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1.
正研究了氧化石墨烯复合物(MGO-SH)对含镍废水中Ni 2+的吸附性能。结果表明,MGO-SH吸附材料上有丰富的官能团,对Ni 2+有较强的吸附能力,去除率可达95%以上;较低Ni 2+初始质量浓度(≤25mg/L)下,吸附拟合结果与Freundlich吸附等温线模型较吻合;在采用该材料处理含Ni 2+工业废水时,应先将废水进行预处理,使Ni 2+低于25mg/L,再用MGO-SH吸附效果更佳。  相似文献   

2.
在静态条件下,研究了Ca2+在煤泥表面的吸附动力学.考察了不同Ca2+初始浓度的吸附实验,并对实验结果进行了动力学方程的拟合,结果表明,煤泥对Ca2+的吸附过程较好地符合准二级动力学方程.研究了初始Ca2+浓度、溶液pH值、振荡速度和煤泥质量对Ca2+吸附量的影响,实验结果表明:(1)煤泥对Ca2+吸附量随着Ca2+溶液浓度的增加而增大,Ca2+浓度大于3.828 mmol/L时,吸附鼍基本保持不变;(2)溶液pH<9时煤泥颗粒对Ca2+的吸附主要是静电吸附,pH>9时Ca2+在煤泥表面主要是沉淀吸附和一羟基吸附;(3)Ca2+在煤泥表面吸附的最佳振荡强度为150 r/min.  相似文献   

3.
以前期工作中合成的树脂PAANa-TE为吸附剂进行重金属吸附测试,考察吸附剂用量、丙烯酸中和度、吸附时间、溶液pH、初始浓度和吸附温度对树脂吸附重金属离子Cu2+、Pb2+、Cr3+和Co2+性能的影响,用原子吸收分光光度计测定了树脂吸附Cu2+、Pb2+、Cr3+和Co2+后的残留浓度,树脂对4种金属离子的吸附容量分别为21.59、2.39、5.66和4.98 mmol/g,吸附容量大小为Cu2+Cr3+Co2+Pb2+,吸附速率顺序为Cr3+Pb2+Cu2+Co2+。结果表明,该树脂对高浓度重金属离子有较快速,高效率的吸附,吸附过程在100 min左右吸附容量达到最大,并用不同浓度的酸对吸附重金属离子的树脂进行脱附处理,脱附量很小,据此可考虑进一步对金属离子进行回收处理。且脱附率较低,因此,可对工业化和城市化进程所产生的各种化学形态的重金属水体污染物造成的生态环境和质量问题起到重要的改善作用。  相似文献   

4.
皂化改性橘子皮生物吸附剂对重金属离子的吸附   总被引:3,自引:0,他引:3  
以生物废料橘子皮(OP)为原料,经乙醇、氢氧化钠处理,得到改性橘子皮生物吸附剂SOP,将其用于对重金属离子Cu2+、Pb2+、Cd2+、Zn2+和Ni2+的吸附。研究了溶液pH、吸附时间和重金属离子初始浓度对SOP吸附性能的影响。结果表明,重金属离子在生物吸附剂上的吸附速率快,符合准二级动力学方程。SOP对重金属离子的吸附等温线符合Lang-muir模型,根据Langmuir模型计算SOP对Cu2+、Pb2+、Cd2+、Zn2+和Ni2+的饱和吸附量分别为56.82、152.4、66.27、33.90和23.02 mg/g,均高于改性前。常见阳离子的存在对重金属离子吸附的影响较小,改性后的橘子皮生物吸附剂可以再生重复使用4次以上,是性能良好的重金属离子吸附剂。  相似文献   

5.
利用泥炭为原料制备腐殖酸树脂.在动态条件下,研究了腐殖酸树脂对重金属离子Pb2+、Cu2+和Ni2+的吸附效果及吸附条件.同时探讨了腐殖酸树脂对重金属离子Pb2+、Cu2+和Ni2+的吸附与解吸再生机理,吸附机理研究表明,腐殖酸树脂对重金属离子Pb2+、Cu2+和Ni2+的主要吸附形式为离子交换吸附和络合吸附.结果表明,在废水pH值为5.0~7.0,Pb2+、Cu2+和Ni2+浓度分别为50 mg/L,经腐殖酸树脂处理,Pb2+、Cu2+和Ni2+去除率可达98%以上,且处理后废水近中性.含Pb2+、Cu2+和Ni2+电镀废水经腐殖酸树脂处理后,废水中Pb2+、Cu2+和Ni2+含量显著低于国家排放标准.  相似文献   

