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1.
测定了流化床垃圾焚烧炉焚烧产生的飞灰、烟尘和烟气中的2,3,7,8位氯取代二噁英同类物的含量及其毒性当量。结果表明,产生的二噁英主要存在于飞灰中,烟气中的含量很少。飞灰中二噁英总浓度和毒性当量分别为8.44ng/g和0.80ng/g,经过布袋除尘器后的烟尘和烟气中二噁英的浓度之和与毒性当量之和分别为0.34ng/m^3和0.02ng/m^3,而布袋除尘器前的烟尘和烟气中二噁英的浓度之和与毒性当量之和分别为40.78ng/m^3和3.0ng/m^3。飞灰和烟尘中2,3,7,8位氯取代二噁英同类物的分布相似,但是与烟气中2,3,7,8位氯取代二噁英同类物的分布差别较大。通过了解有毒二噁英同类物的分布,可以进一步优化流化床垃圾焚烧炉的焚烧条件,降低二噁英的排放量,减少垃圾焚烧对环境的污染。  相似文献   

2.
二(口恶、口英)、多氯联苯、多环芳香烃及化学武器等有毒有害物的处理技术已取得长足进展.这些有毒有害物的处理技术可概括为物理方法、化学方法、物理化学方法和生物降解法.本文从概念、应用场合、分解效率以及操作条件等方面对这些方法分别进行了介绍,重点介绍和评述了吸附和催化法,以及应用前景很好的生物降解技术.  相似文献   

3.
环境中存在的二噁是一类严重影响食品安全和人类健康的强毒性有机污染物,为了能正确评价这类化合物的来源与环境中分布情况,二噁的分析检测引起了人们强烈的关注。本文介绍了样品检测前处理纯化过程中所用的各种传统的吸附剂(硅酸盐、佛罗里土和活性炭等)和新发展的几种主要吸附剂(2(1芘基)乙基二甲基硅烷化硅胶(PYE)、炭纳米管和多孔石墨炭等)的性能、在样品前处理过程中所起的作用及存在的问题和发展趋势,并在概括样品制备的基础上,阐述了二纯化技术及其检测方法(包括化学分析法和生物分析法)的进展。  相似文献   

4.
将慢滤池用于污水二级出水的深度处理,并利用小试装置研究了慢滤池去除邻苯二甲酸二(2-乙基己基)酯(DEHP)的效能。慢滤池采用粒径为0.4~0.6 mm,厚度为800 mm的石英砂做滤料并以0.1 m/h的恒定滤速运行。实验结果表明,慢滤池出水浊度、COD和色度远低于现行《城市污水再生利用城市杂用水水质标准》(GB/T18920-2002)的相应数值。污水二级处理出水中DEHP浓度为6.1~62.8μg/L时,经过慢滤池过滤后,DEHP浓度降为1.7~7.3μg/L。当接纳282.8μg/L的DEHP冲击负荷时,慢滤池出水DEHP仍能低于10μg/L。实验证明,慢滤池内的生物膜吸附过滤和生物降解共同保证了慢滤池去除DEHP的良好性能。  相似文献   

5.
采用静态吸附法研究了邻苯二甲酸二(2-乙基己基)酯(DEHP)在粉末活性炭上的吸附性能,探讨了粉末活性炭对DEHP的吸附等温线、吸附动力学和吸附热力学特征。结果表明,粉末活性炭对DEHP吸附等温线符合Langmuir吸附等温式;分别采用拟一级反应、拟二级反应和颗粒内扩散反应模型对吸附动力学过程进行了拟合,实验数据遵循颗粒内扩散模型;在20、30、40和50℃下,对应的吉布斯自由能(ΔG0)分別为-2.014、-1.441、-0.868和-0.296 kJ/mol,表明该反应自发进行;焓变(ΔH0)<0,证实该反应为放热反应;熵变(ΔS0)<0,说明该吸附反应是熵值减小的过程;吸附活化能Ea=7.234 kJ/mol和粘附概率S*=0.036分别介于5~40 kJ/mol和0~1范围内,表明该吸附过程主要为物理吸附;活性炭吸附前后红外谱图分析,也验证物理吸附为PAC吸附DEHP之主要机制。  相似文献   

6.
当前国内很多地方都将曝气生物滤池用于污水深度处理和回用.从保障再生水安全的角度出发,采用小试装置,对曝气生物滤池去除典型环境激素--邻苯二甲酸二(2-乙基己基)酯的效能进行了研究.结果发现,采用厚度1 000 mm的石英砂做滤料,在滤速0.5 m/h的条件下,进水邻苯二甲酸二(2-乙基己基)酯在5~35μg/L范围内时...  相似文献   

