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1.
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   

2.
A Fe-Zr binary oxide adsorbent has been successfully synthesized using a co-precipitation method. It showed a better performance for antimonate (Sb(V)) removal than zirconium oxide or amorphous ferric oxide. The experimental results showed that the Fe-Zr adsorbent has a capacity of 51 mg/g at an initial Sb(V) concentration of 10 mg/L at pH 7.0. Sb(V) adsorption on the Fe-Zr bimetal oxide is normally an endothermic reaction. Most of the Sb(V) adsorption took place within 3 hr and followed a pseudo second-order rate law. Co-existing anions such as SO42-, NO3- and Cl- had no considerable effects on the Sb(V) removal; PO34- had an inhibitory effect to some extent at high concentration; while CO_32- and SiO44- showed significant inhibitory effects when they existed in high concentrations. The mechanism of Sb(V) adsorption on the adsorbent was investigated using a combination of zeta potential measurements, XPS, Raman, FT-IR observations and SO42- release determination. The ionic strength dependence and zeta potential measurements indicated that inner-sphere surface complexes were formed after Sb(V) adsorption. Raman and XPS observations demonstrated that both Fe-OH and Zr-OH sites at the surface of the Fe-Zr adsorbent play important roles in the Sb(V) adsorption. FT-IR characterization and SO42- release determination further demonstrated that the exchange of SO42- with Sb(V) also could promote the adsorption process. In conclusion, this adsorbent showed high potential for future application in Sb(V) removal from contaminated water.  相似文献   

3.
铁锰复合氧化物吸附去除五价锑性能研究   总被引:11,自引:2,他引:9  
对比研究了铁锰复合氧化物(FMBO)、羟基氧化铁(FeOOH)和二氧化锰(MnO2)吸附去除五价锑(Sb(V))的性能.结果表明FMBO对Sb(V)具有很好的吸附性能,在pH=5.0的条件下,最大吸附容量达到1.05 mmol·g-1,略高于FeOOH (0.82 mmol·g-1)及远高于MnO2 (0.43 mmol·g-1);采用Freundlich模型可以很好地描述Sb(V)在FMBO的吸附行为(R2 = 0.98).就吸附动力学而言,假二级动力学可很好地描述Sb(V)在FMBO (R2 = 0.93)和MnO2表面的吸附过程(R2 = 0.96),而Sb(V)在FeOOH表面的吸附过程可用Elovich模型拟合 (R2 = 0.94).Sb(V)的吸附量随着pH值的升高而降低;磷酸盐显著抑制了Sb(V)的吸附,而硫酸盐和碳酸盐影响不大.提高体系离子强度可促进Sb(V)在FMBO表面的吸附,推断Sb(V)在FMBO表面形成内层络合物后被吸附去除.  相似文献   

4.
A Zr-β-FeOOH adsorbent for both As(V) and As(III) removal was prepared by a chemical co-precipitation method.Compared with β-FeOOH,the addition of Zr enhanced the adsorption capacities for As(V) and As(III),especially As(III).The maximum adsorption capacities for As(III) and As(V) were 120 and 60mg/g respectively at pH 7.0,much higher than for many reported adsorbents.The adsorption data accorded with Freundlich isotherms.At neutral pH,for As(V),adsorption equilibrium was approached after 3 hr,while for As(III),adsorption equilibrium was approached after 5 hr.Kinetic data fitted well to the pseudo second-order reaction model.As(V) elimination was favored at acidic pH,whereas the adsorption of As(III) by Zr-β-FeOOH was found to be effective over a wide pH range of 4-10.Competitive anions hindered the adsorption according to the sequence:phosphate > silicate > bicarbonate > sulfate > nitrate,while Ca2+ and Mg2+ increased the removal of As(III) and As(V) slightly.The high adsorption capability and good performance in other aspects make Zr-β-FeOOH a potentially attractive adsorbent for the removal of both As(III) and As(V) from water.  相似文献   

