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1.
微波辅助-活性炭法处理电厂EDTA锅炉清洗废水可行性研究   总被引:4,自引:0,他引:4  
采用微波辅助-活性炭法处理电厂EDTA锅炉清洗废水,研究了微波辐射时间、微波功率以及再生次数对活性炭吸附能力的影响,并根据实验结果设计了工艺流程,分析了微波辅助-活性炭法处理电厂EDTA锅炉清洗废水的可行性.研究表明,微波辅助-活性炭法处理EDTA清洗废水的最佳微波辐射时间和微波功率分别为5 min和680 W,微波辐...  相似文献   

2.
静态电渗析法回收酸洗废水中的酸和铁   总被引:1,自引:0,他引:1  
为了达到盐酸酸洗废水零排放的要求,采用单张阴离子交换膜静态电渗析技术,进行了回收酸洗废水中的酸和铁的实验研究.实验时,根据实际盐酸酸洗废水水质配制模拟废水,分别调整槽电压、电解时间、阴极液pH及Fe2+、阳极液pH进行条件筛选,定时分别自阴、阳极室取样,并分析样品的pH及Fe2+浓度,根据实验结果计算Fe回收率.研究表明,采用不锈钢阴极,钛基锡锑金属氧化物涂层阳极,选用DF120型均相阴离子交换膜,当槽电压为10 V,阴极液pH为2.50~3.00,Fe2+为1 000~1 300 mg/L,阳极液pH为3.00时,静态条件下电解反应240 min后,Fe的回收率可达到95%,阴极液出水pH为5.13,Fe2+小于60 mg/L,阳极液出水pH为1.43.  相似文献   

3.
铝铁电极联用电絮凝法处理Cu-EDTA络合废水   总被引:1,自引:0,他引:1  
采用电絮凝法处理Cu-EDTA模拟废水,研究电极组合方式、初始pH值和氯化钠浓度3个因素对化学需氧量(COD)和Cu去除效果的影响。实验研究发现,当电极组合方式为2个铝阳极和2个铁阴极,起始pH值为3,氯化钠浓度为0.5 g/L,换极周期为40 min,反应时间为80 min时,COD去除率达到78.7%,Cu离子去除率达到99.9%。通过实验研究确定EDTA的去除机制主要是:酸性条件下的次氯酸氧化作用,碱性条件下的氢氧化物絮凝沉淀作用及单核态铝/铁与多核态铝/铁电荷中和作用,Cu的去除机制主要是氢氧化物的絮凝沉淀作用和铁电极的电沉积作用。  相似文献   

4.
在无隔膜电解槽中,采用SPR(Ru—Ir—TiO2)为阳极,石墨为阴极,考察了Fe(Ⅱ)EDTA/H2O2电催化降解甲基橙(methylorange)模拟废水的影响,发现EDTA很大程度上促进了类电Fenton试剂对甲基橙模拟废水的降解。实验研究表明,在外加电压为5.0V,EDTA:Fe2+=2:1(摩尔比,Fe2+=40mmol/L),H202=48mmot/L,电解质Na2SO4=40mmol/L,废水pH值为(6.5±0.1)的条件下,降解260mg/L的甲基橙模拟废水90min,EDTA的加入可以使甲基橙模拟废水的脱色率由29.5%上升到78.4%,COD由571.429mg/L降至80mg/L,COD的降解率为86%,EDTA在此过程中既是催化剂又是反应物,可有效避免EDTA带来二次环境污染的可能性。  相似文献   

5.
铁阳极电凝聚处理活性黑KN-B染料废水   总被引:1,自引:0,他引:1  
对铁阳极电凝聚处理活性黑KN-B染料废水过程进行了实验研究.考察了电流密度、染料溶液初始pH值、电介质浓度及种类、温度、染料浓度等因素对脱色效率的影响.结果表明,在一定实验条件下,活性黑KN-B模拟废水的脱色效率达93%;电流强度、染料浓度、电解液初始pH值及电解质的种类对染料溶液脱色效率影响显著,电解液温度、电解质的浓度对脱色效率的影响不明显;以铁为阳极的原位电凝聚处理活性黑KN-B模拟废水混凝过程中主要作用机理以吸附电性中和为主;电凝聚过程中活性黑KN-B在阴极上发生了还原反应.  相似文献   

