排序方式: 共有203条查询结果,搜索用时 16 毫秒
101.
102.
103.
104.
In this study we investigated the enrichment ability of oxidized multiwalled carbon nanotubes (MWCNTs) and established a new method for the determination of trace cadmium in environment with flame atomic absorption spectrometry.The MWCNTs were oxidized by potassium permanganate under appropriate conditions before use as preconcentration packing.Parameters influencing the recoveries of target analytes were optimized.Under optimal conditions,the target analyte exhibited a good linearity (R~2=0.9992) over the concentration range 0.5-50 ng/ml.The detection limit and precision of the proposed method were 0.15 ng/ml and 2.06%, respectively.The proposed method was applied to the determination of cadmium in real-world environmental samples and the recoveries were in the range of 91.3%-108.0%.All these experimental results indicated that this new procedure could be applied to the determination of trace cadmium in environmental waters. 相似文献
105.
研究了不同质量浓度(1 mg/L和20 mg/h)多壁碳纳米管(Muhiwalled Carbon Nanotubes,MWCNTs)短期(21 d)作用对序批式活性污泥反应器(SBR)废水脱氮除磷效果的影响.结果表明,1mg/L和20mg/L MWCNTs废水的持续作用对反应器出水NH4+-N、NO3--N、NO2--N和TP质量浓度(分别为0.35 mg/L、4.5 mg/L、0.1 mg/L和0.15 mg/L)及1个反应周期内的氮磷转化过程并未产生明显的影响.活性污泥3h呼吸抑制试验表明,低质量浓度(ρ<100 mg/L)MWCNTs短暂作用(3h)对活性污泥活性并没有明显的抑制作用.但当MWC-NTs质量浓度达到g/L级别后,MWCNTs对活性污泥活性存在明显的抑制作用,而且MWCNTs对活性污泥的呼吸抑制作用与质量浓度呈正相关性.研究表明,1 mg/k和20 mg/L MWCNTs对活性污泥系统短期作用并不影响活性污泥系统脱氮除磷的效果. 相似文献
106.
Concerning the high volume of wastewater containing dye in Iran and its adverse effects, it is necessary to develop scientific solutions for treating these wastewaters. The aim of this study was to evaluate the efficiency of the alumina-coated multi-walled carbon nanotubes in removing the Reactive Red 198 (RR 198) and Blue 19 (RB 19) dyes. Synthetic samples including dye with different concentrations were prepared. These samples were put in contact with different contents of alumina/multi-walled carbon nanotubes, in different pH values, in different contact times, different temperatures and the presence of sodium sulfate or sodium carbonate. The optimum pH, dye concentration and temperature for removal of the two dyes was 3, 50 mg l−1 and 25 °C, respectively. The optimum adsorbent dose for removal the RR 198 dye was 0.5 g l−1 and for Blue 19 was 0.4 g l−1. The optimum contact time for RR 198 was 150 min and RB 19 was 180 min. In this condition, maximum removal efficiency for RR 198 and RB 19 was 91.54% and 93.51%, respectively. The adsorption study was analyzed kinetically, and the results revealed that the adsorption fitted a pseudo-second order kinetic model. According to these results alumina/multi-walled carbon nanotubes can effectively remove RR 198 and RB 19 from aqueous solutions. 相似文献
107.
Uranium-reducing bacteria were immobilized with sodium alginate, anthraquinone-2,6-disulfonate(AQDS), and carbon nanotubes(CNTs). The effects of different AQDS-CNTs contents, U(Ⅳ) concentrations, and metal ions on U(Ⅳ) reduction by immobilized beads were examined. Over 97.5% U(Ⅵ)(20 mg/L) was removed in 8 hr when the beads were added to 0.7% AQDS-CNTs, which was higher than that without AQDS-CNTs. This result may be attributed to the enhanced electron transfer by AQDS and CNTs. The reduction of U(Ⅵ) occurred at initial U(Ⅵ) concentrations of 10 to 100 mg/L and increased with increasing AQDS-CNT content from 0.1% to 1%. The presence of Fe(Ⅲ), Cu(Ⅱ) and Mn(Ⅱ)slightly increased U(Ⅵ) reduction, whereas Cr(Ⅵ), Ni(Ⅱ), Pb(Ⅱ), and Zn(Ⅱ) significantly inhibited U(Ⅵ) reduction. After eight successive incubation-washing cycles or 8 hr of retention time(HRT) for 48 hr of continuous operation, the removal efficiency of uranium was above 90% and 92%, respectively. The results indicate that the AQDS-CNT/AL/cell beads are suitable for the treatment of uranium-containing wastewaters. 相似文献
108.