7.
以邻苯二甲酸二(2-乙基)己酯为模板分子、甲基丙烯酸为功能单体和乙二醇二甲基丙烯酸酯为交联剂,在TiO2表面合成DEHP分子印迹聚合物,制备了分子印迹型TiO2(MIP-TiO2),优化了制备工艺条件。利用傅里叶红外光谱(FI-IR)和X-射线衍射(XRD)对MIP-TiO2进行表征,并考察了MIP-TiO2对DEHP的光催化降解性能。结果表明,MIP-TiO2的最佳制备工艺条件为模板分子、单体、交联剂和TiO2的摩尔比为1:4:10:1.875,反应温度为60 ℃;聚合时间为18 h。MIP-TiO2仍保持了和TiO2一样的锐钛矿型结构,对DEHP 的光催化效果明显高于TiO2,对浓度为5 mg·L-1的DEHP的光催化降解效率可达88.15%。  相似文献   

8.
利用化学氧化法合成了苯胺-2,4-二氨基酚的共聚物,并通过静态吸附实验研究了该材料对水中Cr(Ⅵ)的吸附性能.研究表明,该共聚物对废水中Cr(Ⅵ)的去除效果显著,该吸附过程为自发吸热反应,符合Langmuir单层吸附模型;其动力学行为符合准二级动力学方程.溶液pH值对吸附性能影响较大,pH 3~6范围内吸附效果较好.吸...  相似文献   

9.
Oh JE  Choi SD  Lee SJ  Chang YS 《Chemosphere》2006,64(4):579-587
To examine the influence of polychlorinated dibenzo-p-dioxins and polychlorinated dibenzofurans (PCDD/Fs) emissions from a municipal solid waste incinerator (MSWI) on the environment, we measured the levels of PCDD/Fs in ambient air and soil samples collected near a MSWI in Bucheon, Korea. The PCDD/Fs concentrations in the ambient air samples ranged from 0.22 to 1.16 pg I-TEQm(-3) (13.39-75.16 pg m(-3)), with an average of 0.66 pg I-TEQ m(-3) (35.62 pg m(-3)). The soil samples contained between 1.25 and 74.98 pg I-TEQ g(-1) (38.15-3,303.33 pg g(-1)), with an average of 19.06 pg I-TEQ g(-1) (1,077.11 pg g(-1)). These levels were higher than those previously reported by other investigators in a number of surveys. The furan homologues predominated in the air samples and some soil samples, and the soil PCDD/Fs levels decreased with increasing distance from the MSWI. Comparison of the homologue patterns and a multivariate statistical analysis showed that PCDD/Fs emission from the MSWI directly affected the pattern of PCDD/Fs in air, while the PCDD/Fs patterns in soil differed according to the location relative to the MSWI, roads, and construction sites. These results collectively indicate that the MSWI was the major PCDD/Fs emission source in this area, but that unidentified combustion sources and vehicles might influence the environment to some extent.  相似文献   

10.
Chang MB  Chi KH  Chang SH  Yeh JW 《Chemosphere》2007,66(6):1114-1122
Partitioning of PCDD/F congeners between vapor/solid phases and removal and destruction efficiencies achieved with selective catalytic reduction (SCR) system for PCDD/Fs at an existing municipal waste incinerator (MWI) and metal smelting plant (MSP) in Taiwan are evaluated via stack sampling and analysis. The MWI investigated is equipped with electrostatic precipitators (EP, operating temperature: 230 degrees C), wet scrubbers (WS, operating temperature: 70 degrees C) and SCR (operating temperature: 220 degrees C) as major air pollution control devices (APCDs). PCDD/F concentration measured at stack gas of the MWI investigated is 0.728 ng-TEQ/Nm(3). The removal efficiency of WS+SCR system for PCDD/Fs reaches 93% in the MWI investigated. The MSP investigated is equipped with EP (operating temperature: 240 degrees C) and SCR (operating temperature: 290 degrees C) as APCDs. The flue gas sampling results also indicate that PCDD/F concentration treated with SCR is 1.35 ng-TEQ/Nm(3). The SCR system adopted in MSP can remove 52.3% PCDD/Fs from flue gases (SCR operating temperature: 290 degrees C, Gas flow rate: 660 kN m(3)/h). In addition, the distributions of PCDD/F congeners observed in the flue gases of the MWI and MSP investigated are significantly different. This study also indicates that the PCDD/F congeners measured in the flue gases of those two facilities are mostly distributed in vapor phase prior to the SCR system and shift to solid phase (vapor-phase PCDD/Fs are effectively decomposed) after being treated with catalyst. Besides, the results also indicate that with SCR highly chlorinated PCDD/F congeners can be transformed to lowly chlorinated PCDD/F congeners probably by dechlorination, while the removal efficiencies of vapor-phase PCDD/Fs increase with increasing chlorination.  相似文献   

