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1.
一种新型环境矿物材料在废水处理中的应用研究   总被引:8,自引:0,他引:8  
实验研究表明,磷矿石作为一种新型环境矿物材料对重金属离子工业废水具有较好的处理效果,且自身具有显著的优点。采用分级处理的方法以及磷矿石的合适用量可以使处理后的工业废水达到排放标准甚至饮用标准,同时,由于磷矿石去除重金属离子速度快,在瞬间即可发生作用,使得利用动态法进行工业废水的连续处理成为可能,而且不会产生二次污染,具有工艺应用意义。  相似文献   

2.
在现代的城市污水或工业废水处理过程中,必然会产生大量污泥.这些污泥富集着寄生虫卵、致病菌、有害物质与重金属离子等等.对这些污  相似文献   

3.
工业废水中多金属离子的吸附净化   总被引:3,自引:1,他引:2  
以含有Si、Al、Ca、C元素的矿物材料作为基质,经特定条件处理后造粒成型加工成轻质多孔Si-Al-Ca-C结构的吸附材料。研究了该吸附材料对工业废水中多种金属离子的吸附性能,探讨了影响吸附性能的因素。研究结果表明,在一定条件下,Si-Al-Ca-C吸附材料对工业废水中Al3+、Ca2+、Mn2+、Cu2+、Fe3+、Mg2+、As3+和Zn2+的净化率分别高达99.34%、99.82%、98.26%、98.16%、97.76%、97.01%、100%和89.09%。金属离子残留浓度分别为0.152、0.07、0.012、0.02、0.119、0.311、0和0.259 mg/L,均低于国家污水综合排放标准(GB8978-1996)一级标准。  相似文献   

4.
城市污水污泥的重金属离子Pb、Zn超过国家固体废弃物排放最高允许值,属于危险废物。污水污泥的最佳出路是无害化处理,资源化利用,产业化发展。研究了以上海市污水污泥为原料,加入一定比例的固化剂和矿物掺合料使之固结,经养护满足路用强度性能,测试其固结体重金属离子浸出质量浓度亦满足国家固体废弃物排放标准,即污泥中的重金属离子得到有效的束缚和稳定固化,既解决了环境问题,又为污泥产业化发展开辟了新的途径。  相似文献   

5.
采用NaOH为中和剂,使废水中的铝离子及其他金属离子形成难溶的氢氧化物沉演,再加入阴离子型聚丙烯酰胺作助凝剂,提高固液分离效果。处理后的水质符合工业废水排放标准并循环复用,主要污染物Al、Ni、SS的去除率达80%以上。  相似文献   

6.
城市污水污泥的重金属离子Pb、Zn超过国家固体废弃物排放最高允许值,属于危险废物。污水污泥的最佳出路是无害化处理,资源化利用,产业化发展。研究了以上海市污水污泥为原料,加入一定比例的固化剂和矿物掺合料使之固结,经养护满足路用强度性能,测试其固结体重金属离子浸出质量浓度亦满足国家固体废弃物排放标准,即污泥中的重金属离子得到有效的束缚和稳定固化,既解决了环境问题,又为污泥产业化发展开辟了新的途径。  相似文献   

7.
线路板工业废水处理工程实践   总被引:2,自引:0,他引:2  
阐述了运用分质、分类进行物化和生化的方法处理线路板工业废水的工程实例。运行结果表明,该工艺切实可行,使种类复杂的线路板工业废水处理达到了《污水综合排放标准》(GB8978-1996)一级排放标准。  相似文献   

8.
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   

9.
Cu2+可以与H2O2发生类Fenton反应,用Fenton法处理同时含有难降解有机物和Cu2+的工业废水时,Cu2+对于Fenton氧化难降解有机物的反应具有促进作用。本实验在高浓度邻苯二甲酸二甲酯(DMP)和Cu2+组成的模拟工业废水中投加Fenton试剂(Fe2++H2O2),利用Cu2+辅助Fe2+催化Fenton反应氧化难降解有机物。通过正交实验,优选反应条件,并进行单因素实验,分析不同Cu2+浓度、初始H2O2浓度、H2O2∶Fe2+(摩尔比)、pH及温度对DMP去除率的影响,以确定最佳的反应条件,并对反应机理进行了初步探讨。当Cu2+浓度为10 mg/L、DMP浓度为250 mg/L、初始H2O2的浓度为499.5 mg/L、H2O2∶Fe2+的摩尔比为4∶1、温度为20℃时,DMP的去除率最高可达到98.67%。本研究为类芬顿法处理难降解有机物和重金属离子共存的复杂工业废水奠定了基础。  相似文献   