6.
Fe(Ⅱ)EDTA/H2O2电催化降解甲基橙模拟废水的研究   总被引:1,自引:3,他引:1  
在无隔膜电解槽中,采用SPR(Ru-Ir-Ti02)为阳极,石墨为阴极,考察了Fe(Ⅱ)EDTA/H2O2电催化降解甲基橙(methyl orange)模拟废水的影响,发现EDTA很大程度上促进了类电Fenton试剂对甲基橙模拟废水的降解。实验研究表明,在外加电压为5.0 V,EDTA∶Fe2+=2∶1(摩尔比,Fe2+=40 mmol/L),H2O2=48 mmol/L,电解质Na2SO4=40 mmol/L,废水pH值为(6.5±0.1)的条件下,降解260 mg/L的甲基橙模拟废水90 min, EDTA的加入可以使甲基橙模拟废水的脱色率由29.5%上升到78.4%,COD由571.429 mg/L降至80 mg/L,COD的降解率为86%,EDTA在此过程中既是催化剂又是反应物,可有效避免EDTA带来二次环境污染的可能性。  相似文献   

7.
电絮凝过程处理含铬废水的工艺及机理   总被引:2,自引:0,他引:2  
以六价铬废水为处理对象,采用电絮凝过程研究了槽电压、初始浓度、初始pH值、电极材料等工艺参数对电絮凝过程分离Cr(Ⅵ)离子效率的影响机理。结果表明,采用Fe/Fe电极,对初始浓度为105 mg/L的Cr(Ⅵ)离子废水,最优槽电压为4 V,初始pH值为6,电解60 min,去除率可达到98.84%。Cr(Ⅵ)的去除率随着槽电压的升高而增大,随着初始浓度以及初始pH值的增加而减小。研究发现,初始pH值决定电絮凝过程中Cr(Ⅵ)的主要去除方式,在偏中性范围内Cr(Ⅵ)主要通过絮体吸附作用去除。对不同电极材料的电絮凝过程电解产生的絮体进行了初步分析,结果表明,絮体成分因电极不同而异,不同絮体对重金属离子吸附能力的差异也较大。  相似文献   

8.
Fe(II)EDTA/H_2O_2电催化降解甲基橙模拟废水的研究   总被引:1,自引:0,他引:1  
在无隔膜电解槽中,采用SPR(Ru-Ir-TiO_2)为阳极,石墨为阴极,考察了Fe(II)EDTA/H_2O_2电催化降解甲基橙(methyl orange)模拟废水的影响,发现EDTA很大程度上促进了类电Fenton试剂对甲基橙模拟废水的降解.实验研究表明,在外加电压为5.0v,EDTA:Fe~(2+) =2:1(摩尔比,Fe~(2+) =40 mmol/L),H_2O_2=48 mmol/L,电解质Na_2SO_4=40 mmol/L,废水pH值为(6.5±0.1)的条件下,降解260 mg/L的甲基橙模拟废水90 min,EDTA的加入可以使甲基橙模拟废水的脱色率由29.5%上升到78.4%,COD由571.429 mg/L降至80 mg/L,COD的降解率为86%,EDTA在此过程中既是催化剂又是反应物,可有效避免EDTA带来二次环境污染的可能性.  相似文献   

9.
三维电极法深度处理维生素生产废水   总被引:1,自引:0,他引:1  
采用三维电极法对维生素废水进行深度处理,分别以钛涂钌铱板、铁板和不锈钢板作为电极阳极,石墨板作为电极阴极,柱状活性炭作为粒子电极,结果表明,当以钛涂钌铱板作为阳极,以粒径为1 mm的柱状活性炭作为粒子电极时电解效果最好,COD和色度去除率最高。实验选择电解电压、电极板间距、电解时间和初始pH值作为主要影响因素进行正交实验,实验研究证明,各因素的影响大小为电解电压>电极板间距>电解时间>初始pH值,得到的最佳参数组合分别为:电解电压为10 V,电极板间距为8 cm,电解时间为20 min,初始pH值为4,得到COD和色度最大去除率分别为59.5%和93.57%。  相似文献   

