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131.
目前,密度分离法广泛应用于各种环境介质中微塑料的提取.为了进一步准确测量沉积物中微塑料的质量浓度,本研究开发了一种基于溶解度参数(δ)计算的选择性检测方法,建立了加速溶剂萃取(ASE)-微塑料选择性析出-傅里叶变换红外光谱仪(FTIR)检测的技术路线.6种微塑料[聚丙烯(PP)、聚乙烯(PE)、聚苯乙烯(PS)、聚碳酸...  相似文献   
132.
以西南丘陵区村镇典型供水水源原水及其净化水为研究对象,分析了水质净化常规工艺前后其有机污染物分布特征及对饮水水质的影响.结果表明:该区域村镇供水水源属微污染水源水体,有机污染物以溶解性中小分子有机物为主,占有机物总量的50%~80%.共检测到53种共14类有机物,主要为烷烃、酯、酚、苯类物质,占有机物总量的80%~90%左右,有机酸、烯烃、醇和醛含量较小.有机物中二氯甲烷、苯酚、邻苯二甲酸二丁酯含量较高,并且出现了除草剂、食品添加剂、抗生素等污染物,如特丁津、2,6-二叔丁基对甲酚、萘啶酸等.水质净化常规工艺主要去除相对分子质量10×10~3的有机物,小分子量有机物中有机酸类去除效果较好,但烷烃、酯、酚、苯类有机物去除效果较差.  相似文献   
133.
Fe3O4稳定化纳米Pd/Fe对水中2,4-D的催化还原脱氯研究   总被引:3,自引:3,他引:0  
周红艺  梁思  曾思思  雷双健 《环境科学》2013,34(11):4311-4318
采用四氧化三铁(Fe3O4)稳定化纳米Pd/Fe催化脱氯水溶液中的2,4-二氯苯氧乙酸(2,4-D),获得了良好的处理效果.实验考察了Fe3O4投加量、pH、钯化率、温度、搅拌速率等因素对2,4-D去除的影响.2,4-D去除率随Fe3O4投加量增加而提高,投加量为4.0 g·L-1时,反应210 min后,2,4-D去除率为93.5%,而未稳定的纳米Pd/Fe,去除率为47.3%.低pH可促进2,4-D还原脱氯,pH为2.6~4.1时,2,4-D在110 min内几乎完全去除.2,4-D去除率随钯化率增加而提高.随着钯化率由0.25%、0.50%增加到0.75%,210 min后,2,4-D的去除率也由51.4%、93.5%提高到99.9%.温度在16.5~30.0℃范围内,反应210 min后,2,4-D去除率均可超过90.0%.温度升高到35.0、40.0℃时,去除率显著下降.2,4-D去除率随着搅拌速率加快而提高.Fe3O4的加入可以使纳米Pd/Fe分散和稳定.此外,Fe0可通过Fe3O4将电子传递给H+和2,4-D,促进2,4-D的还原脱氯.  相似文献   
134.
基于实验室模拟燃烧和稀释通道采样系统,采用荷电低压撞击采样器采集了6种典型木柴燃烧排放的14级粒径段颗粒物.采用离子色谱分析了8种水溶性离子,获得水溶性离子的分粒径排放因子和排放特征.结果表明,Ca2+的排放因子呈双峰分布,在0.25~0.38和2.5~3.6μm粒径段出现峰值,分别为0.14和0.16mg/kg.其余离子的排放因子为单峰分布.NH4+、NO3-和SO42-的排放因子在0.25~0.38μm粒径段出现峰值,分别为0.41、0.58和0.84mg/kg.K+和Cl-的排放因子在0.15~0.25μm内出现峰值,分别为0.89和0.99mg/kg.木柴燃烧排放总水溶性离子的质量中值粒径为(0.30±0.07)μm,各离子的质量中值粒径范围为0.24~0.44μm.PM0.094、PM0.94、PM2.5和PM10中水溶性离子的排放因子变化范围分别为1.04~9.33、5.00~48.87、5.46~52.00和6.14~53.68mg/kg.木柴燃烧排放颗粒物中K+/Cl-、K+/NO3-、K+/SO42-和SO42-/NO3-比值随粒径变化而变化,其排放初始值在应用于源解析和生物质燃烧排放气溶胶传输老化研究时需引起关注.木柴燃烧排放PM10中的阴阳离子当量比值为0.80±0.11,颗粒物的酸度随颗粒物粒径而改变,亚微米颗粒物和细颗粒物的酸度高于超细颗粒物和粗颗粒物的酸度.本研究对构建生物质燃烧排放分粒径水溶性离子清单,更新和改进相关气候和空气质量模型的参数设置,识别烟气传输过程中的老化具有重要意义.  相似文献   
135.
The secondary organic aerosol (SOA) formation mechanism and physicochemical properties can highly be influenced by relative humidity (RH) and NOx concentration. In this study, we performed a laboratory investigation of the SOA formation from toluene/OH photooxidation system in the presence or absence of NOx in dry and wet conditions. The chemical composition of toluene-derived SOA was measured using Aerodyne high-resolution time-of-flight aerosol mass spectrometer (HR-ToF-AMS). It was found that the mass concentration of toluene decreased with increasing RH and NOx concentration. However, the change of SOA chemistry composition (f44, O/C) with increased RH was not consistent in the condition with or without NOx. The light absorption and mass absorption coefficient (MAC) of the toluene-derived SOA only increased with RH in the presence of NOx. In contrast, MAC is invariant with RH in the absence of NOx. HR-ToF-AMS results showed that, in the presence of NOx, the increased nitro-aromatic compounds and N/C ratio concurrently caused the increase of SOA light absorption and O/C in wet conditions, respectively. The relative intensity of CHON and CHOxN family to the total nitrogen-containing organic compounds (NOCs) increased with the increasing RH, and be the major components of NOCs in wet condition. This work revealed a synergy effect of NOx and RH on SOA formation from toluene photooxidation.  相似文献   
136.
