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1.
天然有机物对零价铁去除水体中砷的影响研究   总被引:3,自引:0,他引:3  
在研究零价铁对水体中砷去除动力学的基础上,着重探讨了天然有机物腐殖酸对零价铁除砷的影响.并对零价铁的腐蚀产物进行了分析.结果表明,水体中的砷可以通过在零价铁腐蚀产物上的吸附得到快速去除.腐殖酸显著降低了砷的去除率,这归因于腐殖酸与零价铁腐蚀产生的铁离子形成络合物,阻止了Fe(OH)3(或Fe(OH)2)沉淀的产生.腐殖酸浓度越高.砷的去除率越低.1.00 mg腐殖酸最多可以络合约0.75 mg铁离子.当铁离子与腐殖酸的络合达到饱和后,零价铁进一步腐蚀产生的铁离子可形成Fe(OH)3(或Fe(OH)2)沉淀,这些沉淀物可吸附水体中的腐殖酸和砷,从而加速砷的去除.冷冻干燥后的零价铁腐蚀产物的结构以无定型为主,含有少量的结晶化合物,包括γ-Fe2O3、γ-FeO(OH)和Fe3O4等.腐殖酸的存在可进一步增加腐蚀产物中的无定型成分.光电能谱(XPS)分析结果显示,吸附在腐蚀产物上的砷为5价,没有发现5价砷被还原成3价砷.在应用零价铁修复砷污染水体时,应考虑腐殖酸的影响.  相似文献   

2.
研究了零价铁(Fe0)、Cu/Fe、Ni/Fe双金属作为渗透反应格栅(PRB)反应介质对地下水中六价铬〔Cr(Ⅵ)〕去除性能。采用烧杯批次实验研究了铜负载率、镍负载率、投加量及pH对Cr(Ⅵ)去除效率的影响。采用柱模拟室验考察Fe0、Cu/Fe和Ni/Fe双金属作为PRB反应介质对地下水中的Cr(Ⅵ)去除效果。实验结果显示,相对于Fe0,双金属去除效率显著提高,去除效果可达99.7%,速率也是Fe0单独作用时的2倍。Cu/Fe双金属系统随着铜负载率增加去除效率增加,铜负载率达到10%以后,去除效率不再增加,开始有降低的趋势;Ni/Fe双金属系统呈现相同趋势。Cu/Fe、Ni/Fe投加量越大,对Cr(Ⅵ)去除效果越好,并且酸性条件有利于Cr(Ⅵ)的去除。对于Cr(Ⅵ)的去除,Cu/Fe和Ni/Fe双金属比Fe0更具有长效性,其寿命是Fe0单独作用时的2倍以上。  相似文献   

3.
修复铬污染地下水的可渗透反应墙介质筛选   总被引:1,自引:0,他引:1  
通过实验研究筛选出一种经济、高效的用于修复铬污染地下水的可渗透反应墙(PRB)介质。实验以铬污染地下水为研究对象,分别对Fe0、Fe0+石英砂和包覆型零价铁填料进行了筛选实验,选取处理效果好且经济可行的包覆型零价铁材料作为PRB反应介质。结果表明,以包覆型零价铁材料作为PRB反应介质,大大提高了铁粉的利用效率,且缓解了系统堵塞严重的问题。以包覆型零价铁材料作为PRB反应介质修复Cr(VI)污染地下水是可行的。  相似文献   

