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1.
ZnCl2法污泥含炭吸附剂对模拟烟气中气态汞的吸附   总被引:1,自引:0,他引:1  
采用改进的ZnCl2化学活化法制备污泥含炭吸附剂,利用EDS以及氮吸附等多种测试手段对所制得的污泥含炭吸附剂进行表征,并利用其处理模拟烟气汞污染物,实验结果表明,污泥含炭吸附剂对Hg0的吸附包括物理吸附作用和化学吸附作用,以物理吸附作用为主;随着Hg0入口浓度的提高,污泥含炭吸附剂的Hg0饱和吸附容量增大;随着吸附反应温度的升高污泥含炭吸附对Hg0的吸附作用减弱;在吸附反应温度125℃,Hg0入口浓度60.4 μg/m3,污泥含炭吸附剂和选定的活性炭对Hg0的吸附容量分别为81.2 μg/g和53.8 μg/g,污泥含炭吸附剂对Hg0的吸附作用好于选定的活性炭。  相似文献   

2.
ZnCl_2法污泥含炭吸附剂对模拟烟气中气态汞的吸附   总被引:1,自引:1,他引:0  
采用改进的ZnCl2化学活化法制备污泥含炭吸附剂,利用EDS以及氮吸附等多种测试手段对所制得的污泥含炭吸附剂进行表征,并利用其处理模拟烟气汞污染物,实验结果表明,污泥含炭吸附剂对Hg0的吸附包括物理吸附作用和化学吸附作用,以物理吸附作用为主;随着Hg0入口浓度的提高,污泥含炭吸附剂的Hg0饱和吸附容量增大;随着吸附反应温度的升高污泥含炭吸附对Hg0的吸附作用减弱;在吸附反应温度125℃,Hg0入口浓度60.4 ug/m3,污泥含炭吸附剂和选定的活性炭对Hg0的吸附容量分别为81.2 ug/g和53.8 ug/g,污泥含炭吸附剂对Hg0的吸附作用好于选定的活性炭.  相似文献   

3.
污泥含炭吸附剂对挥发性有机废气吸附实验研究   总被引:1,自引:0,他引:1  
研究了污泥含炭吸附剂对挥发性有机污染物的吸附特性。结果表明,污泥含炭吸附剂对苯系物的吸附为典型的物理吸附,其吸附甲苯等温线的类型系优惠型吸附等温线,表明具有良好的吸附能力;在吸附反应温度为20℃,气体流量为500 mL/m in(停留时间为0.424 s),甲苯浓度为2 700 mg/m3时,甲苯的饱和吸附容量为150.0 mg/g;同时,研究表明污泥含炭吸附剂对苯系物的饱和吸附容量和吸附强弱次序为二甲苯甲苯苯。结果表明污泥含炭吸附剂适合对中低浓度有机废气的吸附净化。  相似文献   

4.
脱水污泥制备含炭吸附剂及其应用研究   总被引:1,自引:0,他引:1  
采用热解炭化法、物理活化法、化学活化法制备污泥含炭吸附剂,通过静态吸附实验研究各种影响污泥含炭吸附剂吸附性能的因素.实验结果表明,采用化学活化法制得的污泥含炭吸附剂吸附性能最好,在以ZnCl2为活化剂、锯末添加剂投加量为脱水污泥质量的1%、ZnCl2为3 mol/L、活化温度为450 ℃、活化时间为1.5 h、固液质量比(干污泥与活化剂溶液的质量比)为1:4的最佳制备条件下,制得的污泥含炭吸附剂碘吸附值在520 mg/g以上,产物收率>60%,比表面积>230 m2/g,总孔容积为0.35 mL/g,其中微孔容积为0.08 mL/g,中孔容积为0.23 mL/g.利用其处理城市污水,其对COD、色度、TP的去除率好于选定的商品颗粒活性炭.  相似文献   

