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1.
以石墨电极为阴极、钌铱电极为阳极,建立了动态电化学应器用以处理硝基苯模拟废水。考察了水力停留时间、电流密度、电解质浓度和初始pH等因素对硝基苯去除率、苯胺生成率和库伦效率的影响规律,从能耗角度探讨了动态处理方式的优势及其原因。结果表明:动态处理效果明显优于静态处理。当水力停留时间为1 min,电流密度为15 m A·cm-2,电解质浓度为0.05 mol·L~(-1)时,反应20 min硝基苯转化为苯胺的库伦效率为4.15%,比相似条件下的静态处理效果增大2.58倍;反应60 min去除硝基苯和生成苯胺所需能耗分别为10.09 k Wh·kg-1和19.53 k Wh·kg-1,比静态分别减少45.22%和62.09%;反应120 min硝基苯去除率可达97.3%,苯胺生成率达53.1%,比静态分别提高22.8%和39.2%。  相似文献   

2.
为了去除并回收兰炭废水中的高浓度挥发酚类物质,实验研究了甲基异丁酮溶剂在不同条件下对兰炭废水中挥发酚的萃取及回收效果。结果表明,萃取时间为10 min,温度为35℃,p H低于8.0,萃取体积比(萃取剂体积/兰炭废水体积)在大于1∶5时,经过萃取后废水中挥发酚浓度由6 385 mg/L降至230 mg/L,去除率高达96.4%,有效减轻了后续生化处理的负担。而萃取剂经过蒸馏分离后,挥发酚的回收率可达95%以上,甲基异丁酮的损耗率为0.18%~0.2%。实验表明,甲基异丁酮是一种可以长期循环使用的工业萃取剂,显示了良好的应用前景。  相似文献   

3.
采用厌氧折流板反应器(ABR)中温处理含硝基苯废水,研究了工艺条件和硝基苯的降解特点.试验结果表明:在进水COD浓度为2088 mg/L,硝基苯浓度为16.8 mg/L,反应温度为35℃,停留时间为24 h条件下,ABR能有效处理硝基苯废水,COD去除率为86.4%,硝基苯去除率为91.1%;在厌氧条件下,硝基苯降解为苯胺,但苯胺很难再进一步分解;硝基苯的去除历程推断为先吸附后分解.  相似文献   

4.
厌氧折流板反应器处理硝基苯废水的研究   总被引:4,自引:0,他引:4  
采用厌氧折流板反应器(ASR)中温处理含硝基苯废水,研究了工艺条件和硝基苯的降解特点.试验结果表明:在进水COD浓度为2088mg/L,硝基苯浓度为16.8mg/L,反应温度为35℃,停留时间为24h条件下,ABR能有效处理硝基苯废水,COD去除率为86.4%,硝基苯去除率为91.1%;在厌氧条件下,硝基苯降解为苯胺,但苯胺很难再进一步分解;硝基苯的去除历程推断为先吸附后分解。  相似文献   

5.
硝基苯类废水的预处理技术研究   总被引:9,自引:2,他引:9  
Fe(OH)2对硝基苯具有强烈的还原作用,短时间内可把硝基苯还原为苯胺。催化铁屑法处理硝基苯类废水,除了包括铁屑法处理废水的各种反应外,还能使硝基苯在其表面直接还原,且反应在弱碱性条件下效果较好。m(Fe):m(Cu)为10:1,pH为9.5,废水硝基苯进水质量浓度为250mg/L,反应时间为30min,硝基苯的去除率达100%。  相似文献   

6.
用HL离心萃取器处理含对硝基酚废水的研究   总被引:1,自引:0,他引:1  
溶剂萃取法是目前回收处理含高浓度对硝基酚废水的有效方法。选用QH-1为萃取剂,采用HL离心萃取器对含对硝基酚废水的处理进行了实验研究。实验结果表明,对于对硝基酚硝酸溶液-QH-1体系,对硝基酚的分配比是1103.4,用Φ20mmHL离心萃取器处理对硝基酚废水时,在合适的操作条件下,单级传质级效率E和三级串联萃取率ρ都可达99%以上,三级串联的反萃率也可达98%以上。  相似文献   

7.
膜萃取处理高浓度工业苯胺废水   总被引:1,自引:0,他引:1  
大连市某药业公司生产中产生的高浓度苯胺废水可生化性极差,传统工艺处理该废水难度大,且不能回收利用苯胺.采用膜萃取工艺处理该废水,工艺运行稳定,苯胺去除率高.实验结果表明,在进水流量为3.05 L/d、反应温度为50 ℃、萃取液pH≈1、膜管长18 m条件下,进水苯胺质量浓度为33 081 mg/L时,苯胺去除率稳定在97%以上.进行经济核算,每吨废水净收益为103.84元.  相似文献   