6.
法库沸石对氨氮的吸附特性和阳离子交互过程   总被引:2,自引:0,他引:2  
以0.9~2 mm和3.3~4 mm粒径沸石的天然法库沸石作为实验材料,开展了等温吸附实验、动力学实验和阳离子影响实验,探讨了天然沸石对氨氮(NH+4-N)的吸附特性及阳离子交互过程。结果表明,法库沸石对NH+4-N等温吸附线符合Langmuir和Freundlich吸附方程,最大吸附量为10.41 mg/g。吸附动力学过程符合准二级和颗粒内经扩散动力学方程,其吸附NH+4过程为物理吸附和化学吸附过程,并以化学吸附为主。对反应过程中各离子浓度监测发现,沸石中与NH+4发生离子交换的主要是Na+、Ca2+和K+,三者占离子交换总量的99%。共存阳离子在沸石吸附NH+4过程中,Ca2+和Mg2+对吸附过程影响最大,Na+影响最小。  相似文献   

7.
研究了L 半胱氨酸改性甲壳素作为吸附剂对Pb2 + 、Cd2 + 的动态吸附性能 ,同时考察了流速、溶液中离子的含量、吸附剂的相对用量等因素对吸附效果的影响 ,以及洗脱液的种类和酸度、洗脱速度、洗脱液体积等因素对解吸率的影响。结果表明 ,用该吸附剂填装的吸附柱对含Pb2 + 、Cd2 + 工业废水直接进行处理 ,处理后的水达到了排放标准。  相似文献   

8.
为脱除选矿废水中油酸根,研究了钙基蒙脱石和十六烷基三甲基溴化铵改性钙基蒙脱石在pH6.5时对模拟选矿废水中油酸钠的吸附率。采用红外光谱测试分析了不同吸附条件下的吸附产物,并通过扫描电镜观察钙基蒙脱石和改性蒙脱石吸附油酸根的微观形貌,从热力学角度描述了油酸根与Ca2+、Al3+反应的标准自由能变化ΔG0与pH的关系。结果表明,pH6.5时油酸根在钙基蒙脱石与改性钙基蒙脱石表面以形成油酸分子和难溶油酸盐方式发生化学吸附,分别在pH 3、pH 5具有最大吸附率75.15%、95.82%;对应吸附量分别为17.83和22.73 mmol/100 g;钙基蒙脱石层间Ca2+、Al3+与油酸根化学吸附的标准自由能变化ΔG0具有较大负值,化学吸附具有自发趋势。  相似文献   

9.
采用自制木粉/壳聚糖接枝丙烯酸-丙烯酰胺吸附树脂R1、R2、R3对二元金属离子Cu2 +/pb2和Zn2+/pb2+溶液中的吸附性能进行了较系统考察.pb2+离子溶液中存在竞争离子Cu2+、Zn2+时,随竞争离子浓度增加,3种吸附树脂R1、R2、R3对pb2+的吸附量明显下降,而竞争离子吸附量显著增加.二元溶液中各金属离子浓度相同时,3种树脂对竞争离子Cu2+、Zn2+的吸附量大于对pb2+的吸附量;各溶液中分别加入NaCl及NaNO3、尿素后,对pb2+离子的吸附量下降迅速.随吸附树脂用量增加,竞争离子Cu2+、Zn2+的吸附量逐渐减小,pb2+的吸附量在吸附树脂用量0.10 g/L(Zn2 +/pb2+溶液)或0.15 g/L(Cu2+/pb2+溶液)时出现最大值.溶液pH值对树脂吸附性能有显著影响.3.0<pH<5.O时,3种树脂对竞争离子和pb2+的吸附量快速增大;5< pH <9时,树脂对竞争离子和pb2+的吸附量基本不变;9<pH<ll时,树脂对pb2+的吸附量减小,而对竞争离子的吸附量或增大或减小.  相似文献   