5.
锑矿开采和含锑化合物的应用在一定程度上会造成环境锑污染的加重,对人体健康和生态系统带来风险,为缓解这一现象,采用液相还原负载的方式制备沸石负载纳米零价铁(Z-ZVI)复合材料,探究其对Sb(Ⅲ)和Sb(Ⅴ)的去除效果;采用扫描电子显微镜(SEM)、X射线衍射(XRD)和X射线光电子能谱(XPS)对反应前后复合材料进行表征,并探究不同材料配比、溶液初始pH及无机阴离子对Sb(Ⅲ)和Sb(Ⅴ)吸附效率的影响.结果表明:(1)沸石负载后的纳米零价铁(Z-ZVI)具有较高的比表面积(54.54 m2/g)和反应活性,能够有效吸附、还原高价锑.(2)在pH=7、1.0 g/L Z-ZVI的条件下,反应4 h对20 mg/L Sb(Ⅲ)和Sb(Ⅴ)的吸附率分别达到88%和62%,吸附过程符合准二级动力学方程和Freundlich等温吸附模型.(3)Sb(Ⅲ)的去除率受pH变化的影响不大,但Sb(Ⅴ)的去除率随初始pH的升高而下降,溶液反应终点pH相比初始pH均有所上升.(4)XRD和XPS表征发现,Sb的去除过程中同时存在吸附和还原作用,Fe0氧化过程中...  相似文献   

6.
水环境中过量Sb(Ⅴ)所引起的环境危害受到越来越多的关注.为了考察工艺参数对铁盐改性生物吸附剂吸附Sb(Ⅴ)效果影响、交互作用及其机理,以Fe(Ⅲ)改性卡氏变形杆菌吸附剂(简称“FMPAs”)为研究对象,采用Box-Behnken响应曲面法对FMPAs吸附处理合成含Sb(Ⅴ)废水的吸附时间、FMPAs投加量、pH、温度及Sb(Ⅴ)初始浓度等因素进行优化,确定了最优吸附条件,并对吸附过程的等温模型、动力学模型及吸附机理进行了研究.结果表明:①FMPAs吸附Sb(Ⅴ)的最优条件为吸附时间3.0 h、FMPAs投加量1 910.04 mg/L、pH 2.31、温度45.0℃、Sb(Ⅴ)初始浓度24.80 mg/L,且最优条件下Sb(Ⅴ)的去除率高达97.03%.②FMPAs对Sb(Ⅴ)的吸附符合Langmuir等温吸附模型,其最大吸附容量(qmax)为60.506 mg/g,其吸附动力学过程可采用准一级动力学模型拟合,属于单层吸附和化学吸附.③FMPAs吸附Sb的机理主要为Fe(Ⅲ)改性卡氏变形杆菌生成了Fe—O—OH、Polyose—Fe、Polyose—O—Fe(OH)2等化合物,这些物质中羟基被Sb(Ⅴ)取代生成新的配合物Fe—O—Sb,使Sb(Ⅴ)得到吸附去除.研究显示,FMPAs对Sb(Ⅴ)具有较高的吸附容量,是一种极具潜在应用价值的绿色生物质吸附剂,可用于处理含Sb(Ⅴ)废水.   相似文献   

7.
Antimony (Sb) and its compounds, toxic metalloid, have been classified as high-priority pollutants. Increasing Sb released into the water environment by natural processes and anthropogenic activities, which exposure threatens to human health and ecosystems. Therefore, it is of unquestionable importance to remove Sb from polluted water. Keeping in view the extreme importance of this issue, we summarize the source, chemistry, speciation, distribution, toxicity, and polluted situation of Sb about aqueous solution. Then, we provide the recent and common technology to remove Sb, which are based on adsorption, coagulation/flocculation, electrochemical technology, membrane technology, ion exchange, etc. In this review, we focus in detail on the adsorption method, researchers at present have been investigating to discover more advanced, cost-effective, eco-friendly, reusable adsorbents. However, to date the Sb-containing wastewater treatment technologies are not sufficiently developed and most of research have been tested only in controlled lab conditions. Few reports are available that include field studies and applications. We critically analyzed the salient features and removal mechanisms, evaluating benefits and limitations of these technologies, hoping to provide more references for further research. Finally, we considered the Fe- or Mn-based technologies was the most promising technique to remove Sb for field application.  相似文献   