4.
通过批实验和连续通流的柱模拟实验对比研究了存在NO_3~-和不存在NO_3~-条件下零价铁(Fe~0)去除Cr(Ⅵ)的反应特征,并对比分析了NO_3~-对零价铁(Fe~0)去除Cr(Ⅵ)的影响。批实验结果表明,在不同初始pH条件下,NO_3~-的加入均使得零价铁(Fe~0)去除Cr(Ⅵ)的速率升高;当初始pH=7时,NO_3~-的促进作用最强,反应速率是无NO_3~-条件下的2.1倍。柱实验结果表明,NO_3~-的加入使得Fe~0去除Cr(Ⅵ)的反应分成了3个不同的阶段:高效期(198孔隙体积数(PV)),快速钝化-平稳钝化期(198-1025 PV)以及彻底钝化期(1025 PV)。在高效期,反应中的NO_3~-表现为对Fe~0反应位点的竞争,抑制了Cr(Ⅵ)还原。在后期的2个阶段中,反应中NO_3~-则呈现明显的促进作用。NO_3~-的存在使得零价铁(Fe~0)柱趋于整体性同步钝化,延长了Fe~0柱的运行寿命,并且增加了零价铁(Fe~0)柱对Cr(Ⅵ)的去除效率。NO_3~-对Fe~0去除Cr(Ⅵ)反应的促进作用原因是由于NO_3~-与Fe~0反应产生Fe3O4,Fe3O4可以还原Cr(Ⅵ),并且具有阻滞反应的产物在Fe~0表面堆积和促进电子传导作用。  相似文献   

5.
为了研究堆肥+零价铁混合可渗透反应墙(PRB)修复黄土高原地下水中铬铅复合污染的可行性,分别用堆肥、零价铁、堆肥+零价铁、堆肥+零价铁+活性炭为反应介质,通过模拟柱实验考察PRB修复铬铅复合污染黄土高原地下水的效果。结果表明,在实验进行30 d后当反应柱1和2对六价铬的去除率接近于零,而且对二价铅的去除率迅速下降时,反应柱3对2种污染物仍保持较高的去除率;反应介质质量比为10∶2∶1的反应柱4和质量比为10∶1∶2的反应柱5对污染物的去除效果均优于质量比为10∶1∶1的反应柱3;反应50 d后,添加活性炭的反应柱6对2种污染物的去除率仍在90%。这说明使用堆肥+零价铁混合可渗透反应墙修复黄土高原地下水中铬铅复合污染是可行的;且以堆肥+零价铁作为介质的反应柱去除效果优于单独以堆肥或铁粉为介质的反应柱;增加铁粉或堆肥的用量有利于铬铅复合污染的去除;且同时添加活性炭更有助于污染物的去除。  相似文献   

6.
采用零价铁耦合芬顿氧化法处理TNT红水,研究了初始pH、零价铁投加量、过氧化氢(H_2O_2)投加量及温度对红水中总有机碳(TOC)去除效果的影响,同时进行了TOC去除过程中反应动力学的探讨。结果表明,零价铁耦合芬顿氧化体系可有效降解TNT红水中的2,4-二硝基甲苯-3-磺酸钠和2,4-二硝基甲苯-5-磺酸钠。在初始pH为2,温度为20?C的条件下,加入1.5 g·L~(-1)零价铁反应1 h后,再加入100 mL·L~(-1)H_2O_2反应4 h,红水中二硝基甲苯磺酸盐浓度从500 mg·L~(-1)降至0 mg·L~(-1),去除率为100%,TOC浓度从150 mg·L~(-1)降至30 mg·L~(-1),去除率达到80%。反应中TOC的降解过程遵循拟二级反应动力学方程。零价铁耦合芬顿氧化法可以作为TNT红水的有效处理途径。  相似文献   

7.
为了研究堆肥+零价铁混合可渗透反应墙(PRB)修复黄土高原地下水中铬铅复合污染的可行性,分别用堆肥、零价铁、堆肥+ 零价铁、堆肥+ 零价铁+活性炭为反应介质,通过模拟柱实验考察PRB修复铬铅复合污染黄土高原地下水的效果。结果表明,在实验进行30 d后当反应柱1和2对六价铬的去除率接近于零,而且对二价铅的去除率迅速下降时,反应柱3对2种污染物仍保持较高的去除率;反应介质质量比为10:2:1的反应柱4和质量比为10:1:2的反应柱5对污染物的去除效果均优于质量比为10:1:1的反应柱3;反应50 d后,添加活性炭的反应柱6对2种污染物的去除率仍在90%。这说明使用堆肥+零价铁混合可渗透反应墙修复黄土高原地下水中铬铅复合污染是可行的;且以堆肥+零价铁作为介质的反应柱去除效果优于单独以堆肥或铁粉为介质的反应柱;增加铁粉或堆肥的用量有利于铬铅复合污染的去除;且同时添加活性炭更有助于污染物的去除。  相似文献   

