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为了废弃桑枝的资源化,利用3-氯-2-羟丙基三甲基氯化铵(CTA)对桑枝进行醚化改性制备桑枝基吸附剂,通过正交实验优化了吸附剂的制备条件。采用制备的吸附剂吸附水中阴离子染料日落黄,研究了pH值、吸附剂投加量、吸附时间和吸附温度对吸附效果的影响,测定了日落黄在吸附剂上的吸附等温线。结果表明,制备吸附剂的最佳工艺条件为CTA与桑枝粉的质量比为0.5,NaOH与桑枝粉的质量比为1.0,微波功率为300 W,反应时间为3 min。制备的吸附剂对质量浓度为50 mg/L的日落黄的最大吸附去除率达92.0%。日落黄在吸附剂上的等温吸附线可用Langmuir方程和Freundlich方程来描述,饱和吸附容量为18.21 mg/g,吸附易于进行。吸附速率数据可以用准二级吸附动力学方程拟合,说明日落黄在吸附剂上的吸附以化学吸附为主。 相似文献
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pH和共存阳离子对草莓茎吸附水体氨氮的影响 总被引:2,自引:4,他引:2
为了开发新型氨氮吸附剂和探讨环境因素对氨氮吸附的影响,以草莓茎为吸附材料,通过批平衡法研究了不同初始pH、共存阳离子、初始浓度和温度下氨氮去除的特点.结果表明,等温吸附符合Langmuir和Freundlich这2种模型,理论最大吸附量qm在15、25和35℃下分别为3.05、4.24和4.79 mg.g-1.温度升高有利于草莓茎对氨氮的吸附.草莓茎吸附氨氮最适初始pH为4~8.低pH减少草莓茎表面负电荷,高pH减少溶液中NH 4+的含量,都减少氨氮的吸附.草莓茎对溶液pH的缓冲则缓和了两者对氨氮吸附的影响.共存阳离子K+、Na+、Ca2+、Mg2+对草莓吸附铵离子没有竞争作用,而Zn2+、Al3+则由于其水解降低溶液的pH而显著降低草莓茎对氨氮的吸附.草莓茎吸附氨氮的应用pH范围较广且不易受废水中常见金属阳离子的干扰,说明草莓茎不仅可以作为废水中氨氮的吸附剂原料,而且较大多数矿物原料还有其自身的优势. 相似文献
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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
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研究了CCTS对低浓度游离酸的吸附特性,基于吸附质-分子探针电位法,考察了吸附剂活性中心数目、游离酸种类和温度对吸附行为的影响。结果表明,在30℃时,CCTS吸附游离酸的过程,遵循单分子层机理进行吸附。吸附剂―吸附质相互作用能U制约表观吸附速率常数K,K、U大小分别为2.519×10-2,4.084×10-2,9.398×10-2L/min和7.264,7.420,7.926 kJ/mol,两者存在线性相关性,呈逐渐增大趋势。K、U大小随着活性中心数目G的增加而增大。CCTS吸附游离酸为吸热过程,吸附表观活化能Ea为33.98 kJ/mol。3种类型游离酸K、U的大小顺序为:HClO4>HNO3>H2SO4,吸附分维数Dw分别为1.384、1.567、1.911,Dw值越大,导致表观吸附速率常数降低。 相似文献
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A novel carbonaceous adsorbent for heavy metal removal was prepared from raw coal by one-step simple sulfur impregnation using
K2S. Raw coal was mixed with K2S powder and then heated at 800°C for 30 min in nitrogen to produce K2S char. The sulfur content
and form in K2S char were determined, and the ability of K2S char to adsorb Zn2+, Cd2+ and Pb2+ was examined. The K2S impregnation
was e ective at impregnating sulfur into coal, especially in the form of elemental, thiophenic and sulfatic sulfur. The sulfur content of
K2S char was higher than those of raw coal and pyrolysis char. The Zn2+ removal in 2.4 mmol/L of Zn2+ solution by K2S char was
higher than raw coal with the removal rate of 100%. K2S char adsorbed Pb2+ and Cd2+ in 24 mmol/L of Pb2+ and Cd2+ solution with
the removal rate of 97% and 35%, respectively. The elution extents of adsorbed Pb2+ and Cd2+ were zero in distilled water and 27%
in 0.1 mol/L HCl solution. These results indicated that an e ective adsorbent for heavy metal ions was prepared from coal using K2S
sulfur impregnation, and that the adsorbed metals were strongly retained in K2S char. 相似文献
30.
稀土吸附剂对废水深度除磷研究 总被引:2,自引:0,他引:2
通过浸渍——干燥——焙烧法制备预载镧氧化物稀土吸附剂,探讨了该吸附剂对水中磷的吸附性能。研究表明在镧离子浓度为0.025mol/1、pH为10-11的溶液中浸渍,于500℃温度下焙烧制得的稀土吸附剂,其除磷效果可达95%。 相似文献