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101.
采用还原-共沉淀法制备了无定型纳米复合Fe-Ti氧化物(FFT)吸附剂,并研究其对水中低浓度As(Ⅴ)的去除性能.XRD表征结果表明,制备的纳米FFT物相为无定型,BET比表面积达325.3 m2·g-1,计算得到的BJH吸附平均孔径为2.46 nm(4V/A),颗粒分布均匀.同时,考察了纳米FFT吸附As(Ⅴ)的动力学、热力学、吸附等温线,以及温度、水中共存离子对其去除As(Ⅴ)的影响.结果发现,纳米FFT对As(Ⅴ)的吸附符合拟二级动力学模型,计算出的孔道扩散系数DP在10-11~10-13cm2·s-1之间,显示孔扩散是速率限速步骤.Langmuir、Freundlich和DubininRadushkevich(D-R)吸附等温式均可较好地拟合吸附行为,低浓度下Langmuir吸附模型计算出的Qm达到26.46 mg·g-1.最后,研究了地下水中常见的共存离子对吸附的影响,发现Ca2+、Mg2+能够促进吸附,H2PO-4和HCO-3则明显抑制吸附过程. 相似文献
102.
Photocatalytic removal of NO and NO2 using titania nanotubes synthesized by hydrothermal method 总被引:1,自引:0,他引:1
In this study, the photocatalysts of titania nanotubes(TNTs) were synthesized at different calcination temperatures using commercial Degussa TiO2(P25) as a precursor. The materials were then characterized by BET, SEM, TEM, and XRD analyses. The photocatalytic reactions with NO and NO2 under UV-A irradiation were both performed. The results showed that the photocatalytic reaction rate of NO was much faster than that of NO2, and the conversion of NO2 to nitrate was the rate-limiting step for photocatalytic removal of NOx if the nitrate produced cannot be removed continuously from the photocatalyst surface. For TNTs calcined at different temperatures, a significant enhancement was observed on the total NOx removal efficiency by TNT calcined at 500°C for both NO and NO2 photocatalytic reaction, which could be attributed to its high anatase crystallinity as well as high surface area. These two factors affect primarily on the NO2conversion step in which the high anatase crystallinity could be responsible for the high efficiency at the beginning, while the high surface area could be accounted for retaining this high efficiency from nitric acid poisoning during the test period. 相似文献
103.
We fabricated and characterized two hybrid adsorbents originated from hydrated ferric oxides(HFOs) using a polymeric anion exchanger D201 and calcite as host. The resultant adsorbents(denoted as HFO-201 and IOCCS) were employed for Sb(V) removal from water. Increasing solution pH from 3 to 9 apparently weakened Sb(V) removal by both composites, while increasing temperature from 293 to 313 K only improved Sb(V) uptake by IOCCS. HFO-201 exhibited much higher capacity for Sb(V) than for IOCCS in the absence of other anions in solution. Increasing ionic strength from 0.01 to 0.1 mol/L NaNO3would result in a significant drop of the capacity of HFO-201 in the studied pH ranges; however, negligible effect was observed for IOCCS under similar conditions. Similarly, the competing chloride and sulfate pose more negative effect on Sb(V) adsorption by HFO-201 than by IOCCS, and the presence of silicate greatly decreased their adsorption simultaneously, while calcium ions were found to promote the adsorption of both adsorbents. XPS analysis further demonstrated that preferable Sb(V) adsorption by both hybrids was attributed to the inner sphere complexation of Sb(V) and HFO, and Ca(II) induced adsorption enhancement possibly resulted from the formation of HFO-Ca-Sb complexes. Column adsorption runs proved that Sb(V) in the synthetic water could be effectively removed from 30 μg/L to below 5 μg/L(the drinking water standard regulated by China), and the effective treatable volume of IOCCS was around 6 times as that of HFO-201, implying that HFO coatings onto calcite might be a more effective approach than immobilization inside D201. 相似文献
104.
Zn2+对铁氧化物吸附苄嘧磺隆的影响 总被引:1,自引:0,他引:1
研究2种人工合成的铁氧化物对磺酰脲类除草剂--苄嘧磺隆(bensulfuron-methyl,BSM)的吸附,以及Zn2 对供试样品吸附苄嘧磺隆的影响.实验结果表明,用Langmuir、Freundlich、Temkin等方程对供试样品加入Zn2 后吸附BSM的数据进行了拟合,发现供试样品吸附苄嘧磺隆的等温曲线较好地符合Freundlich方程.加入Zn2 后,铁氧化物吸附苄嘧磺隆的量较未加Zn2 有较大幅度的增加,但在苄嘧磺隆的平衡质量浓度较低(<4 mg/L)时,氧化物吸附苄嘧磺隆的量不随Zn2 浓度的增加而增加;在苄嘧磺隆的平衡质量浓度较高(>6 mg/L)时,氧化物吸附苄嘧磺隆的量随Zn2 浓度的增加而增加.这可能是Zn2 和苄嘧磺隆被吸附时存在竞争和协同交互作用的结果. 相似文献
105.
硼掺杂CeO2/TiO2光催化剂的制备及其活性研究 总被引:1,自引:0,他引:1
在三氯化钛和钛酸丁酯水解过程中引入硼酸、硝酸铈,制备了具有可见光活性的硼(B)掺杂CeO2/TiO2复合氧化物光催化剂,采用XRD、DRS、XPS等手段进行表征,以偶氮染料酸性红B为模型污染物评估了催化活性.结果表明,硝酸铈加入量影响催化剂的吸收带边,随用量增加,吸收带边红移至481nm(Ce/Ti=1.0,摩尔比),继续增加用量,吸收带边轻微蓝移.催化剂晶相组成与焙烧温度有关,500℃时焙烧样品主要由立方晶型CeO2和锐钛矿TiO2组成,焙烧温度高于700℃时,TiO2转化为金红石型,CeO2则无显著变化.随焙烧温度升高,催化剂吸收带边明显蓝移,综合考虑催化剂稳定性和太阳能利用,认为500℃焙烧较为合适.B1s XPS显示仅有少量B原子进入复合氧化物晶格取代了氧原子,主要以B2O3形式存在.酸性红B降解试验显示B掺杂CeO2/TiO2可以提高TiO2的催化活性,紫外光辐射10min最高可使96.0%的酸性红B分解,且反应彻底,表现出较强的氧化能力,但Ce/Ti>0.5(摩尔比)时催化活性显著下降. 相似文献
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110.
应用热综合分析仪(TG-FTIR)研究了在还原性气氛下Fe及其氧化物对N2O的催化还原 作用。研究发现铁氧化物对氮氧化物的催化还原能力相当弱,而Fe可以高效地降低N2O分解的初始温度和提高N2O向N2的转化率。在Fe和CO的作用下,N2O的初始分解温度为920K和1000K。在1123K时,N2O的转化率达到95%和805。TG/DSC曲线表明了在Fe与N2O反应过程中CO的作用表现为通过与N2O在反应表面的竞争吸附使铁氧化物还原为金属铁,X射线衍射证明Fe与N2O反应后的氧化物为Fe2O3;扫描电镜对反应后Fe表面物理形态的研究发展,在CO作用下,Fe的表面呈松散结构,可以保证Fe对氮氧化物反应的连续进行。 相似文献