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1.
燃煤飞灰中高度富集了痕量元素汞,而汞具有易挥发特性、较强的毒性和不易降解等特点,在粉煤灰的利用过程中汞极易逸出,造成二次污染,对人体健康有极大危害,所以对燃煤飞灰中汞稳定性的研究具有重要的意义。通过模拟加工利用和储存的自然环境,对飞灰和漂珠进行煅烧实验,研究飞灰和漂珠中汞的含量与煅烧温度之间的关系;对飞灰进行浸取实验,研究飞灰中汞的含量受浸取液pH以及浸取时间的影响情况。结果表明:在煅烧实验中,煅烧温度是影响汞释放的主要原因,随煅烧温度的增加汞的流失量越大,随煅烧时间的延长汞的流失量越大,在相同煅烧温度(500℃)和不同煅烧时间条件下,飞灰中汞的流失率最高达98.5%,漂珠中汞的流失率最高达86.4%,在相同煅烧时间和不同煅烧温度条件下,飞灰中汞的流失率最高达97.8%,漂珠中汞的流失率最高达85.7%;在浸取实验中,浸取时间越长,汞的流失量越大,当浸取液pH为1、浸取时间24h时,飞灰中的汞由0.331 8μg/g降低至0.137 1μg/g,说明浸取时间越长,汞浸出率越高,在不同pH条件下,汞含量随pH的降低而减少,飞灰中汞的浸出率最高达58.7%,最低为15.7%。  相似文献   

2.
为研究废弃印刷线路板的热解特性,确定金属和非金属分离的热解最佳参数,用差热-热重联用分析仪对FR-4型印刷线路板进行了热失重分析,并对影响废弃印刷线路板中金属和非金属分离效果的升温速率、颗粒尺寸、热解终温和保温时间等主要因素进行了实验研究。结果表明,FR-4型线路板在320~360℃区间热失重速率达到最大值;升温速率越高,热解起始温度、终止温度和失重峰温也越高,显著失重过程持续的时间越长;当热解终温相同时,升温速率对FR-4型线路板的热失重率影响很小。综合考虑FR-4型废弃印刷线路板中金属和非金属的分离效果、热解装置的设计、热解过程的能耗以及运行过程的控制等因素,最佳热解参数建议设定为升温速率为10℃/min,热解终温为500℃,保温时间取30 min为宜。  相似文献   

3.
研究了保温温度为245、260℃水热条件下使用碳酰肼分解垃圾焚烧飞灰中二噁英的分解效果.结果表明,在高温水热条件下使用碳酰肼作为添加剂有利于二噁英的分解;在245、260℃下保温1 h,二噁英的分解率分别达到80%和90%以上,但二噁英毒性当量因2,3,7,8-TCDD的再生成减小很少,甚至增大;同时,在水热条件下,垃圾焚烧飞灰中的重金属取得了良好的稳定效果.  相似文献   

4.
氯苯污染土壤低温原位热脱附修复   总被引:1,自引:0,他引:1  
为了考察低温原位热脱附技术对土壤中氯苯的修复效果,以土壤中氯苯为目标污染物,控制热脱附设备设定温度、土壤粒径、土壤含水率,对不同条件下土壤中的氯苯进行测定分析,研究其对热脱附效果的影响。结果表明:原位热脱附过程中土壤温度变化以加热棒为中心,随着距离增加而呈现时间和空间上的滞后效应;原位热脱附设定温度越高,土壤修复效果越好,当土壤设定温度为100℃时,90%土壤样品氯苯去除率达99%以上,与设定温度130℃修复效果相当;土壤粒径越小,其比表面积大,对污染物吸附效率越高,所需热脱附时间越长;含水率影响氯苯在土壤中的挥发速率、有效孔隙率和透气率,含水率过高或过低都不利于氯苯污染土壤原位热脱附修复。热脱附设备设定温度、土壤粒径、土壤含水率对低温原位热脱附技术去除土壤中氯苯的效果具有较大的影响。  相似文献   

5.
煤矸石热活化性能研究   总被引:1,自引:0,他引:1  
系统地研究了徐州夹河煤矸石在不同煅烧温度下的物理、化学变化及活性成分的溶出规律.采用扫描电子显微镜(SEM)、差热分析(DTA)、X射线衍射(XRD)等测试方法研究了热活化前后煤矸石的矿物组成、SiO2及Al2O3溶出率和微观结构,并采用水泥强度的测试方法对热活化煤矸石的活性进行宏观表征.结果表明,煅烧能有效去除有机挥发物和碳.破坏煤矸石中的硅氧键、铝氧键,形成无定形物质和玻璃相,从而提高煤矸石的活性.徐州夹河煤矸石的最佳热活化工艺条件是煅烧650℃、保温2 h.经此条件热活化后,SiO2和Al2O3的最高溶出率分别是76.32%、91.48%,添加50%(质量分数)的热活化煤矸石到水泥中,其强度比同掺量原样煤矸石的水泥强度提高了230%.  相似文献   