10.
膨润土对Pb2+、Cu2+、Cr3+的吸附动力学及等温线研究   总被引:1,自引:0,他引:1  
研究所用膨润土的主要成分为SiO2和Al2O3,属于Ca基膨润土,BET表面积为50.83 m2/g.在恒温及恒定pH条件下,用静态吸附法研究了膨润土对Pb2 、Cu2 、Cr3 的吸附特性,结果表明其较好地符合Lagergten二级吸附速率方程,对这3种离子的吸附速率为Pb2 >Cu2 >Cr3 .利用3种等温线方程对吸附过程进行拟合,发现利用Langmuir吸附等温方程计算的值与膨润土吸附Pb2 、Cu2 、Cr3 试验数据最为吻合.膨润土对3种金属离子的平衡吸附量为Cr3 >Cu2 >Pb2 .  相似文献   

11.
硅烷化改性沸石对重金属离子的吸附性能   总被引:2,自引:0,他引:2  
制得一种用于重金属废水处理的新型硅烷化改性沸石吸附剂,成本低、效果显著且稳定。通过对改性沸石表征,分析了改性对沸石结构的影响。结果表明,改性一定程度降低了原沸石的晶体特征,但基本上保持了其结构组成;硅烷化改性成功地在沸石上接枝了氨基。对硅烷化沸石的特性研究,得出硅烷化沸石对Ni2+、Cu2+、Zn2+和Pb2+吸附最佳投加量为1、1、1.6和0.6 g/L,且此时对4种离子的去除率也较好;吸附动力学研究得出,其吸附过程可用二级动力学方程较好地拟合;吸附达到平衡时,4种金属离子的平衡吸附量分别为11.23、17.41、15.45和59.42 mg/g;硅烷化沸石对金属离子的吸附行为更符合Langmuir模型,为化学吸附;在酸性条件下(pH=2~6),硅烷化沸石仍保持一定的吸附能力,具有一定的耐酸性。  相似文献   

12.
液/固体系中硅藻土对Pb2+和Cd2+的吸附机制   总被引:2,自引:0,他引:2  
为了提高硅藻土在重金属废水处理上的应用水平,采用静态吸附实验考察了液/固体系中硅藻土对Pb2+、Cd2+的吸附影响因素、吸附等温线和吸附动力学属性。结果表明,随着投加量的减少,离子初始浓度的提高,pH值的增大,吸附作用时间的延长,硅藻土对Pb2+、Cd2+吸附量不断上升;硅藻土对Pb2+、Cd2+的等温吸附都符合Langmuir模型,硅藻土对Pb2+、Cd2+最大吸附量分别为10.428 mg/g和7.916 mg/g,硅藻土对Pb2+具有更好的吸附能力;Pb2+具有较低的水合自由能,更容易脱去水膜与硅藻土孔道内的活性基团发生吸附作用;双常数扩散方程可以很好地描述硅藻土对Pb2+、Cd2+的吸附动力学属性,硅藻土对Cd2+有较快的吸附速率。  相似文献   

13.
以煤矸石为原料,采用碱熔后水热合成法制备X型分子筛并进行XRD、SEM、BET和Zeta电位分析。研究其对水中Co2+、Cu2+、Cd2+和Cr3+4种离子的吸附性能,包括吸附等温线、吸附动力学以及初始金属离子浓度、pH值对吸附性能的影响。所合成的矸石基X型分子筛的BET比表面积为676.02 m2/g,微孔孔容为0.263 cm3/g。吸附实验表明,矸石基X型分子筛能有效去除上述4种离子,同时实现煤矸石的资源化和金属离子的去除。4种离子的平衡吸附量均随初始浓度的增大而增大,相同条件下平衡吸附量的大小顺序为Cd2+>Cr3+>Cu2+>Co2+。准二级动力学模型能很好地描述4种离子的吸附动力行为。Langmuir模型对Co2+、Cu2+和Cd2+吸附的拟合较Freundlich模型高,说明其主要表现为物理吸附过程。4种离子的吸附速率均由液膜扩散和颗粒内扩散共同控制。  相似文献   

14.
活性焦吸附处理一硝基甲苯(MNT)废水   总被引:2,自引:0,他引:2  
一硝基甲苯(MNT)废水是一种具有高毒性、难降解的火炸药废水。以活性焦为吸附剂,研究了活性焦对MNT废水中COD的吸附性能及pH、时间、温度和活性焦用量对吸附效果的影响,并分析了吸附前后MNT废水水质和急性毒性的变化。实验结果表明,pH、时间和活性焦用量是影响吸附效果的主要因素,吸附过程符合拟二级动力学,吸附速率常数为1.01×10-2g/(mg·min),可以用Freundlich吸附等温线来描述,等温线常数为Kf=1.14×10-4,n=0.58;在pH为3,温度为20℃,活性焦用量为80g/L的条件下吸附MNT废水3 h,COD的去除率达到72.0%,急性毒性下降了98.6%,表明活性焦能有效地吸附处理MNT废水。  相似文献   

15.