11.
Wang HC  Hwang JF  Chi KH  Chang MB 《Chemosphere》2007,67(9):S177-S184
The PCDD/F concentrations and removal efficiencies achieved with air pollution control devices (APCDs) during different operating periods (start-up, normal operation, and shut-down) at an existing municipal waste incinerator (MWI) in Taiwan are evaluated via stack sampling and analysis. The MWI investigated is equipped with electrostatic precipitators (EP), wet scrubbers (WS), and selective catalytic reduction system (SCR) as APCDs. The sampling results indicate that the PCDD/F concentrations at the EP inlet during start-up period were 15 times higher than that measured during normal operation period. The PCDD/F concentration observed at shut-down period was close to that measured at normal operation period. The CO concentration was between 400 and 1000 ppm during start-up period, which was about 50 times higher compared with the normal operation. Hence, combustion condition significantly affected the PCDD/F formation concentration during the waste incineration process. In addition, the distributions of the PCDD/F congeners were similar at different operating periods. During the normal operation and shut-down periods, the EP decreases the PCDD/F concentration (based on TEQ) by 18.4-48.6%, while the removal efficiency of PCDD/Fs achieved with SCR system reaches 99.3-99.6%. Nevertheless, the PCDD/F removal efficiency achieved with SCR was only 42% during the 19-h start-up period due to the low SCR operating temperature (195 degrees C).  相似文献   

12.
Bulk depositions and surface soil were collected in a suburban area, near the Adriatic Sea, in order to assess the contribution of a municipal solid waste incinerator to the area’s total contamination with polychlorinated dibenzodioxins and polychlorinated dibenzofurans (PCDDs and PCDFs). Samples were collected at two sites, situated in the area most affected by plant emissions (according to the results of the Calpuff air dispersion model), and at an external site, considered as a reference. Results show that the studied area is subject to low contamination, as far as these compounds are concerned. Deposition fluxes range from 14.3 pg m−2 d−1 to 89.9 pg m−2 d−1 (0.75 pg-TEQ m−2 d−1 to 3.73 pg-TEQ m−2 d−1) and no significant flow differences are observed among the three monitored sites. Total soil concentration amounts to 93.8 ng kg−1 d.w. and 1.35 ng-TEQ kg−1 d.w, on average, and confirms a strong homogeneity in the studied area. Furthermore, from 2006 to 2009, no PCDD/Fs enrichment in the soil was noticed. Comparing the relative congener distributions in environmental samples with those found in stack emissions from the incineration plant, significant differences are observed in the PCDD:PCDF ratio and in the contribution of the most chlorinated congeners. From this study we can conclude that the incineration plant is not the main source of PCDD/Fs in the studied area, which is apparently characterized by a homogeneous and widespread contamination situation, typical of an urban area.  相似文献   

13.
Recently, we measured the concentrations of polychlorinated dibenzo-p-dioxins (PCDDs) and dibenzofurans (PCDFs) in soil and herbage samples collected in the vicinity of a municipal solid waste incinerator (MSWI) from Tarragona (Catalonia, Spain). Since these concentrations could be increased by the presence of other emission sources of PCDD/Fs in the same area in which the MSWI is placed, the main goal of the present study was to determine the PCDD/F congener profiles in the soil and vegetation samples collected in 1996 and again in 1997 near to the facility and to compare with those from samples collected in a close area outside of direct emissions of the plant. From an accurate inspection of the PCDD/F congener profiles, it was concluded that PCDD/F emissions from the MSWI here examined are neither the only nor the main responsible for the presence of PCDD/Fs in the samples of environmental matrices collected in the area under direct influence of the plant.  相似文献   