10.
电-Fenton法处理4-氯酚废水   总被引:6,自引:0,他引:6  
采用电解法对 4 氯酚废水进行了处理。以活性炭纤维 (ACF)为阴极 ,铁为阳极 ,并向阴极不断通入空气 ,电解过程中生成的H2 O2 与阳极溶解的Fe2 + 形成Fenton(芬顿 )试剂 ,Fenton试剂在电解的过程中可以产生大量活性羟基·OH ,能够很好地氧化降解废水中的 4 氯酚。在最佳试验条件下 :室温 ,氯酚浓度为 5 0mg/L ,电解时间为 6 0min ,pH值为4 5 ,电流密度为 15 38A/m2 ,Na2 SO4浓度为 3g/L时 ,4 氯酚去除率为 85 70 %。  相似文献   

11.
采用自行研制的生物转鼓反应器(RDB)处理难溶于水的NO废气,为提高NO的传质系数和去除效率,实验考察了营养液中添加FeⅡ(EDTA)络合剂协同RDB以提高NO去除效率的过程。结果表明,当空床停留时间(EBRT)为0.96 min时,在营养液中添加FeⅡ(EDTA)至100 mg/L后,NO的去除效率从70.78%升至79.26%。未添加FeⅡ(EDTA)时NO去除率随营养液的增加下降,添加FeⅡ(EDTA)至100 mg/L后,去除率随营养液量的增加先上升后下降,且下降速率比上升速率大。随着营养液中FeⅡ(EDTA)浓度从0增加至500 mg/L,实验最佳温度从32.5℃升至47.5℃,但添加FeⅡ(ED-TA)至100 mg/L对实验的最适pH值没有太大影响。  相似文献   

12.
Zhou DM  Deng CF  Cang L 《Chemosphere》2004,56(3):265-273
The effect of enhancement reagents on the efficiency of electrokinetic remediation of Cu contaminated red soil is evaluated. The enhancement agents were a mix of organic acids, including lactic acid+NaOH, HAc-NaAc and HAc-NaAc+EDTA. The soil was prepared to an initial Cu concentration of 438 mgkg(-1) by incubating the soil with CuSO4 solution in a flooded condition for 1 month. Sequential extraction showed that Cu was partitioned in the soil as follows: 195 mgkg(-1) as water soluble and exchangeable, 71 mgkg(-1) as carbonate bound and 105 mgkg(-1) as Fe and Mn oxides. The results indicate that neutralizing the catholyte pH maintains a lower soil pH compared to that without electrokinetic treatment. The electric currents varied depending upon the conditioning solutions and increased with an increasing applied voltage potential. The electroosmotic flow rate changed significantly when different conditioning enhancing reagents were used. It was observed that lactic acid+NaOH treatments resulted in higher soil electric conductivities than HAc-NaAc and HAc-NaAc+EDTA treatments. Ultimately, enhancement by lactic acid+NaOH resulted in highest removal efficiency (81% Cu removal) from the red soil. The presence of EDTA did not enhance Cu removal efficiencies from the red soil, because EDTA complexed with Cu to form negatively charge complexes, which slowly migrated toward the anode chamber retarding Cu2+ transport towards the cathode.  相似文献   

13.
利用电动修复技术对铅污染土壤的修复进行了实验室研究,研究了修复时间和络合剂EDTA对电动修复效果的影响,分析了土壤重金属的迁移和变化特征。结果表明,在电场力作用下随着修复时间的增长污染物的去除率相应提高,去除率由修复时间5 d时的13%增加到15 d时的20%。以EDTA作为阴极控制液,EDTA可与硝酸铅反应形成溶解态的络合物,提高铅离子的移动性,从而提高修复效果。随着EDTA浓度由0.1 mol/L到0.2 mol/L,Pb的去除率由44.4%提高到61.5%,说明添加络合剂可以提高修复效果。另外,电动修复效果与铅的形态分布有密切关系,交换态和碳酸盐结合态有利于重金属铅的去除。  相似文献   

