首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到17条相似文献,搜索用时 546 毫秒
1.
采用超滤方法将腐植酸(HA)分成5个不同分子量组分,利用平衡透析法研究HA中不同分子量组分与As(III)的络合特征和作用机理,计算络合过程的条件分配系数、表观稳定常数.结果表明,腐植酸组分的分子量对HA与As(III)的络合过程有显著的影响,当分子量小于10kDa时,HA与As(III)络合能力明显强于其他条件.其中羧基和酚羟基在HA与砷络合中起重要作用,为主要络合位点.采用Scatchard分析和双位点配体模型对络合结果进行拟合,发现HA中不同分子量组分和As(III)的络合过程中均存在强和弱2种络合位点.  相似文献   

2.
腐植酸中不同分子量组分与As(Ⅲ)的络合性能   总被引:1,自引:0,他引:1  
采用超滤方法将腐植酸(HA)分成5个不同分子量组分,利用平衡透析法研究HA中不同分子量组分与As(III)的络合特征和作用机理,计算络合过程的条件分配系数、表观稳定常数.结果表明,腐植酸组分的分子量对HA与As(III)的络合过程有显著的影响,当分子量小于10kDa时,HA与As(III)络合能力明显强于其他条件.其中羧基和酚羟基在HA与砷络合中起重要作用,为主要络合位点.采用Scatchard分析和双位点配体模型对络合结果进行拟合,发现HA中不同分子量组分和As(III)的络合过程中均存在强和弱2种络合位点.  相似文献   

3.
在实验室模拟条件下,研究了Shewanella oneidensis MR-1作用下Fe(III)还原和As(III)氧化动力学及其影响因素.结果表明,Fe(III)被还原为Fe(II)的同时伴随着As(III)氧化为As(V);S.oneidensis MR-1在含低浓度As(III)培养基上生长良好,在高浓度培养基上生长被抑制;As(III)通过制约菌体的生长与活性来抑制Fe(III)异化还原.同样,适量浓度的Fe(III)含量对As(III)氧化转化有很强的促进作用,但是过高浓度的Fe(III)浓度使得溶液中产生过多的Fe(II),从而对As(III)氧化转化有一定程度的抑制作用.此外,弱碱环境更有利于As(III)氧化转化.  相似文献   

4.
在实验室模拟条件下,研究了Shewanella oneidensis MR-1作用下Fe(III)还原和As(III)氧化动力学及其影响因素.结果表明,Fe(III)被还原为Fe(II)的同时伴随着As(III)氧化为As(V);S. oneidensis MR-1 在含低浓度As(III)培养基上生长良好,在高浓度培养基上生长被抑制;As(III)通过制约菌体的生长与活性来抑制Fe(III)异化还原.同样,适量浓度的Fe(III)含量对As(III)氧化转化有很强的促进作用,但是过高浓度的Fe(III)浓度使得溶液中产生过多的Fe(II),从而对As(III)氧化转化有一定程度的抑制作用.此外,弱碱环境更有利于As(III)氧化转化.  相似文献   

5.
Cr(VI)是一种毒性极强的重金属,利用微生物还原Cr(VI)为Cr(III)是解决Cr(VI)污染的一条有效途径。菌株Enterobacter sp. L6是一株分离自海洋沉积物中的异化铁还原细菌。接种时细胞密度A600为(0.25±0.03),培养12 h,A600达到(1.04±0.05),累积产生Fe(II)浓度为(0.80±0.03)mmol/L;随着培养时间的延长,细胞密度A600和累积产生Fe(II)浓度开始下降;培养36 h时,细胞密度A600为(0.81±0.04),累积Fe(II)浓度(0.63±0.01)mmol/L。在厌氧培养过程中,菌株L6细胞生长与异化还原Fe(III)性质存在明显的偶联关系。利用菌株L6的异化铁还原性质还原Cr(VI)的实验结果表明,在Cr(VI)浓度0~24 mg/L范围内,异化铁还原细菌L6都能进行细胞生长并还原Cr(VI)。Cr(VI)浓度为4、8和12 mg/L时,菌株L6对Cr(VI)还原率可达到100%,当Cr(VI)浓度为16 mg/L时,Cr(VI)还原率是参比[未添加Fe(III)]的2.11倍。Cr(VI)浓度为20、24 mg/L时,仍能够还原Cr(VI)。以Fe(III)为电子受体的异化铁还原细菌能明显提高Cr(VI)还原率,这为利用微生物修复Cr(VI)污染提供实验数据支持。  相似文献   