8.
高酚焦化废水萃取脱酚预处理   总被引:1,自引:0,他引:1  
为了降低高酚焦化废水中挥发酚的浓度,实验研究了磷酸三丁酯煤油溶液在不同条件下对高酚焦化废水进行萃取脱酚预处理的效果。结果表明,萃取时间为8min,磷酸三丁酯煤油浓度为30%,温度低于40%,pH低于8.0,萃取比(油/水)R=1:2时,经过萃取后分水挥发酚浓度由4165mg降低到127.62mg/L,去除率高达96.94%,为后续生化处理奠定了基础。而萃取剂经过氢氧化钠溶液反萃取再生后,萃取剂的回收利用率可达94.25%以上。  相似文献   

9.
以锰渣为材料,用聚环氧琥珀酸(PESA)作为萃取剂,研究PESA在不同pH、萃取剂浓度、土液比下对砷(As)的萃取效果。实验结果表明,与丙烯酸/马来酸酐共聚物(MA/AA)相比较,PESA对锰渣中As有优良的萃取效果。在萃取体系条件为pH=1、萃取剂浓度50 mg/mL、土液比1∶200、搅拌60 min并浸泡过夜时,PESA对砷的萃取率可达78.3%。实验还发现,PESA对三价砷和五价砷均有螯合萃取作用,对砷的萃取无价态的选择性。  相似文献   

10.
采用改进的好氧-厌氧方法处理苯胺废水,研究了各个操作变量梯度包括苯胺浓度、硝基苯浓度等对苯胺废水处理的影响,并加入硝基苯作为影响参数。实验结果表明,各个变量均在不同程度上影响苯胺废水的处理。经过厌氧-好氧处理后,COD降到200 mg/L以下;提高苯胺浓度时,COD值增大;进水TOC浓度为167.80 mg/L,去除率为79.6%;加入硝基苯与苯胺的降解具有协同作用。在厌氧温度35~40℃,好氧温度28~32℃条件下,进水COD在4 000~6 000 mg/L,苯胺浓度180~250 mg/L左右,处理后出水COD值达到200~500 mg/L,苯胺4.5~6.5 mg/L左右,去除率约85%以上。出水水质可达到《污水综合排放标准(》GB 8978-1996)的排放标准。  相似文献   

11.
硝基苯类化合物生物降解菌的筛选及性能研究,是制药、染料等行业废水达标的重要基础。以浓度梯度升高法筛选到一株硝基苯厌氧降解菌Klebsiella oxytoca NBA-1。考察了该菌对氧气的需求,以及在厌氧条件下,温度、pH值、外加葡萄糖及硝基苯初始浓度等环境因子对菌株降解硝基苯能力的影响,并进一步讨论菌株对氯取代硝基苯类化合物的降解情况。结果表明,该菌在厌氧条件下生长比好氧条件下慢,但降解速度更快;厌氧降解硝基苯的最佳pH值和温度和分别为8.3和30~35℃;加入0.3%~0.5%的葡萄糖可促进降解,且对300mg/L以下的硝基苯均有降解能力;该菌能将4-氯硝基苯转化为4-氯苯胺,并进一步脱氯为苯胺。研究结果可为硝基苯及含氯硝基苯的处理工艺选择提供相关的参考依据。  相似文献   

