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1.
以拜耳法赤泥为二氧化碳(CO_2)固化剂,提出了基于超声波机械搅拌耦合作用下赤泥吸收二氧化碳的新思路,以期实现"以废治废"、行业气固两类废弃物得到高效综合利用的目标。以拜耳赤泥吸收低浓度二氧化硫的前期研究为基础,自行设计了超声波与机械搅拌耦合作用的鼓泡反应器,利用其"空化作用"与机械搅拌的耦合作用促进赤泥对低浓度二氧化碳的高效吸收。考察了在焙烧条件、温度、搅拌桨转速、液固比、气体流量、超声波功率对赤泥吸收二氧化碳的影响规律,得到最优条件,焙烧后可以大大提高赤泥对CO_2的固定能力,单独机械搅拌作用下,赤泥吸收CO_2适宜的条件为:反应温度25℃、气体流量0.025 m3·h~(-1)、液固比为6:1和搅拌转速150 r·min~(-1),此时最大固碳量为71.72 g·kg~(-1),加入超声波后固碳效果进一步提高,最佳超声波功率为600 W。  相似文献   

2.
利用HSC-Chemistry软件平台对以气-液-固三相为基础的水淬钢渣碳酸化固定二氧化碳进行了热力学分析,结果表明,温度700 K以下钢渣主要含钙相在水溶液中能够自发与CO2反应,碳酸化固定CO2是可行的;并通过实验研究了反应时间、钢渣粒径、CO2流量及液固比等主要参数对水淬钢渣碳酸化固定CO2的影响。结果显示,在初期阶段反应迅速,固碳率在3 h达到27.9%,即固定二氧化碳的能力约为279 kg/t(钢渣),随后逐渐趋于平衡。粒度越细对固碳过程越有利,液固比及CO2流量影响不明显;XRD及SEM结果也验证了水淬钢渣固定CO2是可行的。  相似文献   

3.
采用飞灰和水菱镁石水合搅拌制备飞灰/水菱镁石新型复合脱硫剂,模拟湿法烟气脱硫过程,采用正交实验分析法探讨了液固比(质量比)、反应温度、搅拌速度以及鼓泡深度4个因素对脱硫效率的影响。结果发现:复合脱硫剂的比表面积增大,这有利于该复合脱硫剂与气相SO2的接触和反应,因而提高了脱硫效率。复合脱硫剂的最佳反应组合:液固比为15.0∶1.0、反应温度为常温(20℃)、搅拌速度为150r/min、鼓泡深度为2.0cm,该条件下脱硫效率为98.58%。  相似文献   

4.
热调质方法是污泥深度脱水的有效办法之一。研究结果表明,污泥热调质过程中反应温度和反应时间对污泥热调质效果影响较大,搅拌速度影响较小。当反应温度从160℃升至180℃,反应时间从30 min增至60 min时,污泥溶液中挥发性悬浮固体(VSS)急剧溶解,释放出细胞里的结合水,表明污泥细胞破壁的温度条件为160~180℃,时间条件为45~60 min。热调质后污泥的比阻变化较大。随着反应温度的不断提高,比阻不断减小,污泥的脱水性能越来越好。实验确定了污泥热调质的最佳反应条件为:反应温度180℃,反应时间60 min,搅拌转速30 r/min。在此条件下,压滤后泥饼含水率约50%,滤液中COD浓度可达19 000 mg/L,有利于后续污泥的消化。  相似文献   

5.
电子废弃物的预处理技术   总被引:2,自引:0,他引:2  
主要探讨硝酸-硫酸这一混酸体系溶解电子废弃物的条件。试验表明:在60℃下,1.23mol/L硝酸和3.22mol/L.硫酸组成的混酸体系与电子废弃物在机械搅拌下反应2h,就可使得电子废弃物的溶解率达到93%以上,铜的浸出率达到99%以上。  相似文献   

6.
本文用正辛烷代替汽油从理论和实验两方面研究了水碳比变化对汽油氧化重整制氢反应的影响。理论研究表明 ,在绝热反应条件下 ,对应确定的反应温度存在一个最佳的氧油比及水碳比 ;实验研究表明 ,在非绝热反应体系中 ,在一定的氧油比及反应温度条件下 ,反应体系的转化率及生成氢的选择性均随水碳比的增加而增加 ,为实现燃料电池汽油制氢自热反应 ,反应体系应在一定水碳比条件下进行 ,实验条件下最佳的水碳比范围是 1.5— 2 .5之间。  相似文献   

