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1.
以低浓度Cu~(2+)水溶液模拟重金属离子废水,研究了胶原多肽基表面活性剂(阴离子型CBS和阳离子型C-CBS)对重金属离子废水的沉淀浮选性能。通过单因素实验考察了pH、气速、表面活性剂质量浓度、气浮时间、Cu~(2+)初始浓度等因素对废水中Cu~(2+)沉淀浮选效果的影响。结果表明,CBS和C-CBS均适用于在碱性条件下对金属离子废水进行沉淀浮选,Cu~(2+)的去除率达到90%左右;且随着气速的升高,Cu~(2+)的去除率增加而后趋于不变;随着表面活性剂用量的增加,对CBS,Cu~(2+)的去除率增加,而对C-CBS,Cu~(2+)的去除率反而下降;随气浮时间延长,Cu~(2+)去除率逐渐增加而后趋于不变。研究表明,胶原多肽基表面活性剂可用于重金属离子废水的沉淀浮选。  相似文献   

2.
周生鹏  霍文凯  王茹  廖学品  石碧 《化工学报》2016,67(9):3872-3878
以低浓度Cu2+水溶液模拟重金属离子废水,研究了胶原多肽基表面活性剂(阴离子型CBS和阳离子型C-CBS)对重金属离子废水的沉淀浮选性能。通过单因素实验考察了pH、气速、表面活性剂质量浓度、气浮时间、Cu2+初始浓度等因素对废水中Cu2+沉淀浮选效果的影响。结果表明,CBS和C-CBS均适用于在碱性条件下对金属离子废水进行沉淀浮选,Cu2+的去除率达到90%左右;且随着气速的升高,Cu2+的去除率增加而后趋于不变;随着表面活性剂用量的增加,对CBS,Cu2+的去除率增加,而对C-CBS,Cu2+的去除率反而下降;随气浮时间延长,Cu2+去除率逐渐增加而后趋于不变。研究表明,胶原多肽基表面活性剂可用于重金属离子废水的沉淀浮选。  相似文献   

3.
泡沫分离除去水溶液中微量金属离子   总被引:3,自引:2,他引:3  
以十二烷基苯磺酸为表面活性物质,采用泡沫分离技术分别对脱除水溶液中微量的铁、铜、钠离子的分离过程进行了研究.重点考察了溶液的pH、表观气速、表面活性剂浓度及泡沫塔装液量对分离效果的影响.结果表明在各自最佳操作条件下铁离子(Ⅲ)的去除率为95.2%,富集比为13.6;铜离子(Ⅱ)的去除率为94.6%,富集比为16.5;钠离子去除率为73.1%,富集比为32.3.与常规的表面活性剂十二烷基硫酸钠相比,十二烷基苯磺酸在泡沫分离过程结束后不会在体系中引入新的金属离子,这为探索脱盐新方法提供了依据.  相似文献   

4.
为了有效去除水溶液中的结晶紫,以疏水纳米二氧化硅作为捕获剂,在不需要添加任何表面活性剂的前提下开发了一种新型泡沫浮选技术。结果表明,当无水乙醇用量0.8%(V)、p H值为9.0、疏水纳米二氧化硅浓度200 mg×L~(-1)、气速700 m L×min~(-1)、装液量400 m L时,废水中结晶紫的去除率和富集比分别为94.7%和19.7;疏水纳米二氧化硅的去除率和富集比分别为93.9%和14.2。消泡液中的疏水纳米二氧化硅在p H值为1.0的无水乙醇溶液经两次解吸操作,结晶紫解吸率可达到90.2%。通过旋蒸操作,可将解吸液中结晶紫染料回收,同时纳米颗粒达到重复利用的目的。因此,该技术对处理染料废水具有重要的指导意义。  相似文献   

5.
泡沫分离法处理甲基橙染料废水工艺   总被引:1,自引:0,他引:1  
为开发一种设备和工艺简单、成本低且不产生二次污染的染料废水处理方法,以甲基橙模拟染料废水为研究体系,对泡沫分离法脱除甲基橙染料废水色素的工艺进行了研究。研究了pH值、气体流速、表面活性剂质量浓度、装液量对脱色的影响,以表面活性剂十六烷基三甲基溴化铵(CTAB)为捕收剂,确定的最佳操作条件为:pH值6.0,气速0.04 m3/h,CTAB质量浓度90 mg/L,装液量1 000 mL,第1次脱色富集比β为111.0,脱色率R为99.5%。然后,对破沫液进行过滤,所得的滤液可代替部分表面活性剂进行下一次脱色。当补加的表面活性剂与废水中甲基橙的摩尔比为0.89∶1时,第2次脱色率为99.4%,富集比为50。  相似文献   