Si掺杂TiO2纳米管阵列制备、表征及其光催化氧化降解室内典型VOCs 总被引:1,自引:1,他引:0
以Na2SiF6/HF为电解液,采用阳极氧化法一步制备了Si掺杂的TiO2纳米管阵列光催化剂,通过SEM、XRD、DRS和EDX等表征手段对制备的催化剂进行了表征,并以甲苯为降解目标物,考察了Si掺杂的TiO2纳米管阵列光催化剂的活性以及各种反应参数对活性的影响.结果表明,TiO2纳米管阵列以锐钛矿和金红石2种晶形存在,Si高分散于TiO2纳米管的管壁上.Si的掺杂提高了TiO2对紫外光的吸收,其禁带宽度与TiO2相比发生了蓝移.Si掺杂的TiO2纳米管阵列具有较大比表面积.当以电解液中Na2SiF6浓度为0.03 mol·L-1,在400℃焙烧1 h制备的Si掺杂的TiO2纳米管阵列为光催化剂时,甲苯的降解率最高,降解率达到60%,与纯TiO2纳米管阵列相比,催化活性提了1倍. 相似文献
109.
在pH7.0的条件下,采用批量平衡方法研究邻苯二甲酸(PA)和苯甲酸(BA)在3种不同功能化碳纳米管(羟基化H-CNTs、羧基化C-CNTs和石墨化G-CNTs)上的吸附/解吸行为,并进一步探究共存BA对PA在碳纳米管上吸附的影响.结果表明,Langmuir和Freundlich模型均可对PA和BA在3种碳纳米管上的吸附数据进行较好的非线性拟合,其中Freundlich模型拟合效果更好(Adj r2均达到0.88以上);3种碳纳米管对PA和BA的吸附能力大小均依次为:C-CNTs > H-CNTs > G-CNTs;解吸实验中,C-CNT和H-CNTs对BA和PA的解吸均具有明显的滞后现象,说明BA和PA在C-CNT和H-CNTs上的吸附有较强化学作用力的发生,而G-CNTs对二者的解吸曲线与吸附曲线几乎重合,不具有明显的滞后现象,这与G-CNTs表面缺乏官能团有关;当PA和BA共存在时,以PA为主要吸附质,BA为竞争吸附质,发现在H-CNTs和C-CNTs上,共存BA对PA为竞争作用,而在G-CNTs上,共存BA对PA起协同吸附作用. 相似文献
110.
以腐殖酸(Humic Acid,HA)为研究对象,通过压力辅助过滤技术将碳纳米管(Carbon Nanotubes,CNTs)预涂覆在聚醚砜(Polyethersulfone,PES)平板膜表面,制备了CNTs预涂覆低压膜,分别考察了该膜在恒压和恒流实验中对HA的去除情况及其对膜污染的缓解作用.研究表明,CNTs预涂覆膜可以有效缓解基膜的污染,保证CNTs的分散性,增加PES膜表面预涂覆CNTs的投加量,有助于缓解膜污染的发生;采用径向尺寸小的CNTs制备出的预涂覆低压膜,其抗污染能力更佳.研究进一步采用恒流膜滤装置对膜滤过程的3个阶段(新膜过滤阶段、膜污染加速阶段、堵塞膜截留阶段)进行了模拟,考察了CNTs预涂覆低压膜对HA的去除机理.结果表明,新膜过滤阶段,CNTs预涂覆低压膜运行初期,CNTs的吸附性能对HA的去除起主导作用,HA去除率随过滤时间的增加而不断减小,吸附阶段CNTs预涂覆膜的跨膜压差(Transmembrane Pressure,TMP)始终保持在较低水平(不高于15 kPa),降低CNTs的径向尺寸和提高CNTs投加量,均有助于吸附去除HA;膜污染加速阶段,随着CNTs预涂覆膜进入膜污染加速阶段,HA的去除率由吸附阶段的不断降低开始出现上升拐点,TMP由于CNTs预涂覆膜的加快堵塞而不断升高;堵塞膜截留阶段,CNTs预涂覆低压膜在一定程度堵塞后,表现出截留去除HA的效能,且TMP仍保持在低压膜运行范围内,降低CNTs的径向尺寸,制备的预涂覆膜孔径小且分布均匀,有助于其提高截留去除HA的效能.整个恒流实验过程中,未负载CNTs的基膜对HA仅有微弱的吸附作用,且由于其较大的孔径,对HA的截留作用十分有限.本文通过对CNTs预涂覆低压膜吸附阶段和截留阶段的划分,明确了CNTs预涂覆低压膜在吸附饱和之后,能够有效截留水中HA,可作为水中腐殖质类污染物去除的一种有效手段. 相似文献