6.
将碳酸盐岩在不同温度下进行煅烧改性,在保持颗粒机械强度的条件下将其应用于酸性矿山废水(AMD)的处理。结果表明,碳酸盐岩在600℃下煅烧基本不产生变化,当升至750℃时,碳酸盐岩开始分解,煅烧3.0h后,烧失量为1.86%,煅烧后产物仍保持较强颗粒强度。800℃以上煅烧的碳酸盐岩则出现颗粒断裂现象,放入AMD中会立即溶解产生白色沉淀。在750℃煅烧改性后的碳酸盐岩能有效提高AMD的pH,对各种金属离子都有非常好的去除效果,尤其克服了原岩对Mn2+去除效果不佳的缺点;将750℃煅烧改性后的碳酸盐岩应用到野外AMD处理工程中,能有效减少处理构筑物的体积和占地面积,从而降低建设成本。  相似文献   

7.
好氧颗粒污泥处理高浓度氨氮废水的研究   总被引:6,自引:0,他引:6  
在不同接种源污泥颗粒化过程中污泥理化性状对比研究的基础上,采用成熟好氧颗粒污泥处理高浓度氨氮废水,对其脱氮行为以及不同C/N条件下好氧颗粒污泥微生物的比耗氧速率、好氧颗粒污泥对氨氮的比降解速率随时间的变化等进行了研究.实验结果表明,在进水氨氮质量浓度较高(480 mg/L)、温度30℃左右的条件下,稳定运行15 d,氨氮的去除率维持在85%左右;进水氨氮的浓度越高,随着微生物对环境的逐渐适应,硝化菌的活性也逐步增加;随着进水氨氮浓度的提高,好氧颗粒污泥对氨氮的比降解速率也逐渐上升.  相似文献   

8.
以松木木屑为原料,在自制的小型流化床上,开展了生物质热裂解温度、生物质粒径和进料速率对生物油产率的影响实验研究.结果表明,在热裂解温度分别为450、475、500、525和550℃条件下,当热裂解温度为500℃时,生物油产率最高,平均产率达到53.33%(质量百分比).反应温度越高,炭产量越低,不可冷凝气体产量越高,气体发热值越高;粒径<1 mm的生物质其粒径对生物油产率影响不大;生物质进料速率增加时,生物油产率增加.本研究为生物能的利用提供了新的途径.  相似文献   

9.
尾矿吸附模拟废水中磷的初步研究   总被引:2,自引:0,他引:2  
利用尾矿为吸附剂,模拟了其对废水中磷的去除效果.结果表明,焙烧可以明显提高尾矿对模拟废水中磷的吸附,而尾矿投加量、接触时间、pH,反应温度均是影响吸附的重要因素.热活化尾矿对磷的吸附与Langmuir、 Freundlich等温方程式的拟合程度均较高,在碱性条件下,对初始质量浓度为50mg/L的模拟含磷废水,磷的去除率可达96%以上.此外,由于尾矿具有特殊的层状结构和化学活性成分,特别是热活化尾矿,对模拟废水中的磷是较好的吸附剂,可用于去除废水中磷,是尾矿作为吸附剂去除实际废水中磷的重要基础.  相似文献   

10.
生物质快速热裂解主要参数对生物油产率的影响   总被引:5,自引:0,他引:5  
以松木木屑为原料,在自制的小型流化床上,开展了生物质热裂解温度、生物质粒径和进料速率对生物油产率的影响实验研究.结果表明,在热裂解温度分别为450、475、500、525和550℃条件下,当热裂解温度为500℃时,生物油产率最高,平均产率达到53.33%(质量百分比).反应温度越高,炭产量越低,不可冷凝气体产量越高,气体发热值越高;粒径<1 mm的生物质其粒径对生物油产率影响不大;生物质进料速率增加时,生物油产率增加.本研究为生物能的利用提供了新的途径.  相似文献   

11.
以含锑烟尘为原料,经脱杂处理后,采用真空蒸发法制备了立方晶型纳米三氧化二锑,并用XRD衍射和SEM扫描电镜对产物三氧化二锑进行表征。结果表明,制备的三氧化二锑为立方晶型,颗粒粒径为35~100 nm。实验考察了脱杂时间对脱杂效果的影响;考察了蒸发温度、压强、蒸发时间3个因素对三氧化二锑颗粒粒度的影响。  相似文献   