7.
以尿素作为吸收液,与NOx反应生成N2和CO2,脱除烟气中的氮氧化物。以一套双级串连的填料塔为主体反应器,分别对气速、液气比、反应物浓度、添加剂浓度和反应温度等参数对尿素溶液吸收NOx反应的影响进行了实验研究,获得了优化实验工况,研究结果显示,在气速为0.1 m/s、液气比为16 L/m3、三乙醇胺为0.01%(质量比)、尿素浓度为13%(质量比)工况下,反应温度为30~70℃,脱硝总效率可达50%以上,且随着NOx体积分数增加而提高。  相似文献   

8.
张波  孙鑫  吴春笃  徐岗 《环境工程学报》2015,9(3):1264-1268
对不同种气液接触方式的臭氧气液传质性能进行了研究,考察了磁场作用下的臭氧进气量,液面高度以及液相p H值对微气泡臭氧传质效果的影响规律。实验研究表明,相同实验条件下,采用微气泡附加磁场(磁铁相吸)比底部曝气盘和微气泡发生器接触方式,液相中溶解的臭氧浓度分别提高了72.6%和11.4%,经过30 min后,水中溶解的臭氧浓度为8.91 mg/L,传质系数为0.2272 min-1,传质系数显著提高;在磁场的作用下的微气泡臭氧接触方式,臭氧气体流量较小的情况下,臭氧在液相溶解效率较高,液面高度h越高溶解的臭氧浓度越低,传质系数kLa值随着气液流量的增加而增加,但是随着液面高度h的增加而降低,液相的p H值也影响着传质效果,p H越低,水中溶解的臭氧浓度越高,传质系数越高。  相似文献   

9.
以废铅酸蓄电池中铅膏为研究对象,开展了用NH_4HCO_3为脱硫剂对铅膏进行脱硫转化的实验研究。通过分析反应过程中PbSO_4转化率随时间的变化关系,考察了搅拌速度、反应温度及NH_4HCO_3浓度对铅膏脱硫转化的影响;利用固液多相反应的收缩核模型,分析了反应的动力学过程,并计算了反应的表观活化能及表观反应级数。结果表明:在实验选取的条件范围内,提高反应温度、增大NH_4HCO_3浓度及加快搅拌速度均可以促进铅膏的脱硫转化;表观活化能为9.7 kJ·mol~(-1),表观反应级数为0.71,反应过程受内扩散步骤控制。研究结果可为铅膏铵法预脱硫技术能高效、低耗的应用提供参考。  相似文献   

10.
以250W照明金属卤化物灯为光源,研究了水中雌酮(E1)在UV-Vis/Fe(Ⅲ)/H2O2体系中的光降解;考查了初始pH、Fe(Ⅲ)、H2O2、E1初始浓度对E1光降解的影响。结果表明,UV-Vis/Fe(Ⅲ)/H2O2体系能有效地光降解E1,在[Fe(Ⅲ)30-20.8μmol/L、[H2O2]0=1664μmol/L、pH=3.0时,光照160min,18.5btmol/L E1的光降解率可达98.4%;在pH3.0~8.0范围内,pH初始值越小,E1降解率越大,反应初始速率越大;实验条件下,Fe(Ⅲ)、H2O2初始浓度越大,E1降解率越大,反应初始速率越大;E1初始浓度越低,E1降解率越大,反应初始速率越小。pH=3.0,实验浓度范围内的表观动力学方程为:dCE1/dt=0.00093[H2O2]^0.47[Fe(Ⅲ)]^0.62[E1]0.24;Fe(Ⅲ)是影响反应速率的主要浓度因素。  相似文献   

11.
The disposal of industrial brine sludge waste (IBSW) in chlor-alkali plants can be avoided by utilization of IBSW as a sorbent in wet flue gas desulfurization (FGD). The shrinking core model was used to determine the dissolution kinetics of IBSW, which is a vital step in wet FGD. The effects of solid-to-liquid ratio (m/v), temperature, pH, particle size, and stirring speed on the conversion and dissolution rate constant are determined. The conversion and dissolution rate constant decreases as the pH, particle size, and solid-to-liquid ratio are increased and increases as the temperature, concentration of acid, and stirring speed are increased. The sorbents before and after dissolution were characterized using x-ray fluorescence (XRF), x-ray diffraction (XRD), and scanning electron microscopy (SEM). An activation energy of 7.195 kJ/mol was obtained and the product layer diffusion model was found to be the rate-controlling step.

