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101.
新型生物质活性炭烟气脱硫研究   总被引:2,自引:0,他引:2  
刘洁岭  汤争光  陈杰  蒋文举  江霞 《环境科学》2013,34(4):1623-1627
以农业废弃物核桃壳为原料,天然软锰矿为添加剂共混制备得到的新型生物质柱状活性炭进行烟气脱硫的性能研究.采用固定床反应器进行脱硫实验,装填活性炭质量为16 g,考察了进口SO2含量、空速、床层温度、水蒸气和氧气含量等工艺参数对活性炭脱硫性能的影响.结果表明,进口SO2含量在0.1%~0.3%(体积含量)范围内时,活性炭的穿透硫容和穿透时间随着进口SO2含量的升高而降低;空速越大,活性炭越容易穿透,较佳的空速为600 h-1;最适的床层温度为80℃,过高会降低脱硫效率;水蒸气和氧气的存在大大促进了活性炭对SO2的吸附性能,最佳水蒸气含量为10%,最佳氧气含量为10%~13%.在最佳工艺操作条件下,当进口SO2含量为0.2%时,活性炭穿透硫容为252 mg.g-1,穿透时间可达26 h.  相似文献   
102.
以城市污水厂剩余污泥为原料,用氯化锌活化法研究一种柱状污泥基活性炭(CSAC)的制备方法及其工艺条件优化,并选择粉末污泥基活性炭(PSAC)和一种商品煤质碳(MAC)作为对照,考察了CSAC对重金属离子Cu(Ⅱ)和Pb(Ⅱ)及有机污染物硝基苯的吸附去除效能.结果表明,CSAC的比表面积及微孔容积分别是306.9 m2·g-1和0.109 cm3·g-1,仅为MAC的36.7%和23.6%,但其对Cu(Ⅱ)和Pb(Ⅱ)的平衡吸附量却远远高于MAC,说明CSAC表面存在的高含量酸性官能团在吸附去除重金属过程中起到了重要的作用.由于制备原料相同及制备工艺相似,CSAC与PSAC的理化性质基本相同,两种炭的表面酸性官能团含量较高,对Cu(Ⅱ)和Pb(Ⅱ)均具有较好的吸附去除效果,优于MAC,只是CSAC的比表面积和微孔容积略低于PSAC;在对硝基苯的吸附实验中,CSAC及PSAC的吸附效率均远远低于MAC,说明在对有机物硝基苯的吸附中,活性炭的比表面积等物理性质起到了较大的作用.同时,所制备的CSAC的稳定度大于95%,易于分离回收,不会造成二次污染,适合废水中重金属离子的吸附去除.  相似文献   
103.
活性炭纤维固定化菌对微囊藻毒素MC-LR的去除研究   总被引:1,自引:0,他引:1  
研究了藻蓝蛋白提取过程中微囊藻毒素MC-LR的释放分布规律,并用活性炭纤维对一株微囊藻毒素降解菌株进行了固定化,考察了不同活性炭纤维预处理方法、活性炭纤维用量、pH值、温度以及MC-LR浓度对固定化藻毒素降解菌去除MC-LR的影响.结果表明,藻蓝蛋白提取过程中MC-LR主要分布在超滤滤液中,占MC-LR总含量的81.2%.固定化藻毒素降解菌去除MC-LR的效率明显高于非固定化藻毒素降解菌.藻毒素降解菌用(1+9)盐酸预处理后的活性炭纤维固定化,其去除效果最佳.MC-LR去除的最适条件为:活性炭纤维用量为10g/L,温度为35℃,pH值为8.0.固定化藻毒素降解菌对pH值,温度具有一定的耐受性,能够在pH5~pH9、10℃~35℃范围内有效地去除MC-LR.  相似文献   
104.
Aquatic fungi are common in various aqueous environments and play potentially crucial roles in nutrient and carbon cycling as well as interacting with other organisms. Species of Aspergillus are the most common fungi that occur in water. The present study was undertaken to elucidate the efficacy of two coagulants, aluminum sulfate and ferric chloride, used at different concentrations to treat drinking water, in removing Aspergillusflavus, as well as testing three different filtration media: sand, activated carbon, and ceramic granules, for their removal of fungi from water. The results revealed that both coagulants were effective in removing fungi and decreasing the turbidity of drinking water, and turbidity decreased with increasing coagulant concentration. Also, at the highest concentration of the coagulants, A. flavus was decreased by 99.6% in the treated water. Among ceramic granules, activated carbon, and sand used as media for water filtration, the sand and activated carbon filters were more effective in removing A.flavus than ceramic granules while simultaneously decreasing the turbidity levels in the test water samples. Post-treatment total organic carbon (TOC) and total nitrogen (TN) concentrations in the experimental water did not decrease; on the contrary, TN concentrations increased with the increasing dosage of coagulants. The filtration process had no effect in reducing TOC and TN in tested water.  相似文献   
105.
