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改性粉煤灰对空气中甲醛的吸附研究 被引量:8

Adsorption of formaldehyde in air by modified fly ash
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摘要 以粉煤灰为主要材料,使用3种方法分别对粉煤灰进行改性,研究不同条件下改性粉煤灰对空气中甲醛的吸附特性和去除效果,并探讨粉煤灰对甲醛的吸附和脱附机理。研究结果表明3种改性粉煤灰对甲醛的吸附能力由高到低为:ZnCl2改性粉煤灰,热处理粉煤灰,水洗粉煤灰;在甲醛初始质量浓度为0.41 mg/m3,改性粉煤灰用量为1.0 g,温度为25℃的情况下,ZnCl2改性粉煤灰对甲醛最大去除率达70.48%,去除效果与煤基活性炭的相当(最大去除率为68.96%),远超过了未改性的粉煤灰的最大去除率(30.71%);ZnCl2改性的粉煤灰重新活化后,可重复使用,5次再生实验后的吸附率仍达60.02%。 Using fly ash as a carrier,three kinds of methods were used to modify the nature of fly ash in order to study adsorption characteristics and the removal of formaldehyde in air under different experimental conditions.The mechanism of fly ash to adsorption and desorption of formaldehyde was also discussed.The results show that the adsorptive capacities of formaldehyde by modified fly ash from strong to weak are as follows: ZnCl2-modified fly ash,heat-treatment fly ash,water-treatment fly ash.When dosage of ZnCl2-modified fly ash is 1.0 g,the original concentration of formaldehyde is 0.41 mg/m3 and the temperature is 25 ℃,the maximum removal rate can reach 70.48%,which is much higher than that of non-modified fly ash(30.71%),and as much as that of coal-based activated carbon(68.96%).ZnCl2-modified fly ash can be effectually reused after reactivated,and the removal rate of formaldehyde remains up to 60.02% after five regenerations.
出处 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第7期2156-2161,共6页 Journal of Central South University:Science and Technology
基金 国家自然科学基金资助项目(50878080) 长沙市科技重大专项(K0902006-31)
关键词 甲醛 吸附 粉煤灰 最大去除率 改性 formaldehyde adsorption fly ash maximum removal rate modification
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参考文献15

  • 1Chin P, Yang L P, Ollis D F. Formaldehyde removal from air via a rotating adsorbent combined with a photocatalyst reactor: Kinetic modeling[J]. Journal of Catalysis, 2006, 237(1): 29-37.
  • 2塔娜,沈岳年,王成,张雁冰,齐和日玛.负载型纳米金催化剂对室内空气中甲醛的去除[J].环境科学学报,2009,29(6):1164-1169. 被引量:6
  • 3Seiji K, Keiji S, Yoshie S, et al. Formaldehyde and acetaldehyde adsorption properties of heat-treated rice husks[J]. Separation and Purification Technology, 2008, 61 (3): 398-403.
  • 4姜良艳,周仕学,王文超,吴峻青,卢国俭.活性炭负载锰氧化物用于吸附甲醛[J].环境科学学报,2008,28(2):337-341. 被引量:51
  • 5Rask6 J, Kecsk6s T, Kiss J. Adsorption and reaction of formaldehyde on TiO2-supported Rh catalysts studied by FTIR and mass spectrometry[J]. Journal of Catalysis, 2004, 226(1): 183-191.
  • 6Virote B, Srisuda S, Wiwut T. Preparation of activated carbons from coffee residue for the adsorption of formaldehyde[J]. Separation and Purification Technology, 2005, 42(2): 159-168.
  • 7李晶,李忠,刘冰,夏启斌,奚红霞.Effect of Relative Humidity on Adsorption of Formaldehyde on Modified Activated Carbons[J].Chinese Journal of Chemical Engineering,2008,16(6):871-875. 被引量:25
  • 8陈云嫩,柴立元,舒余德.骨炭去除水中砷(Ⅴ)的试验研究[J].中南大学学报(自然科学版),2008,39(2):279-283. 被引量:12
  • 9Girods P, Dufour A, Fierro V, et al. Activated carbons prepared from wood particleboard wastes: Characterisation and phenol adsorption capacities[J]. Journal of Hazardous Materials 2009, 166(1): 491-501.
  • 10Izquierdo M T, Rubio B. Carbon-enriched coal fly ash as a precursor of activated carbons for SO2 removal[J]. Journal of Hazardous Materials, 2008, 155(1/2): 199-205.

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