6.
泡沫分离法处理结晶紫染料废水的工艺   总被引:3,自引:0,他引:3  
以结晶紫模拟染料废水为研究体系,对泡沫分离法脱除结晶紫染料废水色素的工艺进行了研究,考察了以表面活性剂十二烷基苯磺酸钠(SDBS)为捕收剂时,pH、气体流速、表面活性剂浓度、装液量对脱色效果的影响,利用正交实验确定了优化操作条件. 结果表明,当pH为11.0、气速0.018 m3/h、SDBS浓度450 mg/L、装液量500 mL时,富集比为10.3,废水中结晶紫脱色率为93.5%.  相似文献   

7.
开发高效、可持续的分离技术是新形势下染料废水处理的重要课题。针对化学表面活性剂易造成二次污染和生物表面活性剂成本较高的问题,从农业副产品—紫苏饼粕中提取蛋白质作为起泡剂和捕收剂,相应开发了一种绿色、高效的泡沫浮选技术来处理结晶紫(CV)废水。首先研究了紫苏饼粕蛋白(PSMP)对浮选CV过程中的稳泡和捕收性能,其次构筑了一种新型“简谐波形”的浮选塔构件(SHMI)。研究结果表明在PSMP质量浓度为200 mg·L-1、p H为10.0、添加SHMI和表观气速200 m L·min-1的条件下,CV去除率和富集比分别高达(94.3±0.5)%和28.5±1.1。该技术为处理染料废水提供了一个新方法。  相似文献   

8.
以十六烷基三甲基氯化铵为表面活性剂,在连续稳态操作条件下,研究了泡沫塔和填料泡沫塔回收水溶液中微量Mo(Ⅵ)的分离性能。结果表明:随鼓泡区高度的增加,泡沫塔的富集率逐渐增加,回收率逐渐减小;随填料层高度的增加,填料泡沫塔的回收率增加,富集率减小;随泡沫层高度的增加,两种塔的富集率均逐渐增加,回收率均逐渐减小。泡沫塔内的浓度分布基本一致,表明泡沫塔存在较大的液相返混,填料泡沫塔内浓度分布随填料层高度的增加而增大,表明填料泡沫塔的液相返混程度较泡沫塔小。填料的加入有效增大了气液传质面积,提高了气液传质速率。填料泡沫塔的回收率远高于泡沫塔,但富集比略有下降。在实验条件范围内,填料泡沫塔中Mo(Ⅵ)的回收率可达99.8%,富集率可达12.2。  相似文献   

9.
为了探索设备和工艺简单、低污染、生产过程费用低的脱盐新方法,以十二烷基苯磺酸和十六烷基三甲基氢氧化铵为表面活性物质,采用泡沫分离技术对脱除水溶液中微量的硫酸铜进行了研究.重点考察了溶液的pH、表观气速、表面活性剂浓度,泡沫塔液面高度及改变分离阴阳离子的先后顺序对分离效果的影响,在最佳操作条件下:CuSO_4的去除率达到97.2%,富集比达到4.2.与其他表面活性剂相比,没有向溶液中引入新的金属离子和酸根离子,从而为脱盐提供了新的方法和依据.  相似文献   

10.
泡沫分离法提取乙醇水体系中甲基橙   总被引:2,自引:0,他引:2  
采用泡沫分离法对含甲基橙的乙醇水溶液进行了提取研究. 考察了乙醇体积分数、气体流量、pH、甲基橙浓度和表面活性剂浓度对提取效果的影响,并对泡沫分离乙醇-水体系中提取中药有效成分的可行性进行了探讨. 结果表明,以十六烷基三甲基溴化铵(CTAB)为表面活性剂,在乙醇体积分数25%的乙醇-水体系中,在pH 6.0、气速80 mL/min、甲基橙浓度35 mg/L及CTAB浓度80 mg/L的操作条件下,甲基橙的富集比为14.38,回收率在98.5%以上. 在一定范围内提高表面活性剂浓度或加入稳泡剂以削弱乙醇的消泡作用,从而将泡沫分离技术应用于乙醇-水体系中中药有效成分的提取是可能的.  相似文献   

11.
In order to recovery whey protein from yak whey wastewater effectively, a facile method of foam separation to be suitable for the local nomadic herdsmen in Qinghai-Tibet Plateau has been established in this research. The effects of the four factors, protein concentration, gas velocity, temperature and pH, on the performance of foam separation were investigated. Based on the single factor experiments, the response surface software was adopted to optimize and to investigate conditions of foam separation for whey protein, and the optimal conditions were found to be protein concentration of 120 μg/mL, gas velocity of 310 mL/min, temperature of 41°C and pH of 3.8, respectively. The as-obtained results of verification experiments, recovery percentage 88.3% and enrichment ratio 9.25 showed that foam separation technique was a simple equipment and environmental compatibility method to separate whey protein from yak whey wastewater.  相似文献   