12.
BACKGROUND, AIMS AND SCOPE: Chromium enters into the aquatic environment as a result of effluent discharge from steel works, electroplating, leather tanning industries and chemical industries. As the Cr(VI) is very harmful to living organisms, it should be quickly removed from the environment when it happens to be contaminated. Therefore, the aim of this laboratory research was to develop a rapid, simple and adaptable solvent extraction system to quantitatively remove Cr(VI) from polluted waters. METHODS: Aqueous salt-solutions containing Cr(VI) as CrO4(2-) at ppm level (4-6 ppm) were prepared. Equal volumes (5 ml) of aqueous and organic (2-PrOH) phases were mixed in a 10 ml centrifuge tube for 15 min, centrifuged and separated. Concentrations of Cr(VI), in both the aqueous and organic phases, were determined by atomic absorption spectrometry. The effects of salt and acid concentrations, and phase-contact time on the extraction of Cr(VI) were investigated. In addition, the extraction of Cr(VI) was assessed in the presence of tetramethylammonium chloride (TMAC) in 2-PrOH phase. Effects of some other metals, (Cd(II), Co(II), Cu(II), Ni(II) and Zn(II)), on the extraction of Cr(VI) were also investigated. RESULTS AND DISCUSSION: The Cr(VI) at ppm level was extracted quantitatively by salting-out the homogeneous system of water and 2-propanol(2-PrOH) using chloride salts, namely CaCl2 or NaCl, under acidic chloride media. The extracted chemical species of Cr(VI) was confirmed to be the CrO3Cl-. The ion-pair complex extracted into the organic phase was rationalized as the solvated ion-pair complex of [2-PrOH2+, CrO3Cl-]. The complex was no longer stable. It implied the reaction between extracted species. Studies revealed that salts and acid directly participated in the formation of the above complex. Use of extracting agents (TMAC) didn't show any significant effect on the extraction of Cr(VI) under high salting-out conditions. There is no significant interference effect on the extraction of Cr(VI) by the presence of other metals. The Cr(VI) in the organic phase was back-extracted using an aqueous ammonia solution (1.6 mol dm(-3)) containing 3 mol dm(-3) NaCl. The extraction mechanism of Cr(VI) is also discussed. CONCLUSIONS: Salting-out of homogeneous mixed solvent of 2-propanol can be employed to extract Cr(VI) quantitatively, as an ion-pair of [2-PrOH2+ * CrO3Cl-] solvated by 2-PrOH molecules. Then, the complex becomes 'solvent-like' and is readily separated into the organic phase. The increase of Cl- ion concentration in the aqueous phase favors the extraction. The 2-PrOH, salts and acid play important roles in the extraction process. There is no need to use an extracting agent at a high salting-out condition. RECOMMENDATIONS AND PERSPECTIVES: Chromium(VI) must be quickly removed before it enters into the natural cycle. As the 2-PrOH is water-miscible in any proportion, ion-pairing between 2-PrOH2+ and CrO3Cl- becomes very fast. As a result, Cr(VI) can easily be extracted. Therefore, the method is recommended as a simple, rapid and adaptable method to quickly separate Cr(VI) from aqueous samples.  相似文献   

13.
以硝基苯、苯胺为主要污染物的污染地下水为研究对象,加入激活剂(乳糖、Na2HPO4、乳糖+Na2HPO4、乙醇、牛肉膏、蛋白胨)激活土著微生物,并考察其对土著微生物生长及硝基苯、苯胺降解效果的影响。加入激活剂3d后测各个水样的脱氢酶活性,对培养9d后的水样进行气相色谱/质谱(GC/MS)分析。结果表明,加入乳糖的水样中,其微生物相对增长率达157.2%,硝基苯、苯胺的相对去除率分别为14.90%和0.79%;加入Na2HPO4和乙醇的水样中,其微生物增长和硝基苯、苯胺降解情况均没有明显变化;加入乳糖+Na2HPO4的水样中,微生物相对增长率达180.3%,硝基苯、苯胺的相对去除率分别为24.20%和1.21%;加入牛肉膏的水样中,微生物的相对增长率为830.7%,硝基苯、苯胺的相对去除率分别为99.99%和99.67%;加入蛋白胨的水样中,其微生物相对增长率为686.0%,硝基苯、苯胺的相对去除率分别为99.33%和58.94%。GC/MS分析结果表明,加入激活剂后对氯苯胺、1-甲基-4-硝基苯等其他有机物的降解率均有提高。由此可见,通过激活土著微生物修复有机物污染地下水是可行的。  相似文献   

14.
首先对高浓度味精废水主要成分进行了测定和在自来水中添加不同浓度的无机盐模拟味精废水,并与高浓度味精废水培养苏云金芽孢杆菌进行对比实验,确定了味精废水中影响苏云金芽孢杆菌生长的主要因素是废水中存在高浓度的氨氮和硫酸根,其中氨氮的影响大于硫酸根。在此结论基础上,研究了味精废水预处理材料、温度、时间等对苏云金芽孢杆菌培养的影响,并最终确定了最佳预处理工艺条件。  相似文献   

15.
混凝-Fenton氧化-Fe0还原预处理高浓度硝基苯生产废水   总被引:1,自引:1,他引:0  
采用混凝-Fenton氧化-Fe0还原工艺预处理高浓度硝基苯废水,考察各反应阶段硝基苯去除效果及影响因素。研究表明,聚铁混凝性能优于聚铝;初始COD为17 350 mg/L、硝基苯浓度为10 050 mg/L的废水,在pH=4,聚铁投加浓度3 300 mg/L时,COD和硝基苯去除率分别为63%和62%;混凝沉降后的上清液用Fenton试剂氧化,可在较宽pH(3~6)范围内降解硝基苯,当H2O2(30%)浓度为6 000 mg/L,Fe2+浓度为168 mg/L时,氧化效率最高;聚铁混凝-Fenton氧化后的出水用Fe0还原,最佳还原条件为:pH=3,Fe0浓度1 500 mg/L。原水经聚铁混凝-Fenton氧化-Fe0还原后,COD和硝基苯总去除率分别达90%和98%,总药剂成本约12.4元/t。处理后废水硝基苯浓度为168 mg/L,适宜进行后续的厌氧-好氧生物处理。  相似文献   