8.
Insights from the adverse effect of humic acid(HA) on arsenate removal with hydrous ferric oxide(HFO) coprecipitation can further our understanding of the fate of As(V) in water treatment process. The motivation of our study is to explore the competitive adsorption mechanisms of humic acid and As(V) on HFO on the molecular scale. Multiple complementary techniques were used including macroscopic adsorption experiments, surface enhanced Raman scattering(SERS), extended X-ray absorption fine structure(EXAFS) spectroscopy, flow-cell attenuated total reflectance Fourier transform infrared(ATR-FTIR) measurement, and charge distribution multisite complexation(CDMUSIC) modeling. The As(V) removal efficiency was reduced from over 95% to about 10% with the increasing HA concentration to 25 times of As(V) mass concentration. The SERS analysis excluded the HA-As(V) complex formation. The EXAFS results indicate that As(V) formed bidentate binuclear surface complexes in the presence of HA as evidenced by an As-Fe distance of 3.26–3.31 ?. The in situ ATR-FTIR measurements show that As(V) replaces surface hydroxyl groups and forms innersphere complex. High concentrations of HA may physically block the surface sites and inhibit the As(V) access. The adsorption of As(V) and HA decreased the point of zero charge of HFO from 7.8 to 5.8 and 6.3, respectively. The CD-MUSIC model described the zeta potential curves and adsorption edges of As(V) and HA reasonably well.  相似文献   

9.
采用铁、锰对水稻秸秆生物质碳(BC)进行改性,将制备所得的锰改性生物碳(Mn-BC)和铁锰改性生物碳(Fe-Mn-BC)作为吸附剂,用于对水中Sb (Ⅲ)的吸附实验.通过全自动比表面积及孔隙度分析仪(BET)、扫描电子显微镜(SEM)对吸附剂的表面性质进行研究,在吸附最佳pH值和投加量条件下开展等温吸附、动力学吸附及体系共存阴离子影响实验,探究改性生物炭的再生吸附能力,最后利用傅里叶红外光谱仪(FT-IR)、X射线光电子能谱仪(XPS)探究Mn-BC和Fe-Mn-BC对Sb (Ⅲ)的吸附机理.结果表明:改性生物炭具有更大的比表面积及总孔容积.BC在pH值为2,Mn-BC和Fe-Mn-BC在pH值为4,投加量为2.5g/L,25℃条件下,BC、Mn-BC和Fe-Mn-BC的最大吸附量分别为5.08,11.45,29.45mg/g.BC对Sb (Ⅲ)的吸附主要为物理吸附,Mn-BC和Fe-Mn-BC对Sb (Ⅲ)的吸附为化学兼具物理吸附.Mn-BC吸附Sb (Ⅲ)受F-、HCO3-和H2PO4-的影响较大,Fe-Mn-BC对Sb (Ⅲ)的吸附基本不受离子类型和离子强度的干扰.Fe-Mn-BC较Mn-BC具有更突出的吸附再生能力和重复利用性.Mn-BC和Fe-Mn-BC对Sb (Ⅲ)的吸附过程,先是氧化反应将大部分的Sb (Ⅲ)氧化为Sb (Ⅴ),再通过酸性条件下明显的静电作用,Sb (Ⅴ)与负载于Mn-BC上的Mn和Fe-Mn-BC上的Fe/Mn分别形成较为稳定的内层络合物Mn-O-Sb和Fe-O-Sb-Mn.此外,改性生物炭的官能基团-OH、C=O、N-H在吸附作用中也发挥着重要作用.  相似文献   