10.
腐殖酸树脂处理含Pb^2+、CU^2+、Ni^2+废水的研究   总被引:1,自引:0,他引:1  
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Pb^2+、Cu^2+和Ni^2+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Pb^2+、Cu^2+和Ni^2+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Pb^2+、Cu^2+和Ni^2+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,Pb^2+、Cu^2+和Ni^2+浓度分别为50 mg/L,经腐殖酸树脂处理,Pb^2+、Cu^2+和Ni^2+去除率可达98%以上,且处理后废水近中性.含Pb^2+、Cu^2+和Ni^2+电镀废水经腐殖酸树脂处理后,废水中Pb^2+、Cu^2+和Ni^2+含量显著低于国家排放标准.  相似文献   

11.
硅质磷块岩对水溶液中镉离子的吸附实验结果表明,硅质磷块岩对水溶性镉离子具有良好的去除效果,主要影响因素有介质的酸度、作用时间、镉离子的初始浓度和样品用量.在pH=6,作用时间为15 min,初始Cd2+浓度为30mg/L的实验条件下,硅质磷块岩对镉离子的去除率可达98%,有可能利用动态法进行工业废水的连续处理.初步研究结果显示,磷块岩对水溶性镉离子的吸附作用符合Langmuir等温吸附模型,不同产地的硅质磷块岩S1和S2对镉离子的最大吸附容量分别为4.43 mg/g和3.88 mg/g.  相似文献   

12.
The studied innovative wastewater treatment process involved the initial abstraction of heavy metal ions onto fungal or stalks biomass (biosorption), followed by the application of a typical flotation stage for the efficient downstream separation of metal-laden biosorbent particles. The ability of microorganisms to remove metal ions from dilute aqueous solutions is a well-known property. Flotation originated from the minerals' processing field; however, it has nowadays found application in the wastewater treatment field. The two processes of biosorption and flotation can be efficiently combined, forming the so-called 'biosorptive flotation' process.  相似文献   

13.
The studied innovative wastewater treatment process involved the initial abstraction of heavy metal ions onto fungal or stalks biomass (biosorption), followed by the application of a typical flotation stage for the efficient downstream separation of metal-laden biosorbent particles. The ability of microorganisms to remove metal ions from dilute aqueous solutions is a well-known property. Flotation originated from the minerals' processing field; however, it has nowadays found application in the wastewater treatment field. The two processes of biosorption and flotation can be efficiently combined, forming the so-called 'biosorptive flotation' process.  相似文献   

14.
The paper summarises the results of the studies on retrieval of heavy metal ions in solution by ferritisation and its potential application in waste-water treatment. The optimum procedure for ferritisation of heavy metal ions in solution has been evolved with respect to pH, concentration of Fe2+, rate and time of aeration and temperature. The recommended procedure consists of controlled aeration of the solution containing heavy metal ions and ferrous ions at pH 9.5-10.5 at about 50 degrees C, until the black, granular, magnetic ferrite separates out. The metal ferrites can also be formed, even without heating or forced aeration, by ageing the mixed metal hydroxide precipitate at pH 10 to 11. The metal ferrites formed have been characterised by X-ray diffractometry. The laboratory-scope experiments conducted with synthetic heavy metal solutions as well as actual wastewater from a tanning industry showed that heavy metal ions can be effectively removed from solution to sub-ppm levels. The metal ferrites thus recovered may find commercial application as microwave absorbers, catalysts, metal scavengers, etc. This technique seems to have potential application in simultaneous, one step removal of different heavy metal ions from industrial wastewaters.  相似文献   

15.
The influence of clay on the adsorption of heavy metals like copper and cadmium on chitosan from simulated industrial wastewater is evaluated. Chitosan–clay blend with ratio of (1:1), (1:2), and (2:1) have been prepared, and these were used as membranes to remove copper and cadmium ions from synthetic industrial wastewater. The chemical parameters for quantities of adsorption of heavy metal contamination have been done, and the kinetics of adsorption has also been carried out. Clay provides enough absorbable sites to overcome mass transfer limitations. The number of absorbable sites for cadmium is more compared to copper, and thus the rate of recovery of cadmium is faster than copper, and the percentage removal of cadmium is more than copper at all times on clay over nylon 6. This difference indicates the influence of clay in the adsorption of heavy metals in comparison to synthetic polymer nylon 6. Rate constant for first-order kinetics of adsorption, k 1, for copper and cadmium is less than that of clay, which clearly indicates that clay, which is a natural polymer, is more kinetically favored compared to synthetic polymer. The difference in the intraparticle diffusion in both the natural and synthetic polymer is not much, and it suggests that the particle diffusion mechanism is the same in both cases. Copper and cadmium recovery is parallel at all times. The percentage of removal of copper increased with an increase in pH from 3 to 5. In the case of cadmium containing wastewater, the maximum removal of metal occurred at pH 5. The uptake amount of Cu2+ ions on chitosan increased rapidly with increasing the contact time from 0 to 360 min and then reaches equilibrium after 360 min, and the equilibrium constant for copper and cadmium ions are more or less the same for the adsorption reaction. There are more adsorption sites for cadmium in the presence of clay and mass transfer limitation is avoided without resorting to rotation, which is the highlight of the present work. And more so, this is pronounced in the case of natural polymer compared to synthetic polymer.  相似文献   