6.
采用配煤、原位浸渍和两步活化法制备了4种原位载铁活性炭(FGL1/2/3/4),并以空白炭C-GL为基础的表面铁浸渍后改性炭(Fe-GL-2/3/4)为对照,研究了原位载铁炭对水中As和腐植酸(HA)的同步吸附效能.结果表明,炭化料原位载铁促进了比表面积(SBET)和中孔结构的发育.其中,原位载铁炭FCL4(载铁量6.51%)在45Å~480Å的范围内的中孔容积(Vmes)比C-GL增加了0.1146cm3/g;而后改性载铁则造成SBET和Vmes的显著降低.原位载铁同时促进了表面碱度的增加,保证了中性条件下更好的As离子吸附能力;FCL4对As(Ⅲ)和As(V)的Langmuir最大吸附量(L-Qmax)分别达到2.566和2.825mg/g.原位载铁炭进一步发育的中孔结构促进了对HA(<10mg DOC/L)的吸附效能,FGL4对HA的Langmuir最大吸附量(QHA)达到46.25mg DOC/g.As-HA共存体系内FGL4对各组分的吸附容量有所降低,但As(Ⅲ)和As(V)的吸附容量仍达到2.325和2.675mg/g.  相似文献   

7.
为了评价Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺对PVA(聚乙烯醇)废水处理的可行性,采用Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺原位处理PVA模拟废水,考察不同作用时间、总铁投加量、初始ρ(PVA)和废水硬度对该工艺处理效果的影响.利用XRD(X射线衍射)、FT-IR(傅里叶转换红外光谱)、BET比表面积、VSM(磁滞回线测试)对沉淀物进行表征,解析该工艺原位处理PVA模拟废水的主要机理,并以该工艺沉淀物为吸附剂,通过锑吸附试验,探讨该工艺沉淀物的回用性.结果表明:①Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺对PVA模拟废水具有良好的处理能力,初始ρ(PVA)为1 000 mg/L时,该工艺在20 min以内即可达到80%以上的去除率,并且基本没有金属铁的残余,该工艺对PVA的去除率随总铁投加量的增加而提高且基本不受水体硬度影响. ②在Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺对PVA的原位去除过程中,PVA作为一种反应物参与沉淀物Fe3O4的生成,并促进纳米Fe3O4比表面积增大,最终形成一种类似于凝胶的Fe3O4聚合物. ③Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺可高效处理模拟PVA-MB(亚甲基蓝)染料废水.对于含有100 mg/L MB(亚甲基蓝三水)和500 mg/L PVA的混合溶液,MB和CODCr去除率在1 min时分别达到97.37%和89.47%.沉淀物通过磁分离、乙醇和水清洗后,在水中浸出的ρ(TOC)和ρ(CODCr)很低,分别为0.86和2 mg/L,可作为吸附剂直接使用,得益于其具有较高的比表面积,对金属锑的拟合吸附量可达71.94 mg/g. ④Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺具有一定的实际应用价值.对东莞某实际印染废水处理5 min,CODCr和染料的去除率分别为85.71%和98.98%.研究显示,Fe(Ⅲ)/Fe(Ⅱ)铁氧体工艺可高效去除PVA,沉淀物为易回收的磁性Fe3O4,可作为吸附剂直接使用.   相似文献   

8.
采用荧光光谱、红外光谱、平行因子(PARAFAC)分析及二维相关光谱(2D-COS)分析来解释Fe (III)与牛粪发酵DOM的络合异质性及机制.结果表明,PAFAFAC能够识别6个荧光组分,包括类蛋白(C2)、类富里酸(C1)、类腐殖酸(C4、C5)、类蛋白与类富里酸和类腐殖酸结合的荧光组分(C3、C6).2D-SYS-COS分析仅能识别类蛋白和类富里酸荧光物质,DOM中类蛋白荧光为主要的荧光组分.2D-COS分析表明,在334nm处的类富里酸荧光组分优先与Fe (III)离子发生络合作用,络合次序为334nm→306nm.DOM中能够优先与Fe (III)发生络合作用的为仲铵盐-NH2基团,各官能团组分与Fe (III)发生络合作用次序为2265→2771→1528→1310→1805→1479cm-1.双对数模型计算结果表明牛粪发酵沼液DOM能够与Fe (III)形成高化学稳定性的络合物,其络合常数在4.34~7.03之间,研究结果能够为沼液施用土壤金属离子的形态分布和迁移转化提供理论指导.  相似文献   