Implications: The use of industrial brine sludge waste as an alternative sorbent in wet flue gas desulfurization can reduce the amounts of industrial wastes disposed of in landfills. This study has proved that the sorbent can contain up to 91% calcium carbonate and trace amounts of sulfate, magnesium, and so on. This can be used as new sorbent to reduce the amount of sulfur dioxide in the atmosphere and the by-product gypsum can be used in construction, as a plaster ingredient, as a fertilizer, and for soil conditioning. Therefore, the sorbent has both economic and environmental benefits.  相似文献   


12.
湿法脱硫中石灰石溶解特性的模型及实验研究   总被引:1,自引:1,他引:0  
在石灰石-石膏湿法烟气脱硫中,石灰石的溶解影响到浆液吸收SO2的能力及吸收塔持浆池的大小.根据传质及化学离子平衡理论,建立了石灰石的溶解模型,并通过实验对模型进行了验证,结果表明,模拟结果与实验值基本一致,模型较好地反映出石灰石的溶解过程;在浆液pH较低的情况下,通过增强搅拌强度,可以明显提高石灰石的溶解速率,而在浆液...  相似文献   

13.
Adenosine triphosphate (ATP) content and carbon dioxide (CO2) production in soil vary considerably, depending on soil type, water content, light, stirring of soil, storage conditions, date of sampling, and chemicals added. In most soils, the biomass calculated on the basis of ATP-content was in line with that calculated on the basis of CO2-production.  相似文献   

14.
氢氧化镁是一种正在研究的用于脱除烟气中低浓度CO2的化学吸收剂。为了掌握工业用氢氧化镁粉末的溶解速率,利用缓冲溶液,在不改变溶液体积的情况下对不同悬浊液浓度、溶液温度、溶液pH值和搅拌速率情况下的氢氧化镁粉末溶解速率进行了研究。提高悬浊液浓度、提高溶液温度、降低溶液pH值和提高搅拌速率均能增大氢氧化镁的溶解速率。悬浊液浓度从0.1 mol/L增加到1 mol/L时,溶解速率增大了2.2倍;温度从23℃增加到52℃时,溶解速率增大了4.3~9.5倍;pH值从9.8降低到6.6时,溶解速率增大了78~225倍;搅拌速率从350 r/min增加到700 r/min时,溶解速率增大了1~2倍。  相似文献   

15.
氢氧化镁是一种正在研究的用于脱除烟气中低浓度CO2的化学吸收剂。为了掌握工业用氢氧化镁粉末的溶解速率,利用缓冲溶液,在不改变溶液体积的情况下对不同悬浊液浓度、溶液温度、溶液pH值和搅拌速率情况下的氢氧化镁粉末溶解速率进行了研究。提高悬浊液浓度、提高溶液温度、降低溶液pH值和提高搅拌速率均能增大氢氧化镁的溶解速率。悬浊液浓度从0.1 mol/L增加到1 mol/L时,溶解速率增大了2.2倍;温度从23℃增加到52℃时,溶解速率增大了4.3~9.5倍;pH值从9.8降低到6.6时,溶解速率增大了78~225倍;搅拌速率从350 r/min增加到700 r/min时,溶解速率增大了1~2倍。  相似文献   

16.
The removal of hydrogen sulfide by oxidation-adsorption on two type carbon fibers, Actitex FC1201 and RS1301, was studied. Two kinetic steps where identified. During the first step, the degradation appears to be limited by the oxidation reaction. In the second kinetic step, the by-products inhibit the hydrogen sulfide degradation. This leads to a limitation in the carbon site's accessibility and to a lower kinetic. The Langmuir-Hinshelwood model was used to correlate the experimental results and to estimate the kinetic (k) and the Langmuir adsorption (K) constants. For FC1201 fibers, the kinetic constant (k) is five time higher and the adsorption constant is five time lower compared to the RS1301 fibers. The role of the humidity was found to be highly beneficial for the removal of hydrogen sulfide. Especially in the second kinetic step, where it removes the by-product formed and therefore delays the occurrence of this low kinetic step. The kinetic constant (k) is strongly influenced by humidity while the Langmuir adsorption constant (K) seems independent. The effect of the nature of the gas phase on the reaction kinetic was also studied. Under a dry atmosphere, we note that the oxidation-reaction occurs even if the gaseous oxygen is not present. This oxidation is due to the oxygen surface function of the carbon fibers. Moreover, the degradation kinetic is faster under a dry nitrogen atmosphere. The presence of water traces leads to the acidification of the carbon surface, under oxygen or carbon dioxide atmospheres, and hence limits the hydrogen sulfide dissociation. In a humid atmosphere, the oxygen or carbon dioxide leads to a faster reaction kinetic. The acidification of the carbon surface is largely counterbalanced by the dissolution of the by-products.  相似文献   

