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91.
An organo-montmorillonite-supported nanoscale zero-valent iron material(M-NZVI) was synthesized to degrade decabromodiphenyl ether(BDE-209). The results showed that nanoscale zero-valent iron had good dispersion on organo-montmorillonite and was present as a core-shell structure with a particle size range of nanoscale iron between 30–90 nm, characterized by XRD, SEM, TEM, XRF, ICP-AES, and XPS. The results of the degradation of BDE-209 by M-NZVI showed that the efficiency of M-NZVI in removing BDE-209 was much higher than that of NZVI. The efficiency of M-NZVI in removing BDE-209 decreased as the pH and the initial dissolved oxygen content of the reaction solution increased, but increased as the proportion of water in the reaction solution increased.  相似文献   
92.
Catalytic bubble-free hydrogenation reduction of azo dye by porous membranes loaded with palladium (Pd) nanoparticles was studied for the first time. The effects of Pd loading, dye concentration and reuse repetitions of membranes were investigated. In reduction, the dye concentration decreased whereas the pH rose gradually. An optimal Pd loading was found. The catalytic membranes were able to be reused more than 3 times.  相似文献   
93.
The choice of substrates with high phosphorus adsorption capacity is vital for sustainable phosphorus removal from waste water in constructed wetlands. In this study, four substrates were used: quartz sand, anthracite, shale and biological ceramsite. These substrate samples were characterized by X- ray diffractometry and scanning electron microscopy studies for their mineral components (chemical components) and surface characteristics. The dynamic experimental results revealed the following ranking order for total phosphorus (TP) removal efficiency: anthracite 〉 biological ceramsite 〉 shale 〉 quartz sand. The adsorptive removal capacities for TP using anthracite, biological ceramsite, shale and quartz sand were 85.87, 81.44, 59.65, and 55.98 mg/kg, respectively. Phosphorus desorption was also studied to analyze the substrates' adsorption efficiency in wastewater treatment as well as the substrates' ability to be reused for treatment. It was noted that the removal performance for the different forms of phosphorus was dependent on the nature of the substrate and the adsorption mechanism. A comparative analysis showed that the removal of particulate phosphorus was much easier using shale. Whereas anthracite had the highest soluble reactive phosphorus (SRP) adsorptive capacity, biological ceramsite had the highest dissolved organic phosphorus (DOP) removal capacity. Phosphorus removal by shale and biological ceramsite was mainly through chemical adsorption, precipitation or biological adsorption. On the other hand, phosphorus removal through physical adsorption (electrostatic attraction or ion exchange) was dominant in anthracite and quartz sand.  相似文献   
94.
Fifteen heavy-duty diesel vehicles were tested on chassis dynamometer by using typical heavy duty driving cycle and fuel economy cycle. The air from the exhaust was sampled by 2,4- dinitrophenyhydrazine cartridge and 23 carbonyl compounds were analyzed by high performance liquid chromatography. The average emission factor of carbonyls was 97.2 mg/km, higher than that of light-duty diesel vehicles and gasoline-powered vehicles. Formaldehyde, acetaldehyde, acetone and propionaidehyde were the species with the highest emission factors. Main influencing factors for carbonyl emissions were vehicle type, average speed and regulated emission standard, and the impact of vehicle loading was not evident in this study. National emission of carbonyls from diesel vehicles exhaust was calculated for China, 2011, based on both vehicle miles traveled and fuel consumption. Carbonyl emission of diesel vehicle was estimated to be 45.8 Gg, and was comparable to gasolinepowered vehicles (58.4 Gg). The emissions of formaldehyde, acetaldehyde and acetone were 12.6, 6.9, 3.8 Gg, respectively. The ozone formation potential of carbonyls from diesel vehicles exhaust was 537 mg O3/km, higher than 497 mg O3/km of none-methane hydrocarbons emitted from diesel vehicles.  相似文献   
95.