16.
为了探明硝基苯(NB)对硫酸盐还原的影响,揭示相关过程机制,采用以丙酸盐为碳源和电子供体的序批式厌氧反应系统(水力停留时间为33 h),考察了碳硫比为0.63~5.0,NB浓度为2.5~50 mg/L条件下,系统的硫酸盐还原效能。研究结果表明,NB对硫酸盐还原过程存在抑制作用,当系统NB进水浓度低于30 mg/L时,NB对硫酸盐还原过程抑制并不显著,但当进水NB浓度达50 mg/L时,硫酸盐还原率由近100%迅速降至17%。对比实验结果进一步表明,NB初始浓度为16.5 mg/L条件下,硫酸盐的比还原速率和丙酸的比消耗速率分别为对照组的63%和52%。硫酸盐还原的抑制主要源自NB及其还原产物苯胺(AN)的生物毒性,但上述抑制作用可逆。  相似文献   

17.
在Ti(Ⅳ)和过氧化氢存在条件下,考察了臭氧化酸性苯乙酮溶液、硝基苯溶液和垃圾渗滤液(浙江衢州某垃圾填埋场)的预处理效能。结果表明,在pH2.86条件下,单独臭氧化处理对苯乙酮、硝基苯和垃圾渗滤液的COD去除率分别为10.1%、44%和28.6%。BOD,/COD值分别从原来的0.039、0.060和0.085提高到了0.130、0.158和0.174,仍属生化难降解废水。当体系加入Ti(Ⅳ)后,臭氧化苯乙酮和硝基苯的COD去除率分别达到了75.5%和65%,BOD;/COD则提高到了0.679和0.314,可生化性提升明显。对于垃圾渗滤液,只有当体系加入Ti(Ⅳ)和H22后,臭氧化COD的去除率达到66.6%,BOD、/COD提高至0.425。上述结果对酸性难降解废水的处理实际意义非常突出。  相似文献   

18.
Lim TT  Goh KH 《Chemosphere》2005,58(1):91-101
Two batches of fine soil fraction of an acidic soil were deliberately contaminated with selenite (Se(IV)) and selenate (Se(VI)), respectively, and aged for more than 220 days. Speciation analysis using continuous flow-through hydride generation atomic absorption spectrometry (HGAAS) indicated that the species were predominant in their respective aged soils. A selective sequential extraction scheme was employed to fractionate the Se retained in the soils into six fractions of varying retentions. Abilities of various chemical reagents in extracting the Se in the two soil batches were then evaluated. The reagents investigated were sodium salts such as sodium chloride (NaCl), sodium sulfate (Na2SO4), sodium carbonate (Na2CO3), and sodium phosphate (Na3PO4), and two oxidants, namely, hydrogen peroxide (H2O2) and potassium permanganate (KMnO4). It was found that NaCl, Na2SO4, and Na2CO3 could only extract the exchangeable fraction of Se, while Na3PO4 could extract the exchangeable and strongly-bound fractions. Selenate was extracted more than Se(IV) by the salts. The kinetics of Se(IV) extraction by Na3PO4 could be best described by the Elovich model, while the Ritchie second-order model was the most appropriate to describe Se(VI) extraction. Efficiencies of the oxidants in Se(IV) extraction highly depended on their applied dosages. Both H2O2 and KMnO4 were able to extract greater than 93% of total Se, and therefore were significantly more effective than the salts in Se(IV) extraction.  相似文献   

19.
无机盐对SO2—H2O—CaCO3气液固三相反应系统pH值的影响   总被引:11,自引:0,他引:11  
研究了硫酸钠、硝酸钠和氯化钠及相应钙盐对石灰石浆液烟气脱硫条件下SO2-H2O-CaCO3气、液、固三相反应系统中pH值的影响。发现硫酸钠能明显提高系统的pH值,硝酸钠和氯化钠使pH值提高的幅度不大,而3种钙盐均使pH值降低。根据膜模型的分析结果,认为无机盐影响该反应系统pH值的主要原因是无机盐的加入改变了石灰石表面的pH值。  相似文献   

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