8.
以表面活性剂TritonX-100(TX-100)为洗脱剂,某有机氯农药(organochlorinepesticides,OCPs)污染场地土壤为对象,七氯、氯丹和灭蚁灵为目标污染物,研究微米Cu/Fe双金属对污染土壤洗脱液中OCPs的降解效果。考察了洗脱液中OCPs初始浓度、洗脱液pH值、微米零价铁加入量和cu负载量对Cu/Fe去除OCPs效果的影响。结果表明,微米Cu/Fe可以有效的去除土壤洗脱液中目标污染物。当微米零价铁加入量为1.0g(25g/L),cu负载量为1.0%,洗脱液pH值为6.89时,Cu/Fe对2号土壤洗脱液中七氯、γ-氯丹、α-氯丹和灭蚁灵的去除效果最好,去除率分别为100.0%、99.3%、80.8%和71.1%。洗脱液中OCPs初始浓度越低,微米零价铁加入量越大,Cu/Fe对OCPs去除率越高;偏酸性条件有利于Cu/Fe对γ-氯丹和灭蚁灵的去除,而α-氯丹在中性条件下去除效果最好;1号土壤和2号土壤洗脱液的最佳铜负载量分别为2.O%和1.0%。  相似文献   

9.
以活性炭为还原剂和载体,通过一步还原焙烧法制备出炭载零价铁(AC-ZVI)材料。电镜扫描和X射线衍射分析结果表明,零价铁以平均粒径为2μm的颗粒均匀分布在活性炭表面和孔道中。采用间歇实验考察了炭载零价铁去除水中Cr(Ⅵ)的效果,结果显示炭载零价铁对水中的Cr(Ⅵ)具有很好的去除效果,在初始pH值为5、Cr(Ⅵ)浓度为50 mg·L~(-1)、AC-ZVI投加量(铁用量)为0.6 g·L~(-1)和反应温度为25℃的条件下,反应5 h后Cr(Ⅵ)的去除率达到86.8%;降低溶液pH、增加炭载零价铁投加量和提高反应温度均有利于Cr(Ⅵ)的去除,反应过程符合准一级动力学,表观反应速率常数k为0.655 h~(-1)(30℃),反应活化能为67.6 k J·mol~(-1)。研究结果表明,通过一步还原焙烧法制得的炭载零价铁可作为一种高效吸附还原材料用于Cr(Ⅵ)污染水体的治理。  相似文献   

10.
零价铁与厌氧微生物协同还原地下水中的硝基苯   总被引:1,自引:0,他引:1  
通过间歇式实验,考察了零价铁与厌氧微生物协同还原地下水中硝基苯的效果。实验结果表明,由零价铁腐蚀为厌氧微生物提供H2电子供体还原硝基苯的效果明显优于零价铁和微生物单独作用,硝基苯去除率分别提高21.8%和57.0%。弱酸性条件有利于协同反应进行,当初始pH为5.0和6.0时,4 d后硝基苯去除率比初始pH为7.0时的提高74.4%和35.2%。增加零价铁投加量可提高协同还原的效果,零价铁最佳投加量为250 mg/L。零价铁腐蚀产生的Fe2+无法作为电子供体被微生物利用,但可作为无机营养元素促进协同过程。由于零价铁产H2速率受表面覆盖物影响不明显,在地下水修复过程中可保证协同效果并延长零价铁的使用寿命。  相似文献   

