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551.
为研究以多溴联苯醚(PBDEs)为代表的含卤半挥发性有机物(SVOCs)在室内空气中的扩散特性,在对杭州室内环境(办公室、居室)空气中PDBEs14种单体浓度检测的基础上,分析比较了不同污染源材料中PBDEs的含量,测定了材料PBDEs挥发强度系数;探究了典型污染源材料中PBDEs释放的影响因素及其相关性.结果表明,杭州室内环境空气颗粒相和气相中PBDEs平均浓度为427.26和416.46pg/m3,其中颗粒相和气相中主要特征单体均为BDE-209.所选取的9种室内常用材料的PBDEs挥发强度系数大小依次为:地毯>电线>塑料板>阻燃布>电路板>防烫桌布>保温棉>自粘墙纸>绝缘胶带.对比不同材料中各PBDEs同系组的含量:绝缘胶带、塑料板、防烫桌布、阻燃布中十溴二苯醚(deca-BDEs)的占比最高,分别为81.33%、63.83%、27.3%和34.1%;电线中四溴二苯醚(tetra-BDEs)的占比最高,为29.83%;自粘墙纸、电路板、地毯、保温棉中五溴二苯醚(penta-BDEs)的占比最高,分别为35.82%、41.25%、45.75%和38.64%.典型污染源材料中PBDEs释放的影响因素实验结果表明,环境模拟舱中的PBDEs总浓度与温度和封闭时间对数均呈显著正相关,相关系数r和显著水平P分别为r=0.811,p<0.05和r=0.883,p<0.05,且封闭时间对源释放PBDEs总浓度的影响比温度稍大.同时,污染源特征因素(材料中PBDEs的固有含量与PBDEs挥发强度系数)对源释放的影响程度比环境因素(温度和封闭时间)大.  相似文献   
552.
为提高分子筛吸附氨氮的能力,采用碱蚀法对4种不同硅铝比ZSM5型分子筛进行脱硅处理,对比了脱硅前后吸附氨氮性能的差异;结合X射线衍射、扫描电镜等分析手段观察了其孔隙与晶体结构、表面形貌的变化,同时借助X射线荧光光谱、傅里叶红外光谱等表征手段分析了其内部元素组成与骨架基团的变化;考察了分子筛脱硅处理对改善其吸附氨氮性能的影响机制.结果表明,分子筛经脱硅后氨氮吸附量大幅提高,硅铝比越大吸附氨氮性能改善越显著,其中,硅铝比最小的ZSM5-27型分子筛脱硅后的氨氮平衡吸附量由5.81mg/g上升至10.44mg/g,上升幅度亦达79.7%;碱蚀脱硅处理有效降低了ZSM5型分子筛的硅铝比,分子筛硅铝比越大降低越显著.分子筛脱硅后,其介孔比表面积与比孔容增加、孔径分布变得宽泛;晶体结构仍保持完整、晶粒形态变得更加清晰规整;离子交换容量增加、硅/铝氧四面体结构单元作用增强.碱蚀法对ZSM5型分子筛具有骨架脱硅补铝、疏通孔道等多重作用,脱硅后分子筛活性位点增加、氨离子扩散阻力下降,吸附性能得到改善.  相似文献   
553.
A pilot-scale multilevel contact oxidation reactors system, coupled with saran lock carriers,was applied for the treatment of poultry farm wastewater. The removal efficiencies of CODcr, ammonia, and the total nitrogen as well as the elimination performance of CODcr and total nitrogen along the three-level contact oxidation tanks under six designed operational models were investigated. Based on the performance of the nitrogen removal of the saran lock carriers and the distribution of anoxic–aerobic interspace under the suitable operation model, the mechanism of nitrogen removal of the system was also explored. The results revealed that the intermittent aeration under parallel model is the most suitable operation model, while the removal efficiencies of CODcr, ammonia, and the total nitrogen were 86.86%, 84.04%, and 80.96%, respectively. The effluent concentration of CODcr,ammonia, and the total nitrogen were 55.6 mg/L, 8.3 mg/L, and 12.0 mg/L, which satisfy both the discharge standard of pollutants for livestock and poultry breeding industry(GB18596–2001) and the first grade of the integrated wastewater discharge standard(GB 8978–1996). Moreover, the mechanism for the nitrogen removal should be attributed to the plenty of anoxic–aerobic interspaces of the biofilm and the three-dimensional spiral structure of the saran lock carriers, where the oxygen-deficient distribution was suitable for the happening of the simultaneous nitrification and denitrification process. Therefore, the multilevel contact oxidation tanks system is an effective pathway for the treatment of the poultry farm wastewater on the strength of a suitable operation model and novel carriers.  相似文献   
554.