5.
改性污泥活性炭对水中镉离子的吸附性能   总被引:3,自引:0,他引:3  
以城市污水处理厂的剩余污泥为原料,氯化锌为活化剂制备污泥活性炭,对一部分污泥活性炭用6.0 mol/L的硝酸进行改性,并研究了未改性和改性的污泥活性炭对Cd2+的吸附行为的影响。结果表明,在pH为5.0、Cd2+初始浓度为100 mg/L、吸附剂投加量为2.0 g/L、反应温度为25℃时,未改性的污泥活性炭吸附容量为8.45 mg/g,硝酸改性的污泥活性炭吸附容量达到了23.35 mg/g。改性和未改性的污泥活性炭对Cd2+都有较好的吸附容量,硝酸改性大幅度提高了污泥活性炭对Cd2+的吸附性能。常温下改性污泥活性炭对Cd2+的吸附符合Langmuir吸附等温式。  相似文献   

6.
为了提高沸石对汞的吸附性,利用半胱胺盐酸盐对天然斜发沸石进行改性,制得巯基改性沸石。研究了吸附剂用量、pH值、温度、Hg^2+浓度和吸附时间对沸石和巯基改性沸石吸附Hg^2+的影响,并进一步研究了吸附机理。结果表明,巯基改性沸石吸附Hg^2+受pH值、温度的影响较小,吸附机制主要是沸石表面的硫与Hg^2+的化学反应。而天然沸石对Hg^2+的吸附主要是离子交换作用,受温度、pH值等的影响较大,随温度的升高吸附量下降。整个吸附过程以较快的速度进行。天然沸石在吸附时间为1h、巯基改性沸石在0.5h时基本达到吸附平衡。吸附条件试验和Langmuir等温吸附模型都表明,巯基改性沸石对Hg^2+的吸附能力得到了很大的提高,吸附容量由8.06mg/g提高到19.88mg/g,提高了146.65%。  相似文献   

7.
脱灰煤基活性炭吸附处理含镉废水   总被引:2,自引:0,他引:2  
考察了硝酸脱灰煤样自制活性炭对Cd(Ⅱ)的吸附去除特征。结果表明,随煤样粒径的减小,活性炭的吸附能力增强,吸附过程符合分形动力学特征;随着镉浓度的升高,活性炭对镉的吸附量增加,活性炭吸附镉符合Langmuir等温方程,镉离子在活性炭上的吸附属单分子层吸附;煤基活性炭适宜的吸附除镉条件为粒径0.054mm、Cd(Ⅱ)初始浓度35mg/L、活性炭用量0.05g、吸附时间1h,此时的吸附容量达40mg/g。  相似文献   

8.
污泥活性炭的表征及其对Cr(Ⅵ)的吸附特性   总被引:1,自引:0,他引:1  
以城市污水处理厂污泥为原料,采用磷酸活化一微波热解法制备得到污泥活性炭,并将其用于吸附水溶液中的Cr(Ⅵ)。分别采用元素分析仪(VarioELcube)、比表面积孔径分布测定仪(ASAP2020)、扫描电镜(SEM)和傅里叶红外光谱(FT—IR)等仪器对原污泥及污泥活性炭的表面组成和结构进行表征,探讨污泥活性炭的孔隙结构参数和表面化学性能。通过静态吸附实验,考察了溶液初始pH,接触时间,初始Cr(Ⅵ)浓度对污泥活性炭吸附Cr(Ⅵ)效果的影响,并探讨了污泥活性炭去除Cr(Ⅵ)的机理。实验结果表明,pH越低吸附效果越好,吸附平衡时间为100h。不同温度下吸附过程均符合Langmuir等温吸附模型,30℃时最大吸附容量为27.55mg/g;吸附动力学过程符合准二级速率方程(R2〉0.99);污泥活性炭对Cr(Ⅵ)的去除是一个吸附-还原耦合的过程。  相似文献   

9.
在实验室条件下,以静态、序批的方法研究了厌氧颗粒污泥对废水中Hg^2+的吸附特性及环境条件对其吸附能力的影响,并通过红外光谱和能谱对比手段,初步探讨了厌氧颗粒污泥吸附Hg^2+的机理。结果表明,厌氧颗粒污泥对Hg^2+的吸附过程符合准二级吸附动力学模型,其吸附等温线与Freundlich型拟合得较好(R^2=0.9933);pH是影响吸附的重要因素,在pH值为3~8的范围内,吸附量较大,最大为64.64mg/g,当pH值大于8或小于3时,吸附量逐渐下降;温度对吸附也有一定的影响,但影响程度不明显。红外光谱和能谱分析表明,厌氧颗粒污泥表面功能基团对Hg^2+的络合作用是吸附的主要机理,这些基团包括-CH、-CH2、-CH3、P—H、C=0、C-N、P=0、S=0及=C—H,同时在吸附过程中还存在一定的离子交换吸附。  相似文献   