Purpose

Owing to the present complexity and difficulty of concentrated dye wastewater treatment, this work aimed to synthesize a reproducible waste-sorbing material for the treatment of wastewater by forming the dye-conjugating complex hybrid.

Methods

The inorganic/organic hybridization was applied to prepare the objective material by immobilizing waster dye-Mordant blue 9 (MB) with barium sulfate (BaSO4). The composition and pattern of the formed material were determined by spectrometry and characterized by SEM and XRD, and their formation process was clarified. The adsorption of cationic dye-basic blue BO (BB) and copper ion was investigated..

Results

The hybrid of MB alone into growing BaSO4 formed the pineapple-like particles while that of the MB/BB-conjugating complex was the rhombus material. The adsorption of BB on the MB–BaSO4 hybrid was probably attributed to ion-pair equilibrium and that of Cu2+ may result from the complexation. The treatment of dye and heavy metal wastewaters indicated that the MB hybrid material removed 99.8% BB and 97% Cu2+ and the dye-conjugating hybrid with growing BaSO4 100% MB, 99.5% BB, and 44% Cu2+.

Conclusion

The waste MB–BaSO4 hybrid material is efficient to treat cationic dye and Cu2+ wastewater. The dye-conjugating hybridization method is the first to be advanced for in situ wastewater treatment, and it showed a combined effect for the removal of both organic dyes and heavy metals.  相似文献   

16.
Background, aim, and scope  Dye pollutants are a major class of environmental contaminants. Over 100,000 dyes have been synthesized worldwide and more than 700,000 tons are produced annually and over 5% are discharged into aquatic environments. The adsorption or sorption is one of the most efficient methods to remove dye and heavy metal pollutants from wastewater. However, most of the present sorbents often bear some disadvantages, e.g. low sorption capacity, difficult separation of spoil, complex reproduction, or secondary pollution. Development of novel sorbents that can overcome these limitations is desirable. Materials and methods  On the basis of the chemical coprecipitation of calcium oxalate (CaC2O4), bromopyrogallol red (BPR) was embedded during the growing of CaC2O4 particles. The ternary C2O4 2––BPR–Ca2+ sorbent was yielded by the centrifugation. Its composition was determined by spectrophotometry and AAS, and its structure and morphology were characterized by powder X-ray diffraction (XRD), laser particle-size analysis, and scanning electron microscopy (SEM). The adsorption of ethyl violet (EV) and heavy metals, e.g. Cu(II), Cd(II), Ni(II), Zn(II), and Pb(II) were carried out and their removal rate determined by spectrophotometry and ICP-OES. The adsorption performance of the sorbent was compared with powder activated carbon. The Langmuir isothermal model was applied to fit the embedment of BPR and adsorption of EV. Results  The saturation number of BPR binding to CaC2O4 reached 0.0105 mol/mol and the adsorption constant of the complex was 4.70 × 105 M–1. Over 80% of the sorbent particles are between 0.7 and 1.02 μm, formed by the aggregation of the global CaC2O4/BPR inclusion grains of 30–50 nm size. Such a material was found to adsorb cationic dyes selectively and sensitively. Ethyl violet (EV) was used to investigate the adsorption mechanism of the material. One BPR molecule may just bind with one EV molecule. The CaC2O4/BPR inclusion material adsorbed EV over two times more efficiently than the activated carbon. The adsorption of EV on the CaC2O4/BPR inclusion sorbent was complete in only 5 min and the sedimentation complete in 1 h. However, those of EV onto activated carbon took more than 1.5 and 5 h, respectively. The treatment of methylene blue and malachite green dye wastewaters indicated that only 0.4% of the sorbent adsorbed over 80% of color substances. Besides, the material can also adsorb heavy metals by complexation with BPR. Over 90% of Pb2+, and approximately 50% of Cd2+ and Cu2+, were removed in a high Zn2+-electroplating wastewater when 3% of the material was added. Eighty-six percent of Cu2+, and 60% of Ni2+ and Cd2+, were removed in a high Cd2+-electroplating wastewater. Discussion  The embedment of BPR into CaC2O4 particles responded to the Langmuir isothermal adsorption. As the affinity ligand of Ca2+, BPR with sulfonic groups may be adsorbed into the temporary electric double layer during the growing of CaC2O4 particles. Immediately, C2O4 2– captured the Ca2+ to form the CaC2O4 outer enclosed sphere. Thus, BPR may be released and embedded as a sandwich between CaC2O4 layers. The adsorption of EV on the sorbent obeyed the Langmuir isothermal equation and adsorption is mainly due to the ion-pair attraction between EV and BPR. Different from the inclusion sorbent, the activated carbon depended on the specific surface area to adsorb organic substances. Therefore, the adsorption capacity, equilibrium, and sedimentation time of the sorbent are much better than activated carbon. The interaction of heavy metals with the inclusion sorbent responded to their coordination. Conclusions  By characterizing the C2O4 2––BPR–Ca2+ inclusion material using various modern instruments, the ternary in situ embedment particle, [(CaC2O4)95(BPR)] n 2n, an electronegative, micron-sized adsorbent was synthesized. It is selective, rapid, and highly effective for adsorbing cationic dyes and heavy metals. Moreover, the adsorption is hardly subject to the impact of electrolytes. Recommendations and perspectives  The present work provides a simple and valuable method for preparing the highly effective adsorbent. If a concentrated BPR wastewater was reused as the inclusion reactant, the sorbent will be low cost. By selecting the inclusion ligand with a special structure, we may prepare some particular functional materials to recover the valuable substances from seriously polluted wastewaters. The recommended method will play a significant role in development of advanced adsorption materials. Electronic supplementary material  The online version of this article (doi:) contains supplementary material, which is available to authorized users.  相似文献   