High nitrate(NO_3~-)loading in water bodies is a crucial factor inducing the eutrophication of lakes.We tried to enhance NO_3~-reduction in overlying water by coupling sediment microbial fuel cells(SMFCs)with submerged aquatic plant Ceratophyllum demersum.A comparative study was conducted by setting four treatments:open-circuit SMFC(Control),closed-circuit SMFC(SMFC-c),open-circuit SMFC with C.demersum(Plant),and closed-circuit SMFC with C.demersum(P-SMFC-c).The electrochemical parameters were documented to illustrate the bio-electrochemical characteristics of SMFC-c and P-SMFC-c.Removal pathways of NO_3~- in different treatments were studied by adding quantitative~(15)NO_3~- to water column.The results showed that the cathodic reaction in SMFC-c was mainly catalyzed by aerobic organisms attached on the cathode,including algae,Pseudomonas,Bacillus,and Albidiferax.The oxygen secreted by plants significantly improved the power generation of SMFC-c.Both electrogenesis and plants enhanced the complete removal of NO_3~- from the sediment–water system.The complete removal rates of added~(15)N increased by 17.6% and 10.2% for SMFC-c and plant,respectively,when compared with control at the end of experiment.The electrochemical/heterotrophic and aerobic denitrification on cathodes mainly drove the higher reduction of NO_3~- in SMFC-c and plant,respectively.The coexistence of electrogenesis and plants further increased the complete removal of NO_3~- with a rate of 23.1%.The heterotrophic and aerobic denitrifications were simultaneously promoted with a highest abundance of Flavobacterium,Bacillus,Geobacter,Pseudomonas,Rhodobacter,and Arenimonas on the cathode.  相似文献   
555.
Traffic vehicles, many of which are powered by port fuel injection (PFI) engines, are major sources of particulate matter in the urban atmosphere. We studied particles from the emission of a commercial PFI-engine vehicle when it was running under the states of cold start, hot start, hot stabilized running, idle and acceleration, using a transmission electron microscope and an energy-dispersive X-ray detector. Results showed that the particles were mainly composed of organic, soot, and Ca-rich particles, with a small amount of S-rich and metal-containing particles, and displayed a unimodal size distribution with the peak at 600?nm. The emissions were highest under the cold start running state, followed by the hot start, hot stabilized, acceleration, and idle running states. Organic particles under the hot start and hot stabilized running states were higher than those of other running states. Soot particles were highest under the cold start running state. Under the idle running state, the relative number fraction of Ca-rich particles was high although their absolute number was low. These results indicate that PFI-engine vehicles emit substantial primary particles, which favor the formation of secondary aerosols via providing reaction sites and reaction catalysts, as well as supplying soot, organic, mineral and metal particles in the size range of the accumulation mode. In addition, the contents of Ca, P, and Zn in organic particles may serve as fingerprints for source apportionment of particles from PFI-engine vehicles.  相似文献   
556.
Simultaneous and continuous measurements of visibility, meteorological parameters and air pollutants were carried out at a suburban site in Ningbo from June 1, 2013 to May 31,2015. The characteristics of visibility and their relationships with air pollutants and meteorological factors were investigated using multiple statistical methods. Daily visibility ranged from 0.6 to 34.1 km, with a mean value of 11.8 km. During the 2-year experiment,43.4% of daily visibility was found to be less than 10.0 km and only 9.2% was greater than 20.0 km. Visibility was lower in winter with a frequency of 53.4% in the range of 0.0–5.0 km.Annual visibility had an obvious diurnal variation, with the lowest and highest visibility being 7.5 km at approximately 06:00 local time and 15.6 km at approximately 14:00 local time, respectively. Multiple correspondence analysis(MCA) indicated that the different ranges of visibility were significantly affected by different levels of pollutants and meteorological conditions. Based on the analyses, visibility was found to be an exponential function of PM_(2.5) concentrations within a certain range of relative humidity. Thus, nonlinear models combining multiple linear regressions with exponential regression were subsequently developed using the data collected from June 2014 to May 2015, and the data from June 2013 to May 2014 was used to evaluate the performance of the model. It was demonstrated that the derived models can quantitatively describe the relationships between visibility, air quality and meteorological parameters in Ningbo.  相似文献   
557.