10.
活性炭纤维对水中微囊藻毒素的吸附性能   总被引:1,自引:0,他引:1  
利用活性炭纤维对水中微囊藻毒素MC—LR的吸附,研究了吸附过程的热力学与动力学特性。结果表明,活性炭纤维对MC—LR的平衡吸附量在相同温度下随MC-LR初始浓度的增加而显著增大,并随着温度升高而增加,最大吸附量达246μg/g。不同温度条件下,活性炭纤维对MC-LR的吸附均较好地符合Langmuir等温吸附模型。通过热力学分析发现,△H=15.7kJ/mol、△G〈0、△S〉0,表明该吸附是自发的、吸热的过程,温度升高有利于吸附反应。动力学研究表明,该过程符合一级动力学方程。吸附反应速率受颗粒内扩散和液膜扩散共同影响。活性炭纤维经再生后,平衡吸附量变化较小,具有良好的重复使用性能。  相似文献   

11.
This study selected biosolids from a petrochemical waste-water treatment plant as the raw material. The sludge was immersed in 0.5-5 M of zinc chloride (ZnCl2) solutions and pyrolyzed at different temperatures and times. Results indicated that the 1-M ZnCl2-immersed biosolids pyrolyzed at 500 degrees C for 30 min could be reused and were optimal biosolid adsorbents for benzene adsorption. Pore volume distribution analysis indicated that the mesopore contributed more than the macropore and micropore in the biosolid adsorbent. The benzene adsorption capacity of the biosolid adsorbent was 65 and 55% of the G206 (granular-activated carbon) and BPL (coal-based activated carbon; Calgon, Carbon Corp.) activated carbons, respectively. Data from the adsorption and desorption cycles indicated that the benzene adsorption capacity of the biosolid adsorbent was insignificantly reduced compared with the first-run capacity of the adsorbent; therefore, the biosolid adsorbent could be reused as a commercial adsorbent, although its production cost is high.  相似文献   

12.
Abstract

This study selected biosolids from a petrochemical waste-water treatment plant as the raw material. The sludge was immersed in 0.5-5 M of zinc chloride (ZnCl2) solutions and pyrolyzed at different temperatures and times. Results indicated that the 1-M ZnCl2-immersed biosolids pyrolyzed at 500 °C for 30 min could be reused and were optimal biosolid adsorbents for benzene adsorption. Pore volume distribution analysis indicated that the mesopore contributed more than the macropore and micropore in the biosolid adsorbent. The benzene adsorption capacity of the biosolid adsorbent was 65 and 55% of the G206 (granular-activated carbon) and BPL (coal-based activated carbon; Calgon, Carbon Corp.) activated carbons, respectively. Data from the adsorption and desorption cycles indicated that the benzene adsorption capacity of the biosolid adsorbent was insignificantly reduced compared with the first-run capacity of the adsorbent; therefore, the biosolid adsorbent could be reused as a commercial adsorbent, although its production cost is high.  相似文献   

13.
Conversion of sewage sludge to activated carbon is attractive as an alternative method to ocean dumping for the disposal of sewage sludge. Injection of activated carbon upstream of particulate matter control devices has been suggested as a method to remove elemental mercury from flue gas. Activated carbon was prepared using various activation temperatures and times and was tested for their mercury adsorption efficiency using lab-scale systems. To understand the effect of the physical property of the activated carbon, its mercury adsorption efficiency was investigated as a function of its Brunauer–Emmett–Teller (BET) surface area. Two simulated flue gas conditions, (1) without hydrogen chloride (HCl) and (2) with 20 ppm HCl, were used to investigate the effect of flue gas composition on the mercury adsorption capacity of activated carbon. Despite very low BET surface area of the prepared sewage sludge activated carbons, their mercury adsorption efficiencies were comparable under both simulated flue gas conditions to those of pinewood and coal activated carbons. After injecting HCl into the simulated flue gas, all sewage sludge activated carbons demonstrated high adsorption efficiencies, that is, more than 87%, regardless of their BET surface area.