17.
钙基吸附剂捕集生物质燃气中的二氧化碳   总被引:2,自引:0,他引:2  
生物质热解燃气中CO2的捕集,是提高燃气热值和实现碳减排的关键问题之一。为利用生物质热解燃气温度偏高的特点,拟通过化学吸附方法,捕集燃气中高浓度的CO2。为此,利用不同钙基前驱物制备了系列钙基固体吸附剂,系列钙基固体吸附剂对CO2的单次吸附和循环吸附实验结果表明,含钙和镁氧化物混合物的吸附剂具有较稳定的循环吸附特性以及较大的吸附负荷。孔结构特性分析表明,适宜于CO2吸附的有效孔径范围可能为小于4 nm。因此,可以通过对天然白云石的改性获得合适孔径的钙镁基固体吸附剂,达到有效捕集生物质燃气中CO2的目的。  相似文献   

18.
液晶显示器液晶处理与铟回收技术   总被引:7,自引:1,他引:6  
聂耳  罗兴章  郑正  盛名 《环境工程学报》2008,2(9):1251-1254
在实验室条件下,对液晶显示器回收的各个重要环节作了初步的探索,提出了一整套回收工艺.其中包括利用丙酮常温浸取去除偏光片、分离玻璃基板、溶解液晶,还包括利用硫酸溶液和二氧化锰联合浸取玻璃基板,铟的浸取率达89%.得到的铟的酸液经过萃取、置换和电解,可以得到铟的产品,为液晶显示器的资源化和无害化提供实验数据和技术支持.  相似文献   

19.
Abstract

A method to measure the in situ degradation rate of dissolved hydrocarbon contamination has been developed and applied at two locations at a field site. The method uses the rates of downward diffusion of oxygen and upward diffusion of carbon dioxide through the unsaturated zone, as calculated from vertical soil-gas concentration gradients, combined with stoichiometry to obtain two degradation rates in hydrocarbon mass per water table surface area per time. Values of 0.385 gram per m2 per day and 0.52 gram per m2 per day (based upon oxygen data) and 0.056 gram per m2 per day and 0.12 gram per m2 per day (based upon carbon dioxide data) were calculated at a field site with dissolved fuel contamination. This result of lower values from ground-air carbon dioxide concentrations is consistent with a significant fraction of the carbon dioxide produced being lost to the aqueous phase. Based upon a single-stage equilibrium phase-transfer model, gas/water volume ratios of 0.02 and 0.2 for the capillary fringe were calculated. Groundwater carbon dioxide fugacities and soil-gas carbon dioxide concentrations were used at the two locations and a third to determine whether the source of elevated soil carbon dioxide concentrations were unsaturated-zone hydrocarbon degradation or a saturated-zone process. This technique has potential applicability in setting risk-based remedial criteria and in allowing inclusion of the contribution of in situ degradation in remedial design. This can result in major remedial cost savings.  相似文献   

20.
Simultaneous reduction of SO2 and NO by catalyzed reaction with carbon monoxide at space rates approaching 104 vol/vol/hr has been shown. The reaction of sulfur dioxide with carbon monoxide results in the formation of carbon dioxide and elemental sulfur. Nitric oxide reacts with carbon monoxide to form carbon dioxide and molecular nitrogen. Metals supported on alumina appear to be the preferred catalysts. Among the effective metals are copper, silver, and palladium. A side reaction of carbon monoxide with elemental sulfur to form carbonyl sulfide requires that the initial amount of carbon monoxide be stoichio-metric for the amount of sulfur dioxide plus nitric oxide present. A furnace employing this method would have to be operated at low excess air, near stoichiometric fuel/air, or possibly slightly on the rich side.  相似文献   

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