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81.
以油页岩灰渣制备的水玻璃为原料,采用不同种类的硅烷偶联剂,在常压下制备了多孔疏水SiO2气凝胶。实验结果表明:在常压干燥之前,对湿凝胶进行溶剂交换-表面改性,是获得多孔气凝胶的关键。未加入硅烷偶联剂制备的气凝胶具有微孔结构;不同硅烷偶联剂制备的SiO2气凝胶均为纳米颗粒组成的中孔结构,比表面积800~980 m2/g,密度0.084~0.11 g/m3,最可几孔径9.38~10.10 nm;FT-IR分析结果表明凝胶表面Si-OH已被改性为Si-CH3,表面呈现较强的疏水性,且疏水性HMDZ>TMCS>DMDC。TG-DTA实验结果表明,改性气凝胶的热稳定性都能达到350℃,HMDZ和TMCS的气凝胶具有更高的热稳定性。  相似文献   
82.
城市市政污水处理厂产生的剩余污泥是一种良好的重金属生物吸附剂制备原料。以北京某市政污水处理厂产生的脱水剩余污泥为原料,采用碱改性处理方法,制备得到碱改性脱水污泥生物吸附剂,通过其对水中镉的等温吸附实验,考察其重金属吸附效能。研究结果表明:碱改性脱水污泥对水中镉的等温吸附曲线符合Langmuir等温吸附模型。碱改性处理后,脱水污泥对水中镉的最大饱和吸附容量提高了2.8倍,达0.966 mmol/g,显著高于同类型脱水污泥生物吸附剂。碱改性脱水污泥对水中镉的最大饱和吸附容量与改性过程中所使用的Na OH浓度之间的线性相关性较差,呈现一定的波动变化趋势。  相似文献   
83.
Removal of polycyclic aromatic hydrocarbons (PAHs), e.g., naphthalene, acenaphthene, phenanthrene and pyrene, from aqueous solution by raw and modified plant residues was investigated to develop low cost biosorbents for organic pollutant abatement. Bamboo wood, pine wood, pine needles and pine bark were selected as plant residues, and acid hydrolysis was used as an easily modification method. The raw and modified biosorbents were characterized by elemental analysis, Fourier transform infrared spectroscopy and scanning electron microscopy. The sorption isotherms of PAHs to raw biosorbents were apparently linear, and were dominated by a partitioning process. In comparison, the isotherms of the hydrolyzed biosorbents displayed nonlinearity, which was controlled by partitioning and the specific interaction mechanism. The sorpfion kinetic curves of PAHs to the raw and modified plant residues fit well with the pseudo second-order kinetics model. The sorption rates were faster for the raw biosorbents than the corresponding hydrolyzed biosorbents, which was attributed to the latter having more condensed domains (i.e., exposed aromatic core). By the consumption of the amorphous cellulose component under acid hydrolysis, the sorption capability of the hydrolyzed biosorbents was notably enhanced, i.e., 6-18 fold for phenanthrene, 6-8 fold for naphthalene and pyrene and 5-8 fold for acenaphthene. The sorpfion coefficients (Kd) were negatively correlated with the polarity index [(O+N)/C], and positively correlated with the aromaticity of the biosorbents. For a given biosorbent, a positive linear correlation between logKoc and logKow for different PAHs was observed. Interestingly, the linear plots of logKoc-logKow were parallel for different biosorbents. These observations suggest that the raw and modified plant residues have great potential as biosorbents to remove PAHs from wastewater.  相似文献   
84.
Removal of noxious dyes is gaining public and technological attention. Herein grafting polymerization was employed to produce a novel adsorbent using acrylic acid and carboxymethyl cellulose for dye removal. Scanning electron microscopy and Fourier-transform infrared spectroscopy verified the adsorbent formed under optimized reaction conditions. The removal ratio of adsorbent to Methyl Orange, Disperse Blue 2BLN and malachite green chloride reached to 84.2%, 79.6% and 99.9%, respectively. The greater agreement between the calculated and experimental results suggested that pseudo second-order kinetic model better represents the kinetic adsorption data. Equilibrium adsorptions of dyes were better explained by the Temkin isotherm. The results implied that this new cellulose-based absorbent had the universaiity for removal of dyes through the chemical adsorption mechanism.  相似文献   
85.
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   
86.
以硅酸盐水泥为粘结剂,分别选取淀粉、葡萄糖、活性炭、壳聚糖为造孔剂,采用蒸压养护和高温烧结的方法制备微孔沸石球,研究了硅酸盐水泥含量、烧结温度、造孔剂种类和物料配比对沸石球的氨氮去除率、强度的影响。通过层次分析法筛选出最佳制备条件:物料配比为(100∶10∶5)(沸石∶水泥∶活性炭),1.2 MPa下蒸压养护6 h,烧结温度500℃,烧结时间2 h。制备的微孔沸石球对废水中氨氮去除率达到31.71%,强度为1.04 MPa。  相似文献   
87.
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   
88.
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   
89.
树脂基固态胺吸附剂室温下对低浓度CO2的吸附性能研究   总被引:2,自引:1,他引:1  
以大孔甲基丙烯酸酯吸附树脂为载体,聚乙烯亚胺(PEI)为有机胺,采用液相浸渍法制备出固态胺吸附剂,并研究了其在室温下对低浓度CO2的吸附行为.同时,利用氮气吸附、热重分析和扫描电镜表征了材料的物理化学性质,并采用热重法和固定床吸附法考察了材料的CO2吸附性能.结果表明,大孔树脂担载50%PEI(质量分数)时吸附性能最佳,对纯CO2的最大吸附量为175 mg·g-1;CO2的吸附行为由扩散动力学与吸附热力学共同决定,低温有利于提高吸附容量;吸附剂对400 ppm~15%浓度的CO2都具有优异的动态吸附性能,其中对400 ppm CO2的吸附量达到86 mg·g-1,对15%CO2的吸附量达到150 mg·g-1;湿度对吸附起促进作用,相对湿度为10%时,对400 ppm CO2的吸附量提高至139mg·g-1;吸附剂具有优异的循环性能,具有直接空气捕集CO2的潜力.  相似文献   
90.
向文英  张志明 《环境科学学报》2014,34(11):2792-2797
为了提高污泥细胞吸附重金属离子的应用能力,采用壳聚糖包埋固定活性污泥,制备了粒径2~3 mm的壳聚糖活性污泥复合吸附剂SCTS.以吸附溶液中CrO2-4的吸附率为指标,通过单因素实验对制备过程中采用的2种固化液及5种发泡剂进行比选,考察了固化液浓度、发泡剂量、交联剂量、活性污泥与壳聚糖用量比值及发泡温度对SCTS吸附能力的影响,由正交实验确定影响因素主次顺序及最优水平组合.结果发现,固化液浓度、发泡剂量、污泥与壳聚糖用量比值及发泡温度对SCTS吸附能力影响较强,影响次序为固化液浓度发泡剂量活性污泥与壳聚糖用量比值发泡温度.最优水平组合为4 g·L-1三聚磷酸钠(STPP)固化液、剂量为吸附剂质量10%的NH4HCO3发泡剂、活性污泥与壳聚糖用量比值0.5、发泡温度100℃,此时CrO2-4吸附率最高可达97.3%.该吸附剂的制备研究为污泥的资源化利用探索了新的途径.  相似文献   
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