16.
采用天然磷矿石及其改性产品对水溶液中铅离子和镉离子的去除进行了对比研究.天然磷矿石能够有效地去除水溶性铅离子和镉离子,在强酸介质条件下对铅离子的去除效果最好,而对于镉离子,在弱酸或中性的介质中去除效果达到最佳;改性后的磷矿石能够在广泛的pH值范围内对铅离子具有良好的去除作用,显著地提高了对铅离子的去除能力,但是对镉离子的去除没有明显的改善;最后指出,磷矿石对铅离子和镉离子去除差异的根本原因是其对铅离子和镉离子去除机理的不同.  相似文献   

17.

Purpose

Chitosan with nylon 6 membranes was evaluated as adsorbents to remove copper and cadmium ions from synthetic industrial wastewater.

Methods

Chitosan and nylon 6 with glutaraldehyde blend ratio with (1:1+Glu, 1:2+Glu, and 2:1+Glu) have been prepared and these were used as membranes to remove copper and cadmium ions from synthetic industrial wastewater. Characterization of the synthesized membrane has been done with FTIR, XRD, TGA/DTA, DSC, and SEM. Chemical parameters for quantities of adsorption of heavy metal contamination have been done and the kinetics of adsorption has also been carried out.

Results

The optimal pH for the removal of Cd(II) and Cu(II) using chitosan with nylon 6. Maximum removal of the metals was observed at pH 5 for both the metals. The effect of adsorbent dose also has a pronounced effect on the percentage of removal of the metals. Maximum removal of both the metals was observed at 5 g/100 ml of the adsorbent.

Conclusion

Copper and cadmium recovery is parallel at all time. The percentage of removal of copper increased with increase in the pH from 3 to 5. In the case of cadmium containing wastewater, the maximum removal of metal occurred at pH 5. The uptake amount of Cu2+ ions on chitosan increased rapidly with increasing contact time from 0 to 360 min and then reaches equilibrium after 360 min; the equilibrium constant for copper and cadmium ions is more or less the same for the adsorption reaction.  相似文献   

18.
Toxic heavy metals in air, soil and water are global problems that are growing threat to the environment. Therefore, the removal and separation of toxic and environmentally relevant heavy metal ions are a technological challenge with respect to industrial and environmental application. A promising process for the removal of heavy metal ions from aqueous solutions involves bonding the metals to a bonding agent (such as macromolecular species), and then separating the loaded agents from wastewater by separation processes such as membrane filtration. The choice of water-soluble macroligands remains important for developing this technology. The effects of type of complexing agent, pH value and applied pressure on retention coefficients of Zn(II) and Cd(II) complexes were investigated. At best operating conditions (pH=9.0, p=300kPa) using diethylaminoethyl cellulose, the removal of Cd(2+) and Zn(2+) was more than 95% and 99%, respectively.  相似文献   

19.
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   

20.
Application of flotation for the separation of metal-loaded zeolites   总被引:1,自引:0,他引:1  
Several industrial wastewater streams may contain heavy metal ions, which must be effectively removed, before the discharge or reuse of treated waters could take place. Different bonding materials, presenting selectivity and fast reaction kinetics for the removal of metals, have been examined for this purpose. The objective of the present paper was to investigate the application of dispersed-air flotation for the separation of metal-loaded sorbents. Two similar zeolite samples were applied as effective bonding agents for the removal of zinc, a toxic metal commonly found in many industrial wastewaters. This combined process, termed sorptive flotation, involves the preliminary scavenging of metal ions, by using the appropriate sorbent particles (usually present as ultrafine particulates), followed by flotation for the effective separation of them. The obtained results were very promising, as both metal and sorbent were effectively removed/separated from the dispersion.  相似文献   

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