9.
《环境科学与技术》2021,44(8):99-107
为了考察紫外光(λ_(max)=365 nm)照射下三价砷(As(Ⅲ))在含有腐殖酸的水体中光氧化过程,该文研究了初始pH、HA浓度、外加铁离子以及不同分子量范围的HA组分等环境因子对As(Ⅲ)光氧化的影响。利用ESR检测和自由基猝灭实验以及不同气氛实验,量化不同活性物种对As(Ⅲ)光氧化的贡献率。结果表明,pH值对As(Ⅲ)在HA体系中的光氧化影响极大,低pH有利于As(Ⅲ)的光氧化。当pH为2.6,As(Ⅲ)浓度为100.0μg/L时,HA的最佳投加量为10.0 mg/L。Fe(Ⅲ)-HA络合物表现出低光活性,外加低浓度铁离子抑制As(Ⅲ)的光氧化,高浓度则促进As(Ⅲ)的光氧化。不同分子量范围的HA组分对As(Ⅲ)的光氧化贡献不同。As(Ⅲ)的形态转化是由于三重态腐殖酸(~3HA~*)的直接作用以及羟基自由基(HO·)直接氧化共同作用的结果。其中85%的As(Ⅲ)氧化是HO·直接氧化导致,HO·主要来自HO_2·/O_2·~-;剩余15%依赖于~3HA~*对As(Ⅲ)的直接氧化。研究结果有助于了解As(Ⅲ)在含有溶解性有机质的酸性水体中光化学转化行为。  相似文献   

10.
Natural and anthropogenic arsenic (As) contamination of water sources pose serious health concerns, especially for small communities in rural areas. This study assessed the applicability of three industrial byproducts (coal fly ash, lignite, and green waste compost) as the low-cost adsorbents for As(V) removal under various field-relevant conditions (dissolved oxygen, As(V)/Fe ratio, solution pH, and presence of competing species). The physico-chemical properties of the adsorbents were characterized by XRD, XRF, FT-IR, and NMR analysis. Batch experiments demonstrated that coal fly ash could provide effective As(V) removal (82.1%-95%) because it contained high content of amorphous iron/aluminium hydroxides for As(V) adsorption and dissolvable calcium minerals for calcium arsenate precipitation. However, the addition of lignite and green waste compost was found unfavourable since they hindered the As(V) removal by 10%-42% possibly due to dissolution of organic matter and ternary arsenate-iron-organic matter complexes. On the other hand, higher concentrations of dissolved iron (comparing As(V)/Fe ratios of 1:1 and 1:10) and dissolved oxygen (comparing 0.2 and 6 mg/L) only marginally enhanced the As(V) removal at pH 6 and 8. Thus, addition of dissolved iron, water aeration, or pH adjustment became unnecessary because coal fly ash was able to provide effective As(V) removal under the natural range of geochemical conditions. Moreover, the presence of low levels of background competing (0.8 or 8 mg/L of humic acid, phosphate, and silicate) imposed little influence on As(V) removal, possibly because the high adsorption capacity of coal fly ash was far from exhaustion. These results suggested that coal fly ash was a potentially promising adsorbent that warranted further investigation.  相似文献   

11.
Simultaneous elimination of As(Ⅲ) and Pb(Ⅱ) from wastewater is still a great challenge.In this work,an iron-sulfur codoped biochar (Fe/S-BC) was successfully fabricated in a simplified way and was applied to the remediate the co-pollution of As(Ⅲ) and Pb(Ⅱ).The positive enthalpy indicated that the adsorption in As-Pb co-pollution was an endothermic reaction.The mechanism of As(Ⅲ) removal could be illustrated by surface complexation,oxidation and precipitation.In addition to precipitation and com...  相似文献   

12.
以SBBR反应器活性污泥作为铁还原菌菌种来源,采用兼性厌氧/严格厌氧恒温培养试验,投加不同Fe(III)考察各条件下的异化铁还原能力,同时比较对磷的去除效果.结果表明:2种条件下Fe(III)还原能力具有较好的一致性,依次为:Fe(OH)3>氧化铁皮>青矿>红矿,其中严格厌氧条件下较好.同时,除磷效果与其呈正相关,富集培养至7d, Fe(OH)3及氧化铁皮体系出水磷浓度均达到2mg/L以下,之后继续降低,最终达到0.5mg/L以下.结合异化铁还原除磷机理,可以证明,不同Fe(III)表面吸附作用对TP的去除贡献较小,其主要作用为铁还原菌驱动下的化学沉淀去除.  相似文献   

13.
Mobilization of arsenic under anaerobic conditions is of great concern in arsenic contaminated soils and sediments. Bacterial reduction of As(V) and Fe(Ⅲ) influences the cycling and partitioning of arsenic between solid and aqueous phase. We investigated the impact of bacterially mediated reductions of Fe(Ⅲ)/Al hydroxides-bound arsenic(V) and iron(Ⅲ) oxides on arsenic release. Our results suggested that As(V) reduction occurred prior to Fe(Ⅲ) reduction, and Fe(Ⅲ) reduction did not enhance the release of arsenic. Instead, Fe(Ⅲ) hydroxides retained their dissolved concentrations during the experimental process, even though the new iron mineral-magnetite formed. In contrast, the release of reduced As(Ⅲ) was promoted greatly when aluminum hydroxides was incorporated. Thus, the substitution of aluminum hydroxides may be responsible for the release of arsenic in the contaminated soils and sediments, since aluminum substitution of Fe(Ⅲ) hydroxides universally occurs under natural conditions.  相似文献   