Landfill leachate is a complex effluent and it is difficult to deal with. Electrochemical methods have been considered as a promising alternative technology for treatment of landfill leachate with refractory organic contaminants and heavy metals. Peroxi-coagulation (PC) process with iron anode and modified graphite felt cathode was developed for efficient landfill leachate concentrate treatment. Compared to electro-Fenton (EF) and electrocoagulation (EC) processes, the PC process was more cost-effective due to the combined action of OH oxidation and iron hydroxides coagulation. A maximal TOC removal of 77.2% ± 1.4% was obtained after 360 min at initial pH = 5.0 and current density of 10 mA/cm2. After the PC process, concentrations of all seven heavy metals in the final effluents were below the allowable emission limits given by the present regulatory standards. The method preference for heavy metal removal was PC > EC > EF. Based on the three-dimensional fluorescence spectroscopy coupled with regional integration analysis during the PC treatment, the florescence peaks of both humic acids and fulvic acids disappeared after treatment for 360 min. Decreasing trends were observed in the fluorescent regional standard volumes for aromatic protein I (31.4%), aromatic protein II (63.7%), fulvic acid-like (69.5%), soluble microbial by-product-like (75%) and humic acid-like regions (76.3%). The results indicate that comparing to the EF and EC process, the PC process provide a promising and more cost-effective alternative for the treatment of landfill leachate concentrate.  相似文献   
137.
Selective catalytic reduction(SCR) with urea catalyzed by Cu-SAPO-34 is an effective method to eliminate NO_x from diesel exhaust. However, urea-related deposits may form during cold-start and urban driving due to low exhaust temperatures. The activity of CuSAPO-34 at 175°C is significantly degraded by urea exposure, and 300°C is required for regeneration. Through in-situ diffuse reflectance infrared Fourier transform spectroscopy(DRIFTS) and temperature-programmed hydrolysis studies, the dominant stable deposit at 175°C is identified as biuret, which can be eliminated at 300°C. The urea-derived deactivation and regeneration mechanisms of Cu-SAPO-34 were compared with those of anatase-supported catalysts.  相似文献   
138.
以土壤中分离出的邻苯二甲酸二异辛酯(DEHP)高耐性细菌(伯克霍尔德菌,Burkholderia sp.)及3种常见矿物为实验材料,研究Burkholderia sp.及其矿物复合体对DEHP的吸附解吸行为,包括吸附动力学、吸附等温曲线、pH的影响、FTIR分析等.结果显示,Burkholderia sp.能在较短时间内完成对DEHP的吸附;DEHP在细菌表面的吸附符合Langmuir等温吸附方程(R20.97);Burkholderia sp.吸附DEHP的最适pH为7.0~8.0.蒙脱石、针铁矿、高岭土及细菌对DEHP的吸附能力大小依次为:蒙脱石针铁矿伯克霍尔德菌高岭土;同时,蒙脱石-细菌复合体系对DEHP结合能力最强,而高岭土和针铁矿-细菌复合体系对DEHP的结合强度较小.FTIR分析结果表明细菌表面的蛋白质及脂质部分在DEHP吸附过程中的作用较大,而疏水性作用等是DEHP与细菌及复合体相互结合的主要作用力.这些结果都与DEHP在环境中的迁移转化行为密切相关,对评估该类化合物的环境生态风险以及控制环境污染都具有重要的指导意义.  相似文献   
139.
Air pollution is one of the main factors that affect the air quality in aircraft cabins, and the use of different air supply modes could influence the distribution of air pollutants in cabins. Based on the traditional ceiling air supply mode used on the B737NG, this study investigated another 3 different kinds of air supply modes for comparison: luggage rack air supply mode, joint mode combining ceiling and luggage rack air supply, and joint mode combining ceiling and individual air supply. Under the above 4 air supply modes, the air velocity, temperature and distribution of air pollutants in a cabin full of passengers were studied using computational fluid dynamics (CFD), and carbon dioxide (CO2) and formaldehyde were selected as 2 kinds of representative air pollutants. The simulation results show that the joint mode combining ceiling and individual air supply can create a more uniform distribution of air velocity and temperature, has a better effect on the removal of CO2 and formaldehyde, and can provide better air quality in cabins than the other 3 modes.  相似文献   
140.
磷酸活化活性炭对Cu~(2+)的吸附特征研究   总被引:1,自引:0,他引:1  
寻求廉价而高效的吸附材料为目的,研究向日葵秸杆基活性炭对铜离子的吸附性能。以向日葵秸秆为原料,经H3PO4活化制备活性炭,通过静态实验研究了其对水溶液中Cu2+的吸附特性,考察了溶液pH值、吸附温度和离子强度对吸附的影响,探讨了吸附热力学、动力学和吸附机理。结果表明:溶液pH值为5~6时活性炭对Cu2+的去除效果最好;向50 mL 170 mg·L-1的溶液中加入0.5 g活性炭,温度为45℃、吸附时间为1 h时,对Cu2+的去除率可达98.3%;Langmuir方程能更好地描述Cu2+在活性炭上的等温吸附特征,静态吸附容量可达41.03 mg·g-1;吸附过程符合拟二级动力学过程,且为吸热的化学吸附过程,膜扩散为速率控制步骤,离子交换可能在吸附过程中起了重要作用。  相似文献   
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