Higher concentrations of Hg can be emitted from coal pyrolysis or gasification than from coal combustion, especially elemental Hg. Highly efficient Hg removal technology from coal-derived fuel gas is thus of great importance. Based on the very excellent Hg removal ability of Pd and the high adsorption abilities of activated carbon(AC) for H2 S and Hg, a series of Pd/AC sorbents was prepared by using pore volume impregnation, and their performance in capturing Hg and H2 S from coal-derived fuel gas was investigated using a laboratory-scale fixed-bed reactor. The effects of loading amount, reaction temperature and reaction atmosphere on Hg removal from coal-derived fuel gas were studied. The sorbents were characterized by N2 adsorption, X-ray diffraction(XRD) and X-ray photoelectron spectroscopy(XPS). The results indicated that the efficiency of Hg removal increased with the increasing of Pd loading amount, but the effective utilization rate of the active component Pd decreased significantly at the same time. High temperature had a negative influence on the Hg removal. The efficiency of Hg removal in the N2-H2S-H2-CO-Hg atmosphere(simulated coal gas) was higher than that in N2-H2S-Hg and N2-Hg atmospheres, which showed that H2 and CO, with their reducing capacity, could benefit promote the removal of Hg. The XPS results suggested that there were two different ways of capturing Hg over sorbents in N2-H2S-Hg and N2-Hg atmospheres.  相似文献   
106.
Ni was effectively recovered from spent electroless nickel (EN) plating baths by forming a nano-nickel coated activated carbon composite. With the aid of ultrasonication, melamine- formaldehyde-tetraoxalyl-ethylenediamine chelating resins were grafted on activated carbon (MFT/AG). PdC12 sol was adsorbed on MFT/AC, which was then immersed in spent electroless nickel plating bath; then nano-nickel could be reduced by ascorbic acid to form a nano-nickel coating on the activated carbon composite (Ni/AC) in situ. The materials present were carefully examined by Fourier transform infrared spectroscopy, X-ray diffraction, field emission scanning electron microscopy, X-ray photoelectron spectroscopy and electro- chemistry techniques. The resins were well distributed on the inside and outside surfaces of activated carbon with a size of 120 ± 30 nm in MFT/AC, and a great deal of nano-nickel particles were evenly deposited with a size of 3.8 ± 1.1 nm in Ni/MFT. Moreover, Ni/AC was successfully used as a catalyst for ultrasonic degradation of 2.6-dichloronhenol.  相似文献   
107.
该文研究了2种不同性质的吸附剂XAD-4大孔吸附树脂和活性炭对NPn EO的吸附行为。实验结果表明:2种吸附剂对NPn EO都具有一定的吸附作用,XAD-4对NPn EO的吸附效果好于活性炭。通过对2种吸附剂进行等温吸附研究发现,升高温度,XAD-4对NPn EO的吸附量增大;活性炭的吸附能力受温度影响不显著。采用Langmuir方程和Freundlich方程对NPn EO在2种吸附剂上的吸附行为进行等温方程拟合,结果表明,吸附等温线都更加符合Langmuir方程,相关系数大于0.99,属于单层分子吸附。动力学研究结果表明:NPn EO在XAD-4和活性炭上的吸附符合准二级动力学方程,相关系数大于0.99。  相似文献   
108.
为提高颗粒活性炭同步去除水中铅、铬污染物的能力,分别使用氧化铁、氧化锰、十六烷基三甲基溴化铵(HTMAB)和氯化十六烷基吡啶(CPC)制作改性活性炭(Fe Cl3-AC,Mn O2-AC,HTMAB-AC,CPC-AC)。通过测定4种改性活性炭表面的等电点p H、酸碱官能团和扫描电子显微镜图像,研究4种改性活性炭吸附效果优异并分析其中原因。结果表明:Fe Cl3-AC同步去除铅、铬效果最佳,HTMAB-AC、CPC-AC与原炭效果持平,Mn O2-AC效果还不及原炭。从等电点p H来看,Fe Cl3-AC拥有较低的等电点p H,有利于静电吸附铬酸根阴离子团;从酸性基团数目来看,Fe Cl3-AC表面拥有较多酸性官能团,有利于离子交换作用,保证了对铅离子较高的吸附效率;从SEM来看,Fe Cl3-AC上Fe Cl3负载均匀,有效改善了活性炭表面特性,有利于吸附。  相似文献   
109.
活性碳纤维(ACF)具有较强的吸附能力,能够有效吸附废气中的污染物。本文介绍了活性炭纤维在废气处理中的应用现状,并对其应用前景作出了展望。  相似文献   
110.
由于活性炭具有表面积巨大及很高的物理吸附和化学吸附功能,并且有处理效率高和降解效果好等优点,所以活性炭吸附技术在国内外的污水处理中被广泛地应用。本文将通过介绍活性炭的性质与吸附机理以及活性炭的其它组合工艺在国内外水处理中的发展的应用,并且总结其中的优缺点。  相似文献   
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