Implications: We tested activated carbons prepared from dried sewage sludge to investigate the effect of their physical properties on their mercury adsorption efficiency. Using two simulated flue gas conditions, we conducted mercury speciation for the outlet gas. We found that the sewage sludge activated carbon had mercury adsorption efficiency comparable to pinewood and coal activated carbons, and the presence of HCl minimized the effect of physical property of the activated carbon on its mercury adsorption efficiency.  相似文献   


14.
采用溴化钾、碘化钾和硫磺对竹活性炭掺杂改性,利用电感耦合等离子体发射光谱仪测定滤液中汞离子浓度,用除汞效率和吸附容量评价活性炭对溶液中汞离子的吸附性能,探讨其吸附机理。结果表明,掺杂改性明显提高了竹活性炭的除汞性能。原竹活性炭的除汞效率为78.6%,吸附容量为2.210 mg/g;经碘化钾、溴化钾和硫磺掺杂改性后的竹活性炭除汞效率分别为94.3%、93.8%和88.8%,吸附容量分别为2.830、2.813和2.663 mg/g;经溴化钾(碘化钾)和硫磺联合改性的竹活性炭对水溶液中汞离子的吸附性能性能又有提高,其中以先载硫后载溴化钾的方法除汞效果最好,除汞效率达96.6%,吸附容量为2.898 mg/g。  相似文献   

15.
Molecularly imprinted polymer adsorbent has been prepared to remove a group of recalcitrant and acutely hazardous (p-type) chemicals from water and wastewaters. The polymer adsorbent exhibited twofold higher adsorption capacity than the commercially used polystyrene divinylbenzene resin (XAD) and powdered activated carbon adsorbents. Higher adsorption capacity of the polymer adsorbent was explained on the basis of high specific surface area formed during molecular imprinting process. Freundlich isotherms drawn showed that the adsorption of p-type chemicals onto polymer adsorbent was kinetically faster than the other reference adsorbents. Matrix effect on adsorption of p-type chemicals was minimal, and also polymer adsorbent was amenable to regeneration by washing with water/methanol (3:1, v/v) solution. The polymer adsorbent was unaltered in its adsorption capacity up to 10 cycles of adsorption and desorption, which will be more desirable in cost reduction of treatment compared with single-time-use activated carbon.  相似文献   

16.
研究了非甾体抗炎药双氯芬酸的吸附去除过程与机制。对吸附处理效果较好的活性炭与纳米羟基氧化铁(α-FeOOH)进行了比表面积、Zeta电位等表面特性的表征,研究比较了双氯芬酸在活性炭与α—FeOOH2种材料上的吸附去除效果与吸附机制。结果表明,在相同的实验条件下,活性炭与α-FeOOH对双氯芬酸吸附去除率可分别达到97.9%和84.3%;双氯芬酸在活性炭上的吸附主要是由于活性炭较大的比表面积与疏水分配作用,在α-FeOOH上的吸附主要是由于静电引力作用;活性炭与α-FeOOH对双氯芬酸的吸附去除效果均随pH的升高而降低;在pH=6时,活性炭与α-FeOOH对双氯芬酸钠的吸附等温线均符合Langmuir方程,单位饱和吸附量分别为109.98mg/g和58.96mg/g;活性炭对双氯芬酸具有更强的吸附能力。  相似文献   

17.
Toledo LC  Silva AC  Augusti R  Lago RM 《Chemosphere》2003,50(8):1049-1054
In this work Fenton's reagent was used to treat activated carbon saturated with organochloro compounds for the oxidation of the adsorbed contaminants and the regeneration of the carbon adsorbent. Activated carbon containing adsorbed chlorinated model substrates such as chlorobenzene, tetrachloroethylene, chloroform or 1,2-dichloropropane was treated with Fenton's reagent at room temperature resulting in a rapid consumption of the organochloro compounds. Thermogravimetric, infrared, BET surface area and MIMS adsorption studies showed that Fenton's treatment has no significant effect on the physico-chemical properties of the activated carbon. The used carbon adsorbents can be efficiently regenerated and recycled with no loss of its adsorption capacity even after five consecutive treatments with Fenton's reagent.  相似文献   

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