunction with the Hydrologic Simulation Program Fortran (HSPF) is demonstrated. Parameter nonuniqueness is illustrated, and a method is presented for calculating many different sets of parameters, all of which acceptably calibrate a watershed model. A regularization methodology is discussed in which models for similar watersheds can be calibrated simultaneously. Using this method, parameter differences between watershed models can be minimized while maintaining fit between model outputs and field observations. In recognition of the fact that parameter nonuniqueness and predictive uncertainty are inherent to the modeling process, PEST's nonlinear predictive analysis functionality is then used to explore the extent of model predictive uncertainty. 相似文献