14.
Iron-catalyzed oxidation of As(III) to As(V) can be highly effective for toxic arsenic removal via Fenton reaction and Fe(II) oxygenation. However, the contribution of ubiquitous organic ligands is poorly understood, despite its significant role in redox chemistry of arsenic in natural and engineered systems. In this work, selected naturally occurring organic ligands and synthetic ligands in co-oxidation of Fe(II) and As(III) were examined as a function of pH, Fe(II), H2O2, and radical scavengers (methanol and 2-propanol) concentration. As(III) was not measurably oxidised in the presence of excess ethylenediaminetetraacetic acid (EDTA) (i.e. Fe(II):EDTA < 1:1), contrasting with the rapid oxidation of Fe(II) by O2 and H2O2 at neutral pH under the same conditions. However, partial oxidation of As(III) was observed at a 2:1 ratio of Fe(II):EDTA. Rapid Fe(II) oxidation in the presence of organic ligands did not necessarily result in the coupled As(III) oxidation. Organic ligands act as both iron speciation regulators and radicals scavengers. Further quenching experiments suggested both hydroxyl radicals and high-valent Fe species contributed to As(III) oxidation. The present findings are significant for the better understanding of aquatic redox chemistry of iron and arsenic in the environment and for optimization of iron-catalyzed arsenic remediation technology.  相似文献   

15.
The rate of photodegradation of two chelating agents, ethylenediaminetetraacetic acid (EDTA) and an isomeric mixture of ethylenediamine disuccinic acid (EDDS), was analysed in humic lake water and in distilled water using exposure to sunlight, and in the laboratory using lamps emitting UV radiation in the range 315-400 nm. Degradation was studied using Fe(III) complexes and sodium salts of chelates. Fe(III) complexes were illuminated at pH 3.1 and 6.5. The results demonstrated that the rate of photodegradation of Fe(III)-EDTA and Fe(III)-EDDS complexes seems to be pH dependent. In the laboratory experiments degradation occurred much faster when the original pH was 3.1 rather than 6.5. The photodegradation of the isomeric mixture of EDDS was markedly faster than the degradation of EDTA both in the laboratory and field experiments, and both in humic and distilled water. The results indicated that in natural waters photodegradation of EDDS is independent of initial speciation of EDDS, while degradation of EDTA is dependent on its existence as Fe(III)-EDTA species.  相似文献   

16.
Recycling chelant is a precondition for cost-effective EDTA-based soil remediation. Extraction with EDTA removed 67.5% of Pb from the contaminated soil and yielded washing solution with 1535 mg L−1 Pb and 33.4 mM EDTA. Electrochemical treatment of the washing solution using Al anode, current density 96 mA cm−2 and pH 10 removed 90% of Pb from the solution (by electrodeposition on the stainless steel cathode) while the concentration of EDTA in the treated solution remained the same. The obtained data indicate that the Pb in the EDTA complex was replaced by electro-corroded Al after electro-reduction of the EDTA and subsequently removed from the solution. Additional soil extraction with the treated washing solution resulted in total removal of 87% of Pb from the contaminated soil. The recycled EDTA retained the Pb extraction potential through several steps of soil extraction and washing solution treatment, although part of the EDTA was lost by soil absorption.  相似文献   

17.
Metal complexation by natural ligands is important for metal transport and distribution in surface and ground water. The goal of the work was to study the ligand exchange rate for two important metal ions in natural aquatic systems (Al, Fe) was determined using EDTA and natural organic matter (NOM) of humic type as ligands. After adding EDTA to a solution containing metal-NOM complexes, these complexes dissociated and metal-EDTA complexes were formed. Metal-NOM complexes were separated from metal-EDTA complexes with the help of size-exclusion chromatography and detected by on-line inductively coupled plasma-mass spectrometry (ICP-MS). Injecting the samples into the system over time after addition of EDTA allowed us to measure the rate of the exchange of NOM by EDTA. The experiments could be well described with a first-order rate law assuming that the dissociation of the metal-NOM complexes is the rate-determining step. The exchange rate of Fe was found to be faster than that of Al. This corresponds well with the exchange rate of water molecules from the coordination sphere of the metal ions, which is also faster for Fe than for Al. Furthermore, the UV and the fluorescence signal of the chromatograms were measured. The results indicate that no disaggregation of NOM molecules took place, although about 75-85% of the aggregate-forming metal ions exchanged NOM by EDTA in their coordination sphere. This suggests clearly the fundamental role of NOM in colloidal transport of metals and in their bioavailability.  相似文献   

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