11.
Feng J  Lim TT 《Chemosphere》2005,59(9):1267-1277
Groundwater and wastewater contaminated with chlorinated organic compounds (COCs) can be treated with zero-valent metals. The practicality of this treatment method depends on the reduction rates of the target compounds and their byproducts. In this study, nano-scale Fe and Fe/Ni particles were synthesized so that they could be used to rapidly degrade carbon tetrachloride (CT) and chloroform (CF). Their BET surface areas were around two orders higher than those of commercial micro-scale Fe and Zn particles. Batch reduction experiments carried out with a metal loading of 2.5 gl(-1) showed that complete reduction of CT by the nano-scale Fe/Ni and Fe particles could be achieved within 20 min and 60 min, respectively. With the commercial micro-scale Fe and Zn particles applied at 125 gl(-1), complete CT reduction could only be achieved after 4h and 1.5h, respectively. Reductions of CT and CF with the nano-scale particles followed pseudo-first-order kinetics, and the specific reaction rate constants with the nano-scale Fe/Ni particles were 2-8 times higher than those of the nano-scale Fe particles. CT was degraded through hydrogenolysis to CF, and subsequently via both complete reduction pathway to methane and hydrogenolysis pathway to dichloromethane (DCM). Significantly more methane was generated with the use of the nano-scale Fe/Ni particles than with the nano-scale Fe particles. While the commercial Zn particles were more reactive than the commercial Fe particles, they failed to transform CT directly into methane, causing accumulation of DCM in the aqueous phase.  相似文献   

12.
In this work a novel heterogeneous Fenton system based on Fe(0)/Fe3O4 composites is described. The composites with several Fe(0)/Fe3O4 ratios were prepared by two different methods, i.e. mechanical alloying of Fe(0) and Fe3O4 powders and controlled reduction of Fe3O4 with H2. Reaction studies and detailed Conversion Electron M?ssbauer surface characterization of the composites Fe(0)/Fe3O4, Fe(0), Fe3O4, alpha-Fe2O3 and gamma-Fe2O3 suggested that Fe2+surf species are essential to produce an active Fenton system. Kinetic studies for the oxidation of the dye methylene blue, used as an organic model molecule, and for the peroxide decomposition suggest that the reactions proceed via HO* radicals generated from Fe2+surf species and H2O2 in a Fenton like mechanism. The increase in activity caused by the addition of Fe(0) is discussed in terms of a creation of Fe2+surf species during the preparation of the composite and by an electron transfer mechanism from Fe(0) to Fe3+surf during the Fenton reaction to regenerate the Fe2+surf active species.  相似文献   

13.
Sonolysis of alkylphenols in aqueous solution with Fe(II) and Fe(III)   总被引:6,自引:0,他引:6  
Yim B  Yoo Y  Maeda Y 《Chemosphere》2003,50(8):1015-1023
The sonolytic degradation of alkylphenols (APs), such as butylphenol, pentylphenol, octylphenol, and nonylphenol (NP), in water was investigated at a sound frequency of 200 kHz with an acoustic intensity of 6 W cm(-2) under argon, oxygen, and air atmospheres. The sonolytic degradation rate of the APs under the conditions of the present study depended upon their alkyl chain length. The decrease in the degradation rate by the radical scavenging effect was in the range of about 48-82% for APs in the presence of 3 mM 2-methyl-2-propanol. The free radicals play a significant role in the sonolytic degradation process of the APs. In the presence of Fe(II) and Fe(III), the pseudo-first-order rate constants for the sonolytic degradation of 30 microM NP as a function of the concentration of Fe(II) and Fe(III) were estimated under argon and oxygen. The maximum rate constants were observed at 50 microM Fe(II) (0.139 +/- 0.008 min(-1)) and 100 microM Fe(III) (0.103 +/- 0.001 min(-1)) under oxygen. The total organic carbon concentration (TOC) was investigated under same conditions. TOC decreased in the range of about 50-70% during the sonication in the presence of Fe(II) and Fe(III) under argon and oxygen. The sonochemical effects by the addition of Fe(II) and Fe(III) as catalyst during the sonication under the proper atmosphere result in a remarkable enhancement of degradation and mineralization.  相似文献   

14.
离子交换树脂对氰化溶液中Fe(Ⅱ)和Fe(Ⅲ)的吸附行为   总被引:1,自引:0,他引:1  
研究了大孔型弱碱性阴离子交换树脂L-300对于氰化溶液中Fe(CN)4-6和Fe(CN)3-6的吸附过程。结果表明,L-300树脂可有效地吸附Fe(Ⅱ)和Fe(Ⅲ)的氰化络合离子。25℃时,该树脂(湿树脂)对Fe(Ⅱ)和Fe(Ⅲ)的静态饱和吸附容量分别为5.301 mg/m L和8.585 mg/m L。该树脂对铁氰络合离子的吸附过程符合Lagergren二级速度方程式,以液膜扩散为主控步骤,对Fe(Ⅱ)和Fe(Ⅲ)的吸附速率常数分别为39.85 m L/(g·min)和55.56 m L/(g·min),表明对Fe(Ⅲ)的吸附速率要稍大于对Fe(Ⅱ)的吸附速率。L-300树脂对Fe(Ⅱ)和Fe(Ⅲ)的吸附符合Freundlich经验等温式,吸附过程的焓变分别为11.65 k J/mol和11.81 k J/mol,表明吸附是吸热过程。  相似文献   

15.