10.
万琪  李旭春  潘丙才 《环境科学》2013,34(8):3151-3155
通过考察乙醇处理对树脂基纳米水合氧化铁(D201-HFO)结构及其除砷性能的影响,评价乙醇处理在复合材料制备中的必要性.结果表明,乙醇处理后负载水合氧化铁(HFO)在D201树脂内的分散性增加,材料对砷的饱和吸附量提高约20%,且复合材料的比表面积、孔容、孔径分别增加了52%、65%、28%;但乙醇处理对复合材料的机械强度和负载HFO的晶型无影响,在pH值、离子竞争对该材料除砷性能的影响趋势方面也无明显作用,对复合材料固定床除砷性能及再生方面也无明显作用.总体而言,乙醇处理对D201-HFO复合材料实际除砷性能影响不大,从技术经济性考虑可以省略.  相似文献   

11.
本文选用死亡的短裸甲藻(Gymnodinium breve cells)和中肋骨条藻(Skeletonema costatum)细胞作为吸附剂,分析了其理化性质,拟合了对邻苯二甲酸二丁酯(dibutyl phthalate,DBP)的吸附动力学和吸附等温线,探究了pH和离子强度对吸附效果的影响。结果表明:两种死亡藻细胞对DBP的吸附符合伪二级动力学模型,吸附过程以化学吸附为主,吸附等温线符合Freundlich模型,吸附过程为多层吸附主导的混合吸附;pH 从2.0至3.5时,两种死亡藻细胞的吸附量随pH的升高而降低,而pH从3.5至9.5时,吸附量随pH的增加而增大;NaCl浓度从0至0.05 mol/L时,两种死亡藻细胞对DBP的吸附量迅速增大,从0.05 mol/L升至0.50 mol/L过程中其吸附量基本没有变化。本研究证明了死亡藻细胞可以吸附水中的DBP,而且发现无细胞壁的短裸甲藻的吸附能力显著优于中肋骨条藻,研究结果对于死亡藻细胞应用于水环境中PAEs的去除具有重要意义。  相似文献   

12.
针对含重金属Sb(III)废水处理问题,采用液相还原法制备出高效的还原氧化石墨烯负载纳米零价铁(nZVI/rGO)复合吸附材料,并采用多种技术手段对所制备的nZVI/rGO复合材料进行表征.同时,复合材料中nZVI的负载量、吸附剂投加量、初始pH值以及反应温度等因素对废水中Sb(Ⅲ)吸附去除效果的影响被全面考察,并进一步对吸附过程进行吸附等温线和吸附动力学拟合.结果表明,在25℃,pH为3.0时,当nZVI负载量为70wt%,nZVI/rGO投加量为0.5g/L时,Sb(Ⅲ)的去除率最高,140min内可达99.7%.该吸附过程符合准二级动力学模型与Langmuir等温吸附模型,因此nZVI/rGO被证实是一种高效的Sb(III)吸附材料.  相似文献   

13.
The ligand exchange adsorbent could be used to remove the toxic arsenic(V) and phosphate efficiently from water even in the presence of foreign anions and possible to apply in chemical industry.  相似文献   