在缺氧/好氧/好氧串联运行的移动床生物膜反应器(MBBR)系统中考察了温度和好氧反应器中溶解氧(DO)水平对生物膜硝化和反硝化过程氮素去除的影响,并通过高通量测序技术探究温度和DO的变化造成的MBBR系统中脱氮功能菌群结构的差异,从而在微观水平解释硝化和反硝化受温度和DO影响的生物学机理.结果表明,系统温度的升高可以同时强化生物膜硝化和反硝化过程,且好氧反应器中DO水平的提高对硝化过程有利,从而提高系统的脱氮效果.本研究中,在系统连续运行阶段,当系统温度和好氧O1反应器的DO浓度为本研究范围内的最高水平时(即温度=20~22℃、DO=5~8mg O2/L),比硝化负荷可达1.60g NH4+-N/(m2·d)以上,而相同温度范围内比反硝化负荷可高达2.84g NO3--N/(m2·d),从而使MBBR系统在该工况条件下获得了最佳的NH4+-N和TN去除率(分别达到了98.7%和85.7%).温度和DO影响硝化和反硝化的根本原因是温度和DO变化引起了脱氮功能菌群数量和群落结构的改变:当好氧反应器的DO水平下降时,硝化功能细菌的OTUs比例显著降低,尤其是异养硝化细菌的生长受到了严重的抑制;而温度的变化对反硝化细菌的影响主要体现在群落结构的变化.  相似文献   
558.
喷灌和沟灌方式对农田土壤NH3挥发的影响   总被引:1,自引:0,他引:1  
研究了2016和2017年传统灌溉(沟灌)和节水灌溉(喷灌)方式氨(NH3)挥发的季节年际动态变化特征及其影响因素.采用通气法进行原位监测,分析了土壤温度、体积含水量、铵态氮(NH4+-N)、硝态氮(NO3--N)以及气温降水等因素对NH3挥发的影响.结果表明,NH3挥发速率的峰值出现在施用氮肥后1~2周,喷灌有效降低NH3挥发峰值,喷灌和沟灌的NH3挥发速率峰值在2016年分别为2.67kg/(hm2·d)和11.11kg/(hm2·d),2017年分别为2.42kg/(hm2·d)和11.73kg/(hm2·d);马铃薯生长季NH3挥发存在明显的季节变化,挥发高峰主要发生在7~8月,追肥期高于基肥期.2016~2017年农田土壤NH3累积挥发量均表现为喷灌<沟灌,与沟灌相比,喷灌分别减少58.15%和43.55%.NH3挥发速率与土壤温度呈显著正相关(P<0.05),与体积含水量、NH4+-N、NO3--N浓度呈极显著正相关(P<0.01).  相似文献   
559.
大气颗粒物氧化潜势(Oxidative potential)常用于表征颗粒物对人体健康的影响.二硫苏糖醇(DTT)法是近年发展的一种测定颗粒物氧化潜势的方法,本研究改进了该方法的颗粒物提取方式和反应流程,并开展了广州市区PM2.5氧化潜势(DTTm&DTTv)的测量.结果表明,广州市区2018年1月和4月PM2.5的DTTm值分别为(13.47±3.86),(14.66±4.49)pmol/(min·μg),DTTv值分别为(4.67±1.06),(4.45±1.02)nmol/(min·m3),与国内外研究结果相当.DTTv与PM2.5质量浓度、OC、EC、BC具有较强的相关性,但DTTm与以上参数相关性低,说明含碳组分不是广州市PM2.5氧化潜势的主要贡献者.  相似文献   
560.
国土空间规划“三条控制线”划定的沈阳实践与优化探索   总被引:1,自引:0,他引:1  
张年国  王娜  殷健 《自然资源学报》2019,34(10):2175-2185
国务院机构改革前,生态保护红线、永久基本农田、城镇开发边界三条控制线分别由国家不同部委主导划定,存在划定过程统筹协同不够、划定结果交叉重叠、实施管理困难等问题。国务院机构改革后,自然资源部负责建立国土空间规划体系,要求在资源环境城镇能力和国土空间开发适宜性评价基础上,自上而下逐级统筹划定落实三条控制线。本文总结了沈阳作为试点城市,在三条控制线划定中的矛盾冲突表现与成因,构建三条控制线与生态、农业、城镇三大空间关系,建立管控体系与调整规则,并阐释在市级权限范围内的调整优化做法。研究发现:三条控制线存在空间交叉重叠、功能难以区分的现象,主要是因为基本农田承担了限制城市空间蔓延的使命,指标不允许跨行政区调整导致部分基本农田不得不安排到城镇内部;由于概念界定不同导致部分城市公园被划入生态保护红线;生态保护红线内的部分耕地被先期划为永久基本农田。提出国土空间规划背景下三条控制线优化建议:一是突出既是政策线又是技术线的特征,自上而下和自下而上相结合划定;二是国家自上而下对基本农田调整政策和制度进行创新;三是建立事权分级管理机制,合理预留地方事权弹性。  相似文献   
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