采用3种电子受体(硝氮、亚硝氮、氧),在SBR反应器中分别驯化了具有稳定除磷能力的聚磷污泥。对比研究了不同聚磷污泥胞外聚合物(EPS)的组分与含量,结合三维荧光光谱对EPS中有机物质进行分析。研究表明,以硝氮、亚硝氮为电子受体的聚磷污泥EPS平均浓度较为接近,分别为115.6mg/gVSS、133.5 mg/gVSS,由厌氧段至缺氧段,EPS总浓度有所下降。以氧为电子受体聚磷污泥的EPS平均浓度相对较高,为194.5 mg/gVSS,由厌氧段至好氧段,EPS总浓度略有升高。不同聚磷污泥的EPS组分均以胞外蛋白为主,占EPS总量的53%~65%,多糖与核酸占EPS总量28%~34%、5%~7%。三维荧光光谱显示3种聚磷污泥EPS均具有芳香结构蛋白质、可溶性代谢物的荧光峰,另外,以硝氮为电子受体的聚磷污泥还具有明显的腐殖酸类物质的荧光峰。研究结果表明电子受体对聚磷污泥EPS的组分、浓度、有机质类别有一定的影响。  相似文献   
96.
通过调研全国危险废物和医疗废物焚烧处置设施,对包含二噁英排放水平的设施按处置对象、炉型和处理量分类,并作系统分析和研究.结果表明现有危险废物焚烧设施烟气中二噁英的浓度比医疗废物低,达标率为74.19%;危险废物选用回转窑处置效果较好,达标率为66.67%;而医疗废物选用回转窑或热解炉,要综合考虑处置规模、生产成本和二英排放总量等因素;危险废物介于10~30 t·d-1和医疗废物介于10~20 t·d-1的处置设施要尤其注意二噁英的排放问题;医疗废物焚烧飞灰中二噁英的均值浓度为危险废物6倍以上,仅有16.67%满足填埋要求.二者烟气中二英的浓度分布以1,2,3,4,6,7,8-HpCDF、2,3,7,8-TCDF和OCDD为主.  相似文献   
97.
淠河灌区集中式饮用水源地水质健康风险等级研究   总被引:2,自引:0,他引:2  
为了解淠河灌区集中式饮用水源地水质健康风险状况,选取Cr6+、As、Cd、Pb、Mn、Cu、Zn、Fe、F、NH+4-N等10项污染因子作为健康风险指标,运用三角模糊集理论和α-截集技术,确立置信度为0.8,得到各污染指标的健康风险区间值;同时建立模糊化特征的风险等级判别标准和判别方法.结果表明,该水源地水质总健康风险值为4,风险等级为Ⅳ级(一般).3种化学致癌物Cr6+、As、Cd合计风险区间值介于5.586×10-5~9.365×10-5之间,风险由高到低的顺序依次为:Cr6+AsCd,浓度在空间上变化不大,具有一定的负面效应,但均未超过美国环保署推荐的最大可接受水平1.0×10-4;Cr6+风险区间值较大,风险等级较高,应将Cr6+作为首要的健康风险管理控制指标.其余7种非致癌化学有毒物没有风险,不存在负面效应,非致癌健康风险明显低于致癌风险.  相似文献   
98.
废旧线路板回收不仅能够解决电子废弃物迅速增长带来的环境污染问题,而且可以实现资源再生利用,是中国当前鼓励发展的行业。线路板回收过程也将不可避免的带来一定环境污染问题。中国企业现阶段常用的线路板回收工艺主要包括机械物理法、湿法冶金、火法冶金、热解法等。废旧线路板的回收工艺不同,污染物产生特点也不同,企业应根据线路板回收工艺有针对性的选择污染防治措施。线路板回收过程中产生的废渣再利用应成为今后研究的重点。  相似文献   
99.
利用大孔网状聚氨酯载体在MBBR工艺条件下,研究了系统挂膜与启动过程,同时利用挂膜成熟稳定的载体进行低浓度硝基苯废水处理实验。研究结果表明,在20℃条件下培养的活性污泥生长状况良好,挂膜速度快,生物膜厚度大,耐冲击负荷。在MBBR反应时间24 h、材料投加量为1/4、硝基苯初始浓度为2.095mg/L的条件下,处理低浓度硝基苯废水的效果最好,CODcr去除率为92.58%,硝基苯去除率为49.82%。  相似文献   
100.
以乌鲁木齐市某集中供热锅炉污染物减排方案为例,通过建立脱硫除尘设施综合评价指标体系,运用层次分析法确定指标权重,利用模糊综合评判法分别对两种除尘设施情况下的环境效益、经济效益以及设施能耗、物耗等指标着手,进行综合评价,最终评选出较优实施方案.评选结果表明:袋式除尘+石灰石-石膏法脱硫除尘设施方案运用于该集中供热站综合效益较好,可有效实现污染物减排,为今后燃煤锅炉环保设施的评选提供一定的参考作用.  相似文献   
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