12.
The foam separation of metal in model wastewater is performed by using two different bubble columns in a continuous operation mode. The equipment and operation conditions are changed, and the foam flow rate and metal concentration in foam flow are measured. The foam flow ratio (the ratio of foam flow rate to the inlet one) increases with increasing gas velocity, with decreasing liquid velocity, with decreasing foam layer height and with decreasing metal concentration in model wastewater. Metal enrichment (the ratio of metal concentration in foam flow to that in inlet flow) shows the reverse tendencies. When a draft tube is inserted in the bubbling layer, the foam flow rate decreases. The enrichment is strongly governed by the foam flow ratio. Since the foam flow ratio is adjusted by means of the equipment and operation conditions, the metal concentration in foam flow is controlled to be a desired value. This paper was presented at The 5th International Symposium on Separation Technology-Korea and Japan held at Seoul between August 19 and 21, 1999.  相似文献   

13.
《分离科学与技术》2012,47(10):1673-1683
A multistage ion foam fractionation column with bubble-cap trays was employed to study the removal of cadmium ions from simulated wastewater having low Cd concentrations (10–30 mg/L), examining the effects of foam height, air flow rate, feed flow rate, and feed Cd concentration. Sodium dodecyl sulfate (SDS) was used to generate foam in this study. An increase in foam height, which reduces liquid hold-up in the generated foam, resulted in the enhancement of the enrichment ratios of both SDS and Cd while the removal and residual factor of Cd showed insignificant change. An increase in air flow rate increased the foam generation rate, foamate volumetric ratio, and the removal efficiency of Cd but decreased the enrichment ratios of both Cd and SDS. The separation factors of both Cd and SDS decreased with increasing feed flow rate, which is mainly attributable to both the effects of the enhancement of foamate volumetric ratio and the increases in both SDS and Cd input rates. An increase in feed Cd concentration was found to increase Cd effluent concentration and SDS removal but to decrease the enrichment ratios of both Cd and SDS because of the increasing liquid entrainment in the produced foam.  相似文献   

14.
A system for removal of Cu2+ from aqueous solution by foam fractionation is proposed. The effects of pH, gas flow rate, surfactant concentration and froth/solution ratio on the removal rate and the enrichment ratio were studied to optimize the conditions. The results show that the removal rate increased with gas flow rate decreased, surfactant concentration increased and the froth/solution ratio increased, and was higher at pH4.0-5.0 than at other pH value. The optimum separation conditions were pH5.0, 200 mL/min of gas flow rate, 0.15 g/L of surfactant concentration and 1.1 of froth/solution ratio. Under the optimum conditions, the removal rate was 97.2% and the enrichment was 53.0.  相似文献   

15.
《分离科学与技术》2012,47(11):2681-2694
Abstract

A batch recovery of riboflavin via foam separation from industrial simulative wastewater was studied using a cationic surfactant, cetyltrimethyl ammonium bromide (CTAB). The experimental parameters examined were the surfactant concentration, air flow rate, pH, and foam height. Under optimal operating conditions obtained through an orthogonal experiment, the maximum enrichment ratio of 48.7 was achieved for riboflavin along with 99.3% removal efficiency. The optimal operating conditions had the concentration of CTAB at 0.3 g/L, air flow rate at 400 ml/min, foam height at 90 cm, and pH at 12. Therefore foam separation proved to be an effective method to recover the riboflavin in terms of the good enrichment and removal efficiency.  相似文献   

16.
周先桃  王依谋  马良  刘安林  何梦雅 《化工进展》2016,35(12):4053-4059
在传统的除雾型旋风分离器基础上进行改进,使其同时具备液相射流、气液吸收反应以及气液分离功能,并将这一新型旋风分离器用于烟气脱硫实验。实验中气相为含SO2烟气,液相为NaOH或Na2CO3碱液吸收剂,通过调节吸收剂浓度、烟气含硫浓度、烟气喷射速度、吸收剂喷射速度、吸收剂固含率等参数得到其相应脱硫率的变化。实验研究表明:脱硫率随吸收剂浓度的增加先增加,达到一定浓度后脱硫率几乎不变;脱硫率随SO2进口浓度的升高而下降;随进口气速的增大,脱硫率也一定程度增大;随液体喷射速度的增加脱硫率先增大,增大到一定程度后脱硫率趋于不变;NaOH作为吸收剂所得最佳脱硫率可达85%,Na2CO3作为吸收剂,最佳脱硫率可达77%;当其他参数一定时,加入一定量的CaCO3固体微粒,可以提高脱硫效率1%~2%。该液相射流吸收耦合气相旋流分离装置不仅脱硫效率高,而且脱硫剂损失少,投资成本与运行维护费用均低于相同处理量的烟气脱硫塔,具有良好的应用前景。  相似文献   

17.
杨全文  吴兆亮  殷昊  谭颖 《化工学报》2011,62(4):1000-1005
引言 泡沫分离技术又称泡沫吸附分离技术[1],是以气泡作为分离介质,利用被分离组分在气液两相界面吸附性质的差异进行浓缩溶液中表面活性组分.在泡沫分离过程中,通过空气分布器在泡沫塔液相中产生气泡,气泡沿着轴向向上流动,被分离表面活性组分吸附在气泡的气液两相界面上,当吸附接近平衡后,气泡离开液相,在液相上方形成泡沫相.  相似文献   

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