12.
Meunier L  Koch I  Reimer KJ 《Chemosphere》2011,84(10):1378-1385
Dissolution kinetics of arsenic from soils and tailings were studied under simulated gastrointestinal conditions to determine the effects of residence time, pH and soil composition on the bioaccessibility of arsenic. The samples were sieved to four particle size fractions from bulk to <45 μm, and included arsenic minerals, soils and tailings with total arsenic concentrations ranging from 19 to 420 00 mg kg−1. The bioaccessible arsenic concentrations varied from 2.8 to 10 000 mg kg−1, and the highest concentrations were associated with the smallest particle size fractions. Kinetic parameters were determined for each sample extracted under gastric conditions (pH = 1.8) followed by intestinal conditions (pH = 7.0). Under gastric pH conditions, dissolution appeared to be diffusion-controlled and followed an exponential curve, whereas a logarithmic or linear model was used to describe the mixed dissolution mechanisms observed under intestinal conditions. Nine of the 13 samples tested reached a steady state bioaccessible arsenic concentration within the 5-h physiologically-based extraction test (PBET). However the bioaccessible arsenic concentrations in four tailings samples increased significantly (= 0.034) between the 5-h and the extended 24-h extraction under intestinal conditions. Since arsenic absorption may occur along the entire digestive tract, assessments based on the standard 5-h PBET extraction may not adequately estimate the risks associated with arsenic absorption in such cases. The slow dissolution kinetics associated with secondary arsenic minerals in some tailings samples may require extending the PBET extractions to longer periods, or extrapolating using the proposed kinetic models, to reach steady state concentrations in simulated gastrointestinal fluids.  相似文献   

13.
以炼焦煤原煤、尾煤为研究对象,采用微量热重、常量固定床实验装置对其在热解过程中的质量变化和气相产物进行了对比分析。考察了温度、6种催化剂(CaO、MgO、Fe、Ni、NaOH、A1)及其添加比例对炼焦煤尾煤热解制取富氢燃料气的影响。结果表明,尾煤中富集的无机矿物质对热解制取富氢燃料气有促进作用,单位尾煤热解H2产率要比原煤高出1.93%。温度是影响尾煤热解产气的重要参数,热解终温的上升有利于H2产量的提高,随终温800℃升高到950℃H,产量增长了32.59mL/g。在催化热解实验中,除Al和MgO对尾煤热解有抑制作用外,CaO、Fe、Ni及NaOH均对尾煤热解产H2有促进作用,以CaO和Fe效果最为明显。并且不同添加比例的CaO和Fe对热解制取富氢燃料有一定的影响。  相似文献   

14.
The size and chemical composition of individual diesel exhaust particles were measured in order to determine unique mass spectral signatures that can be used to identify particle sources in future ambient studies. The exhaust emissions from seven in-use heavy-duty diesel vehicles (HDDVs) operating on a chassis dynamometer were passed through a dilution tunnel and residence chamber and analyzed in real time by aerosol time-of-flight mass spectrometry (ATOFMS). Seven distinct particle types describe the majority of particles emitted by HDDVs and were emitted by all seven vehicles. The dominant chemical types originated from unburned lubricant oil, and the contributions of the various types varied with particle size and driving conditions. A comparison of light-duty vehicle (LDV) exhaust particles with the HDDV signatures provide insight into the challenges associated with developing an accurate source apportionment technique and possible ways of how they may be overcome.  相似文献   

15.
Entrained-flow adsorption of mercury using activated carbon   总被引:6,自引:0,他引:6  
Bench-scale experiments were conducted in a flow reactor to simulate entrained-flow capture of elemental mercury (Hg0) by activated carbon. Adsorption of Hg0 by several commercial activated carbons was examined at different C:Hg ratios (by weight) (350:1-29,000:1), particle sizes (4-44 microns), Hg0 concentrations (44, 86, and 124 ppb), and temperatures (23-250 degrees C). Increasing the C:Hg ratio from 2100:1 to 11,000:1 resulted in an increase in removal from 11 to 30% for particle sizes of 4-8 microns and a residence time of 6.5 sec. Mercury capture increased with a decrease in particle size. At 100 degrees C and an Hg0 concentration of 86 ppb, a 20% Hg0 reduction was obtained with 4- to 8-micron particles, compared with only a 7% reduction for 24- to 44-micron particles. Mercury uptake decreased with an increase in temperature over a range of 21-150 degrees C. Only a small amount of the Hg0 uptake capacity is being utilized (less than 1%) at such short residence times. Increasing the residence time over a range of 3.8-13 sec did not increase adsorption for a lignite-based carbon; however, increasing the time from 3.6 to 12 sec resulted in higher Hg0 removal for a bituminous-based carbon.  相似文献   