14.
The levels of polychlorinated dibenzo-p-dioxins (PCDD) and polychlorinated dibenzofurans (PCDF) were determined in soil and vegetation samples taken from 24 sites in the vicinity of an old municipal solid waste incinerator (San Adrià del Besòs, Barcelona, Spain). Duplicate samples were collected within a radius of 3 km from the stack. PCDD/F concentrations in soils ranged from 1.22 to 34.28 ng I-TEQ/kg (d.m.) with median and mean values of 9.06 and 12.24 ng I-TEQ/kg, respectively. In turn, the levels of PCDD/Fs in vegetation samples ranged from 0.33 to 1.98 ng I-TEQ/kg (d.m.), with median and mean values of 0.58 and 0.70 ng I-TEQ/kg, respectively. Although the present PCDD/F concentrations in soil samples were higher than those recently found in soils taken near other incinerators from Catalonia, they are of the same order of magnitude than the levels of these pollutants found in incinerators from other countries. By contrast, the concentrations of PCDD/Fs in herbage samples were comparable to those found in recent surveys carried out in Catalonia.  相似文献   

15.
Emission of polychlorinated dibenzo-p-dioxins (PCDDs) and dibenzofurans (PCDFs) by municipal solid waste incinerators (MSWI) is an issue of great concern. In 1997, an adaptation to the EU legislation on pollutant emissions from the stack was carried out in an MSWI from Tarragona (Catalonia, Spain). As a result, PCDD/F emissions were significantly reduced. The aim of this study was to determine the current levels of PCDD/Fs in soil and vegetation samples collected near the facility and to compare these levels with those obtained in previous surveys (1996 and 1997). In the period 1997-1999, PCDD/F concentrations in vegetation samples were significantly decreased (60%). By contrast, the levels of PCDD/Fs in soil samples increased slightly (14%, P > 0.05) during the same period. An exhaustive analysis of the present data indicates that other emission sources of PCDD/Fs have also a notable environmental impact on the area under direct influence of the MSWI.  相似文献   

16.
Over the past decades in China, the number of medical waste incinerators (MWIs) has been rising rapidly, causing emissions of polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs). In this study, samples of fly ash, ash deposits, and bottom ash from typical MWIs were analyzed for PCDD/Fs and their distribution characteristics. Results showed international toxic equivalent (I-TEQ) values in the range of 6.9–67 ng I-TEQ/g in fly ash and ash deposits, whereas the concentration in bottom ash was extremely low (only 1.33 pg I-TEQ/g), yet the generation of PCDD/Fs was mostly de novo synthesis in fly ash and ash deposits according to the ratio of PCDFs to PCDDs; the major distribution differences of PCDD/Fs in fly ash was manifested by the content of toxic furan 2,3,7,8-TCDF, but other toxic PCDD/Fs showed similar distribution. Other findings are that 2,3,4,7,8-PeCDF had the most contribution to TEQ concentration, and that the most abundant toxic furan congener is 1,2,3,4,6,7,8-HpCDF. Correlation analysis showed that there was no significant correlation between PCDD/Fs concentration and several other physical and chemical parameters.

Implications: This paper is of interest because it presents the emission performances of PCDD/Fs in ash from medical waste incineration in China. PCDD/F contents in fly ash and ash deposits vary between 6.9 and 67.3 ng I-TEQ/g. However, the concentration in bottom ash was extremely low (only 1.33?×?10?3 ng I-TEQ/g). The fingerprints of PCDD/Fs in fly ash are almost similar, except for 2,3,7,8-TCDF. There is no marked correlation between PCDD/Fs and other physicochemical properties.

Supplemental Materials: Supplemental materials are available for this paper. Go to the publisher's online edition of the Journal of the Air & Waste Management Association.  相似文献   

17.
Cunliffe AM  Williams PT 《Chemosphere》2007,68(9):1723-1732
The influence of temperature on the levels of PCDD and PCDF remaining in, and desorbed from, a municipal solid waste incinerator flyash was investigated by heating the ash to between 200 and 400 degrees C under a simulated flue gas for four days reaction time. Considerable desorption of PCDD/PCDF from the flyash was seen at 275 degrees C and above. Maximum desorption occurred at 350 degrees C, with the equivalent of nearly eight times the total PCDD/PCDF concentration of the original flyash being lost to the vapour phase per unit mass of initial flyash. The I-TEQ value of the desorbed PCDD/PCDF was considerable, being over fourteen times that of the original flyash at 325 degrees C. The results indicate that formation of PCDD/PCDF on flyash deposits in the post-combustion plant of incinerators can result in the release of significant amounts of PCDD/PCDF to the flue gas stream.  相似文献   

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