Background, aim, and scope  

In literature, the environmental applications of green rust (GR) have mainly been pointed out through the reduction of inorganic contaminants and the reductive dechlorination of chlorinated organics. However, reactions involving GR for the oxidation and mineralization of organic pollutants remain very scantly described. In this study, the ability of three synthetic Fe(II)–Fe(III) green rusts, GR(CO32−), GR(SO42−), and GR(Cl), to promote Fenton-like reaction was examined by employing phenol as a model pollutant. Unlike the traditional Fenton’s reagent (dissolved Fe(II) + H2O2), where the pH values have to be lowered to less than 4, the proposed reaction can effectively oxidize the organic molecules at neutral pH and could avoid the initial acidification which may be costly and destructive for the in situ remediation of contaminated groundwater and soils. The green rust reactivity towards the oxidative transformation of phenol was thoroughly evaluated by performing a large kinetic study, chemical analyses, and spectroscopic investigations.  相似文献   

16.
Gallard H  De Laat J 《Chemosphere》2001,42(4):405-413
The rates of degradation of 1,2,4-trichlorobenzene (TCB), 2,5-dichloronitrobenzene (DCNB), diuron and isoproturon by Fe(II)/H2O2 and Fe(III)/H2O2 have been investigated in dilute aqueous solution ([Organic compound]0 approximately 1 microM, at 25.0 +/- 0.2 degrees C and pH < or = 3). Using the relative rate method with atrazine as the reference compound, and the Fe(II)/H2O2 (with an excess of Fe(II)) and Fe(III)/H2O2 systems as sources of OH radicals, the rate constants for the reaction of OH* with TCB and DCNB were determined as (6.0 +/- 0.3)10(9) and (1.1 +/- 0.2)10(9) M(-1) s(-1). Relative rates of degradation of diuron and isoproturon by Fe(II)/H2O2 were about two times smaller in the absence of dissolved oxygen than in the presence of oxygen. These data indicate that radical intermediates are reduced back to the parent compound by Fe(II) in the absence of oxygen. Oxidation experiments with Fe(III)/H2O2 showed that the rate of decomposition of atrazine markedly increased in the presence of TCB and this increase has been attributed to a regeneration of Fe(II) by oxidation reactions of intermediates (radical species and dihydroxybenzenes) by Fe(III).  相似文献   

17.
以氯化铁为铁源,硼氢化钠为还原剂,壳聚糖为稳定剂,采用液相还原法制备壳聚糖稳定纳米铁(CS-Fe);并以氯化铁为铁源,硫酸镍为镍源,硼氢化钠为还原剂,壳聚糖为稳定剂,采用液相还原共沉淀法制备壳聚糖稳定纳米铁镍(CS-Fe/Ni)。通过SEM、EDS、XRD、FT-IR等表征手段,对所制备的CS-Fe和CS-Fe/Ni的形貌及微观结构进行表征,并以Co2+为目标去除物评价CS-Fe和CS-Fe/Ni的反应活性。初步研究表明,制成的CS-Fe含有单质纳米铁,颗粒多数以30~90 nm球形颗粒为主;而CS-Fe/Ni材料中含有纳米铁镍,颗粒多数以30~60 nm球形颗粒为主;在相同的实验条件下,反应60 min,CS-Fe/Ni对Co2+的去除率高达100%,但是CS-Fe仅为88%,即CS-Fe/Ni对Co2+的去除率比CS-Fe高。  相似文献   