17.
改性污泥活性炭对水中镉离子的吸附性能   总被引:3,自引:0,他引:3  
以城市污水处理厂的剩余污泥为原料,氯化锌为活化剂制备污泥活性炭,对一部分污泥活性炭用6.0 mol/L的硝酸进行改性,并研究了未改性和改性的污泥活性炭对Cd2+的吸附行为的影响。结果表明,在pH为5.0、Cd2+初始浓度为100 mg/L、吸附剂投加量为2.0 g/L、反应温度为25℃时,未改性的污泥活性炭吸附容量为8.45 mg/g,硝酸改性的污泥活性炭吸附容量达到了23.35 mg/g。改性和未改性的污泥活性炭对Cd2+都有较好的吸附容量,硝酸改性大幅度提高了污泥活性炭对Cd2+的吸附性能。常温下改性污泥活性炭对Cd2+的吸附符合Langmuir吸附等温式。  相似文献   

18.
采用农业废弃物麦秆为原料制备黄原酸酯,通过傅立叶变换红外光谱FT-IR、扫描电子显微镜SEM等技术对麦秆黄原酸酯物理化学性质进行表征,并对水中Cu2+进行吸附特性研究,考察了不同条件对Cu2+吸附效果的影响,并将其应用于跌水式吸附法对含重金属沼液进行处理,为麦秆黄原酸酯应用于实际污水处理提供理论参考。结果表明,麦秆黄原酸酯对Cu2+的吸附行为符合伪二级动力学吸附模型与Langmuir等温吸附方程,298 K时,Cu2+的饱和吸附量为28.33 mg/g,溶出率为4.97%,对Cu2+的固持能力较强;黄原酸酯跌水吸附法对于含量为50 mg/L以下的Cu2+废水去除率达到80%以上,对实际沼液中Pb、Zn、Cd、Cu的去除率为44.42%~90.16%,去除顺序为Cd>Pb>Cu>Zn。  相似文献   

19.
重金属离子在钠基膨润土中的吸附特征与机理   总被引:2,自引:0,他引:2  
膨润土是一种天然粘土矿物,比表面积大、吸附能力强。通过钠基膨润土对复合重金属离子Cu2+、Zn2+和Cd2+的竞争吸附实验研究,探讨了钠基膨润土对Cu2+、Zn2+和Cd2+的吸附特征。结果表明,钠基膨润土对Cu2+、Zn2+和Cd2+的吸附随离子浓度增加而增大。吸附具有选择性,Cu2+、Zn2+和Cd2+的吸附能力大小顺序为Cu2+>Zn2+>Cd2+。并通过XRD及IR等分析探讨了钠基膨润土的吸附机理主要表现为离子交换吸附。  相似文献   

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