14.
The long term exposure of arsenic via drinking water has resulted in wide occurrence of arsenisim globally, and the oxidation of the non-ionic arsenite (As(III)) to negatively-charged arsenate (As(V)) is of crucial importance for the promising removal of arsenic. The chemical oxidants of ozone, chlorine, chlorine dioxide, and potassium permanganate may achieve this goal; however, their application in developing countries is sometimes restricted by the complicate operation and high cost. This review paper focuses on the heterogeneous oxidation of As(III) by solid oxidants such as manganese oxide, and the adsorption of As(V) accordingly. Manganese oxide may be prepared by both chemical and biological methods to achieve good oxidation performance towards As(III). Additionally, manganese oxide may be combined with other metal oxides, e.g., iron oxide, to improve the adsorption capability towards As(V). Furthermore, manganese oxide may be coated onto porous materials of metal organic frameworks to develop novel adsorbents for arsenic removal. To achieve the application in engineering works, the adsorbents granulation may be achieved by drying and calcination, agglomeration, and the active components may also be in situ coated onto the porous materials to maintain the oxidation and adsorption activities as much as possible. The novel adsorbents with heterogeneous oxidation and adsorption capability may be carefully designed for the removal of arsenic in household purifiers, community-level decentralized small systems, and the large-scale drinking water treatment plants (DWTPs). This review provides insight into the fundamental studies on novel adsorbents, the development of innovative technologies, and the demonstration engineering works involved in the heterogeneous oxidation and adsorption, and may be practically valuable for the arsenic pollution control globally.  相似文献   

15.
改性壳聚糖季铵盐的研制及其对高氯酸盐的吸附研究   总被引:1,自引:1,他引:0  
谢燕华  李适宇  刘广立 《环境科学》2011,32(9):2537-2542
通过将壳聚糖季铵盐改性以实现固定化,并用于水体中ClO 4-的吸附去除,研究了改性过程相关工艺参数对产物吸附能力的影响,考察了产物的吸附和再生性能.结果表明,戊二醛的交联性能优于甲醛和环氧氯丙烷的交联性能,戊二醛的最佳投加量为6.82%,最佳的反应温度为45℃,pH值在3~12之间交联反应均能很好地进行,从而实现壳聚糖...  相似文献   

16.
The present work deals with the As(Ⅴ) removal from an aqueous medium by calcined refractory grade bauxite (CRB) as a function of solution pH, time, As(Ⅴ) concentration and temperature. The residual As(Ⅴ) was lowered from 2 mg/L to below 0.01 mg/L in the optimum pH range 4.0-7.0 using a 5 g/L CRB within 3 h contact time. The adsorption data fits well with Langmuir isotherm and yielded Langmuir monolayer capacity of 1.78 mg As(Ⅴ)/g of CRB at pH 7.0. Presence of anions such as silicate and phosphate decreased As(Ⅴ) adsorption efficiency. An increase temperature resulted a decrease in the amount of As(Ⅴ) adsorbed by 6%. The continuous fixed bed column study showed that at the adsorbent bed depth of 30 cm and residence time of 168 min, the CRB was capable of treating 340 bed volumes of As(V) spiked water (C0 = 2 mg/L) before breakthrough (Ce = 0.01 mg/L). This solid adsorbent, although not reusable, can be considered for design of adsorption columns as an efficiency arsenic adsorption media.  相似文献   

17.
高源  贺维鹏  施周  童丽  向帆 《中国环境科学》2015,35(11):3346-3351
以聚硫酸铁(PFS)为絮凝剂,考察强化混凝去除饮用水源水中五价锑(Sb(V))时原水pH值、PFS投量、共存阴离子(HCO3-和PO43-)及腐殖酸(HA)等对其去除效果影响及作用机制.结果表明,原水pH值对强化混凝过程Sb(V)存在形态及PFS的水解产物有重要影响,表现为较低pH值和较高PFS投量均有利于提高Sb(V)的去除率;由于竞争吸附作用的存在,共存阴离子与HA均对Sb(V)的混凝去除产生负面效应.此外, PFS除Sb(V)过程较为符合准二级动力学模型.  相似文献   