16.
The degradation of ciprofloxacin was studied in aqueous solutions by using a continuous flow homogeneous photo-Fenton process under simulated solar light. The effect of different operating conditions on the degradation of ciprofloxacin was investigated by changing the hydrogen peroxide (0–2.50 mM) and iron(II) sulphate (0–10 mg Fe L?1) concentrations, as well as the pH (2.8–10), irradiance (0–750 W m?2) and residence time (0.13–3.4 min) of the process. As expected, the highest catalytic activity in steady state conditions was achieved at acidic pH (2.8), namely 85 % of ciprofloxacin conversion, when maintaining the other variables constant (i.e. 2.0 mg L?1 of iron(II), 2.50 mM of hydrogen peroxide, 1.8 min of residence time and 500 W m?2 of irradiance). Additionally, magnetite magnetic nanoparticles (ca. 20 nm of average particle size) were synthesized, characterized and tested as a possible catalyst for this reaction. In this case, the highest catalytic activity was achieved at natural pH, namely a 55 % average conversion of ciprofloxacin in 1.8 min of residence time and under 500 W m?2. Some of the photocatalytic activity was attributed to Fe2+ leaching from the magnetic nanoparticles to the solution.  相似文献   

17.
Resuspension experiments were performed in a single-family residence. Resuspension by human activity was found to elevate the mass concentration of indoor particulate matter with an aerodynamic diameter less than 10 microm (PM10) an average of 2.5 times as high as the background level. As summarized from 14 experiments, the average estimated PM10 resuspension rate by a person walking on a carpeted floor was (1.4 +/- 0.6) x 10(-4) hr(-1). The estimated residence time for PM in the indoor air following resuspension was less than 2 hr for PM10 and less than 3 hr for 2-microm tracer particles. However, experimental results show that the 2-microm tracer particles stayed in the combined indoor air and surface compartments much longer (>19 days). Using a two-compartment model to simulate a regular deposition and resuspension cycle by normal human activity (e.g., walking and sitting on furniture), we estimated residence time for 2-microm conservative particulate pollutants to be more than 7 decades without vacuum cleaning, and months if vacuum cleaning was done once per week. This finding supports the observed long residence time of persistent organic pollutants in indoor environments. This study introduces a method to evaluate the particle resuspension rate from semicontinuous concentration data of particulate matter (PM). It reveals that resuspension and subsequent exfiltration does not strongly affect the overall residence time of PM pollutants when compared with surface cleaning. However, resuspension substantially increases PM concentration, and thus increases short-term inhalation exposure to indoor PM pollutants.  相似文献   

18.
A plug-flow model is developed showing the way in which efficiency depends on unfluidized bed height, bed particle size, participate mobility, gas flow rate and applied electric field intensity. This model is successfully correlated with tests in which flow rate, bed particle size, and unfluidized bed height are varied. It is shown that efficiencies better than 90% can be achieved in collecting 0.4 µm DOP with a gas residence time less than 50 msec and a pressure drop of about 10 cm of water.  相似文献   

19.
将微波辐射用于污泥预处理,考察了500、750和900 W的微波作用下,污泥性质(温度,污泥粒径,胞外聚合物和水解程度)和脱水性能(毛细吸水时间和污泥比阻)的变化情况,并探讨了相关的机理。结果表明,适宜的微波条件能够增加污泥粒径,提高污泥的脱水性能。900 W微波辐射60 s后,污泥粒径增加了71.40%,污泥毛细吸水时间和污泥比阻分别减少了42.70%和73.11%。若进一步增加微波接触时间,不仅使能耗增加,同时也会恶化污泥的脱水性能。  相似文献   

20.
Hou YD  Wang XC  Wu L  Chen XF  Ding ZX  Wang XX  Fu XZ 《Chemosphere》2008,72(3):414-421
Mesoporous nanocrystalline N-doped SiO2/TiO2 visible-light photocatalysts were prepared by treating SiO2/TiO2 xerogels in a flow of nitrogen gas bubbled through concentrated ammonia solution. Structural characterization and performance analysis results revealed that the addition of SiO2 remarkably altered the phase composition, specific surface area, microstructure, as well as the photocatalytic activity of N-doped TiO2. The presence of SiO2 in N-doped TiO2 particles suppressed the formation of rutile phase and the crystal growth of N-doped TiO2 particles during thermal calcinations. When weight ratio of SiO2/TiO2 was in 0.05-0.20, the N-doped SiO2/TiO2 exhibited higher photocatalytic activity than the N-doped TiO2, and optimum ratio was found to be 0.05. The enhanced photocatalytic activity could be attributed to the higher specific area, larger pore volume, and more surface hydroxyl groups in the catalyst.  相似文献   

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