18.
以日光灯和金属卤化物灯为主要光源,以Fe(Ⅲ)/丙酮酸钠体系光化学过程中产生的Fe(Ⅱ)和·OH为主要检测对象,探讨了Fe(Ⅲ)/丙酮酸钠体系光解过程中生成的Fe(Ⅱ)和·OH的浓度变化.结果表明,Fe(Ⅲ)/丙酮酸钠体系的光解过程不仅能产生Fe(Ⅱ)和·OH;在丙酮酸钠过量的情况下,光解过程还存在着Fe(Ⅲ)/Fe (Ⅱ)的循环;Fe(Ⅱ)浓度和·OH累积浓度均在pH 3.00时最大;体系的光化学过程中会伴随pH的升高;初始Fe(Ⅲ)浓度和初始丙酮酸钠浓度的提高都有利于Fe(Ⅱ)浓度和·OH累积浓度的提高.  相似文献   

19.
Kim HS  Kang WH  Kim M  Park JY  Hwang I 《Chemosphere》2008,73(5):813-819
Reactive reductants of cement/Fe(II) systems in dechlorinating chlorinated hydrocarbons are unknown. This study initially evaluated reactivities of potential reactive agents of cement/Fe(II) systems such as hematite (alpha-Fe(2)O(3)), goethite (alpha-FeOOH), lepidocrocite (gamma-FeOOH), akaganeite (beta-FeOOH), ettringite (Ca(6)Al(2)(SO(4))(3)(OH)(12)), Friedel's salt (Ca(4)Al(2)Cl(2)(OH)(12)), and hydrocalumite (Ca(2)Al(OH)(6)(OH).3H(2)O) in reductively dechlorinating trichloroethylene (TCE) in the presence of Fe(II). It was found that a hematite/Fe(II) system shows TCE degradation characteristics similar to those of cement/Fe(II) systems in terms of degradation kinetics, Fe(II) dose dependence, and final products distribution. It was therefore suspected that Fe(III)-containing phases of cement hydrates in cement/Fe(II) systems behaved similarly to the hematite. CaO, which was initially introduced as a pH buffer, was observed to participate in or catalyze the formation of reactive reductants in the hematite/Fe(II) system, because its addition enhanced the reactivities of hematite/Fe(II) systems. From the SEM (scanning electron microscope) and XRD (X-ray diffraction) analyses that were carried out on the solids from hematite/Fe(II) suspensions, it was discovered that a sulfate green rust with a hexagonal-plate structure was probably a reactive reductant for TCE. However, SEM analyses conducted on a cement/Fe(II) system showed that hexagonal-plate crystals, which were presumed to be sulfate green rusts, were much less abundant in the cement/Fe(II) than in the hematite/Fe(II) systems. It was not possible to identify any crystalline minerals in the cement/Fe(II) system by using XRD analysis, probably because of the complexity of the cement hydrates. These observations suggest that major reactive reductants of cement/Fe(II) systems may differ from those of hematite/Fe(II) systems.  相似文献   

20.
The rhizosphere plays an important role in altering cadmium (Cd) solubility in paddy soils and Cd accumulation in rice. However, more studies are needed to elucidate the mechanism controlling rice Cd solubility and bioavailability under different rhizosphere conditions to explain the discrepancy of previous studies. A rice culture with nutrient solution and vermiculite was conducted to assess the effects of pH, Eh, and iron (Fe) concentration on Cd, Fe fractions on the vermiculite/root surface and their uptake by rice. The solution pH was set from 4.5 to 7.5, with additions of Fe (30 and 50 mg L?1) and Cd (0.5 and 0.9 mg L?1). At pH 5.5, the Eh in the rice rhizosphere was higher whereas transpiration, Cd2+, and Fe2+ adsorption on the vermiculite/root surface and accumulation in rice were lower than the other pH treatments. Cadmium addition had no impact on pH and Eh in rice rhizosphere while Fe addition decreased pH and increased Eh significantly. Compared with control, Fe addition resulted in the decrease of rhizosphere Cd, Fe solubility and bioavailability. Higher redox potential in the rice rhizosphere resulted in the decline of transpiration, Cd, and Fe accumulation in the rice tissues, suggesting that the transfer of two elements from soil to rice was depressed when the rhizosphere was more oxidized.  相似文献   

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