14.
Ligands may increase the yields of reactive oxygen species (ROS) in zero-valent iron (ZVI)/O2 systems. To clarify the relationship between the properties of ligands and their effects on the oxidative removal of contaminants, five common ligands (formate, acetate, oxalate, ethylenediaminetetraacetic acid (EDTA), and phosphate) as well as acetylacetone (AA) were investigated with arsenite (As(III)) as the target contaminant at three initial pH values (3.0, 5.0, and 7.0). The addition of these ligands to the ZVI/O2 system resulted in quite different effects on As(III) removal. EDTA enhanced the oxidation of As(III) to arsenate (As(V)) but inhibited the removal of As(V). Oxalate was the only ligand in this work that accelerated both the removal of As(III) and As(V). By analyzing the ligand effects from the four aspects: dissolution of surface iron (hydr)oxides, corrosion of ZVI, reaction with ROS, and interference with precipitation, the following properties of ligands were believed to be important: ability to provide dissociable protons, complexation ability with iron, and reactivity with ROS. The complexation ability is a double-edged sword. It could enhance the generation of ROS by reducing the reduction potential of the Fe(III)/Fe(II) redox couple, but also could inhibit the removal of arsenic by coprecipitation. The elucidated relationship between the key property parameters of ligands and their effects on the ZVI/O2 system is helpful for the rational design of effective ZVI/ligand/O2 systems.  相似文献   

15.
Humic substances are ubiquitous redox-active organic compounds of environment. In this study, experiments were conducted to determine the reduction capacity of humic acid in the man-ix of bromate and Fe(Ⅲ) solutions and the role of Fe(Ⅲ) in this redox process. The results showed that the humic acid regenerated Fe(Ⅱ) and reduced bromate abiotically. The addition of Fe(Ⅲ) could accelerate the bromate reduction rate by forming humic acid-Fe(Ⅲ) complexes. Iron species acts as electron mediator and catalyst for the bromate reduction by humic acid, in which humic acid transfers electrons to the complexed Fe(Ⅲ) to form Fe(Ⅱ), and the regenerated Fe(Ⅱ) donate the electrons to bromate. The kinetics study on bromate reduction further indicated that bromate reduction by humic acid-Fe(Ⅲ) complexes is pH dependent. The rate decreased by 2-fold with the increase in solution pH by one unit. The reduction capacity of Aldrich humic acid was observed to be lower than that of humic acid or natural organic matter of Suwanne River, indicating that such redox process is expected to occur in the environment.  相似文献   

16.
络合吸收脱除NO体系中Fe(EDTA)的生物还原   总被引:3,自引:0,他引:3  
利用驯化得到的微生物还原Fe(EDTA)的研究结果表明,葡萄糖比乙醇和甲醇更适合于作为该体系的碳源;由于硝酸盐在反应过程中对Fe(EDTA)的微生物还原形成抑制,选择铵盐为微生物生长的氮源;反应最适pH值范围为6~7;温度在30℃~40℃范围之间变化,Fe(EDTA)还原率相差不大,温度大于40℃以后,还原率随温度升高而下降.碳源量和菌体接种量满足还原反应需要即可,过量碳源或菌体接种量对还原率没有明显的促进作用.在实验考察的浓度范围内,FeⅢ(EDTA)的生物还原符合1级反应动力学,最大反应速率γmax=1.3 mmol·(L·h)-1,半饱和速率常数km=53.5 mmol·L-1.  相似文献   

17.
Fe(Ⅲ)/苹果酸/H_2O_2体系对有机物的光降解特性研究   总被引:1,自引:1,他引:0  
系统研究了可见光照射下染料橙黄Ⅱ在Fe(Ⅲ)/苹果酸/H2O2体系中的脱色情况,考查了光源、pH值、Fe(Ⅲ)、苹果酸、H2O2及染料初始浓度等因素对橙黄Ⅱ脱色效率的影响.结果表明,Fe(Ⅲ)/苹果酸/H2O2体系在可见光照射下能有效实现橙黄Ⅱ的脱色,在pH为5.0的条件下仍然具有较强的降解有机物的能力.该体系对橙黄Ⅱ的脱色率高于Fe(Ⅲ)/H2O2体系或Fe(Ⅲ)/苹果酸体系,光反应符合表观一级反应动力学规律.随着光强的增加,橙黄Ⅱ的脱色率增大.太阳光是该体系的有效光源,本体系具有利用太阳光的潜力.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号