18.
我国农药阿特拉津的污染十分严重,对生态系统造成了非常不利的影响. 为了实现对水环境中阿特拉津的高效去除和吸附剂的重复利用,该研究通过溶液浸渍和高温煅烧技术将金属锆负载到活性炭上,制备出功能化材料Zr@AC,使用扫描电镜(SEM)、X射线衍射仪(XRD)、傅里叶变换红外吸收光谱仪(FTIR)和比表面及孔径分析仪(BET)对材料的形貌和组成进行了表征,并考察了Zr@AC对水中阿特拉津的去除效果. 结果表明:①当浸渍液锆离子的质量分数为7.0%、浸渍时间为9.0 h、煅烧温度为500 ℃和煅烧时间为5.0 h时,制备的Zr@AC具有较大的比表面积、较多的中孔和微孔以及丰富的活性位点. ②对阿特拉津的去除研究表明,当溶液pH为4.0、温度为25 ℃、Zr@AC投加量为60.0 mg/L时,经过90 min的反应,Zr@AC对阿特拉津的吸附容量最大,达到93.8 mg/g. ③动力学模拟研究表明,该吸附过程遵循拟二级动力学模型,且Freundlich等温吸附模型的拟合结果要优于Langmuir等温吸附模型,说明Zr@AC对阿特拉津的吸附存在化学吸附和多分子层吸附的双重作用. ④经过5次重复试验后,Zr@AC对阿特拉津的去除率仍有83.9%. 研究显示,Zr@AC可作为水中去除阿特拉津的吸附剂,是一种很有前途、可重复多次使用的材料.   相似文献   

19.
袁明珠  丁雷  李爽  李永连 《环境工程》2022,40(4):121-126
实验以三氯化铁和三氯化铝作为混凝剂,对比研究了混凝去除EDTA土壤淋洗废液中砷、锑的效果,重点探讨了反应终点pH、EDTA浓度、Fe/Al投加量以及共存重金属离子对砷、锑去除效果的影响。结果表明:1)对于EDTA土壤淋洗废液中As(Ⅴ)、Sb(Ⅴ)的去除,铝盐比铁盐效果更优;2)EDTA的存在不仅降低了铁盐/铝盐混凝对As(Ⅴ)、Sb(Ⅴ)的吸附去除效果,同时抑制了砷酸铁、锑酸铁等物质的生成,削弱了铁盐对As(Ⅴ)、Sb(Ⅴ)的沉淀去除。EDTA导致铁盐混凝过程中生成粒径较大、表面活性较低的稳定结晶态絮体;3)当c(EDTA)=0.05 mol/L时,在pH=5、ρ(Al)=2000 mg/L的条件下,铝盐对EDTA土壤淋洗废液中As(Ⅴ)、Sb(Ⅴ)的去除率分别高达98.00%和93.09%;4)共存重金属离子通过与EDTA络合,增加了絮体Al(OH)3的生成量,促进了As(Ⅴ)、Sb(Ⅴ)去除。由此表明,铝盐能够有效实现EDTA土壤淋洗废液中As(Ⅴ)、Sb(Ⅴ)的去除,对于推动基于EDTA的土壤淋洗技术的广泛应用具有重要意义。  相似文献   

20.
采用磷酸作为活化剂对黍糠生物炭进行改性,得到富含活性官能团的功能性生物炭(fCBC),并将其作为硫化锰(MnS)的载体,最终成功制备出硫化锰负载的磷酸改性生物炭(MnS-fCBC),可用于水体中镉(Cd)的高效去除.系统评价了初始浓度、初始pH值以及MnS-fCBC投加量对于吸附反应的影响. MnS-fCBC表现出优越的吸附Cd的能力,在初始Cd浓度为200mg/L、pH=6和投加量1g/L的条件下,MnS-fCBC对于Cd的吸附容量最大,达145.15mg/g.吸附反应受pH值影响显著,在偏酸性条件下能取得较好的去除效果.通过X射线衍射仪(XRD)和拉曼光谱仪(Raman)对MnS-fCBC进行结构表征分析,结合批次试验探讨了Cd的去除机理.结果表明,表面络合和化学沉淀是Cd去除的主要机理.材料的回用性能试验显示,在5次循环使用后,材料依然有较高的Cd去除能力,表明其具有较高的可重用性.因此,MnS-fCBC可作为一种高效的Cd吸附剂,应用于含Cd废水处理.  相似文献   

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