| Literature DB >> 26887357 |
Yongchen Song1, Hongsheng Dong1, Lei Yang1, Mingjun Yang1, Yanghui Li1, Zheng Ling1, Jiafei Zhao1.
Abstract
A novel hydrate-based method is proposed for separating heavy metal ions from aqueous solution. We report the first batch of experiments and removal characteristics in this paper, the effectiveness and feasibility of which are verified by Raman spectroscopy analysis and cross-experiment. 88.01-90.82% of removal efficiencies for Cr(3+), Cu(2+), Ni(2+), and Zn(2+) were obtained. Further study showed that higher R141b-effluent volume ratio contributed to higher enrichment factor and yield of dissociated water, while lower R141b-effluent volume ratio resulted in higher removal efficiency. This study provides insights into low-energy, intensive treatment of wastewater.Entities:
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Year: 2016 PMID: 26887357 PMCID: PMC4757831 DOI: 10.1038/srep21389
Source DB: PubMed Journal: Sci Rep ISSN: 2045-2322 Impact factor: 4.379
Figure 1Experimental flow diagram of heavy metal separation from aqueous solution.
Specifications and suppliers of reagents.
| Material | Chemical formula | Purity | Supplier |
|---|---|---|---|
| Chromium chloride hexahydrate | CrCl3•6H2O | 99.0% | Xilong Chemical Industry Incorporated Co., Ltd., Guangdong Province, P.R.C. |
| Nickel sulfate hexahydrate | NiSO4•6H2O | 98.5% | Damao Chemical reagent Factory, Tianjin City, P.R.C. |
| Zinc vitriol | ZnSO4•7H2O | 99.5% | Xilong Chemical Industry Incorporated Co., Ltd., Guangdong Province, P.R.C. |
| Copper sulfate pentahydrate | CuSO4•5H2O | 99.0% | Bodi Chemical Industry Incorporated Co., Ltd., Tianjin City, P.R.C. |
| Dichlorofluoroethane (R141b) | CH3-CCl2F | 99.8% | Juhua Group Corporation, Zhejiang Province, P.R.C. |
| Ethylene glycol | (CH2OH)2 | 96.0% | Zhiao Chemical Reagent Institute, Liaoning Province, P.R.C. |
Specifications and suppliers of instruments.
| Instrument | Model | Key Parameter | Supplier |
|---|---|---|---|
| Inductively coupled plasma optical spectrometer | Optima 2000DV | Detection limits: 1-10 ug/L, RSD ≤ 0.5% | PerkinElmer, United States |
| Raman spectroscopy | DXR | Laser wavelength: 532 nm | Thermo Fisher Scientific Co., Ltd., United States |
| ISCO pump | 260D | Flow Range: 0.001-107 ml/min | Isco, Inc., United States |
| Data acquisition instrument | 34972A | - | Agilent Co., United States |
| Low-temperature circulator | FP51 | Precision: 0.01 °C | Julabo Co., Germany |
| Vacuum pump | SHB-111 | Final vacuum: 0.098 MPa | Zhengzhou Greatwall Scientific Industrial and Trade Co, Ltd., P.R.C. |
| Centrifuge | TDZ5-WS | Max RPM: 5000 r/min | Xiangyi centrifuge instrument Co., Ltd., Hunan Province, P.R.C. |
Figure 2Raman spectra of pure liquid R141b, R141b hydrate formed in deionized water, and of simulated electroplating effluent.
Experimental conditions and results.
| Sample | R141b–effluent volume ratio | Heavy metal ions | C0(mg/L) | C11(mg/L) | C12(mg/L) | C2(mg/L) | Re without washing (%) | Re with washing (%) | Ef | Yw (%) |
|---|---|---|---|---|---|---|---|---|---|---|
| S1 | 1:4 | Cr3+ | 140.4 | – | 0.2108 | 257.5 | – | 99.85 | 1.8340 | – |
| Cu2+ | 143.9 | – | 0.3568 | 261.6 | – | 99.75 | 1.8179 | |||
| Ni2+ | 136.5 | – | 0.2444 | 250.0 | – | 99.82 | 1.8315 | |||
| Zn2+ | 133.7 | – | 0.3197 | 250.6 | – | 99.76 | 1.8743 | |||
| S2 | 1:6 | Cr3+ | 96.70 | 28.99 | 9.936 | 126.4 | 70.02 | 89.72 | 1.3071 | 61.67 |
| Cu2+ | 104.4 | 29.37 | 9.583 | 133.9 | 71.87 | 90.82 | 1.2826 | |||
| Ni2+ | 97.12 | 27.40 | 9.781 | 123.5 | 71.79 | 89.93 | 1.2716 | |||
| Zn2+ | 93.36 | 30.04 | 11.19 | 122.6 | 67.82 | 88.01 | 1.3132 | |||
| S3 | 1:5 | Cr3+ | 96.70 | 38.11 | 15.87 | 159.4 | 60.59 | 83.58 | 1.6487 | 71.67 |
| Cu2+ | 104.4 | 38.62 | 14.69 | 162.8 | 63.00 | 85.93 | 1.5599 | |||
| Ni2+ | 97.12 | 37.06 | 15.26 | 155.6 | 61.83 | 84.28 | 1.6022 | |||
| Zn2+ | 93.36 | 39.75 | 16.54 | 153.5 | 57.41 | 82.28 | 1.6442 | |||
| S4 | 1:4 | Cr3+ | 96.70 | 45.45 | 23.12 | 178.9 | 53.00 | 76.09 | 1.8501 | 80.00 |
| Cu2+ | 104.4 | 45.54 | 22.56 | 190.5 | 56.38 | 78.39 | 1.8247 | |||
| Ni2+ | 97.12 | 43.45 | 20.60 | 175.3 | 55.26 | 78.79 | 1.8050 | |||
| Zn2+ | 93.36 | 46.63 | 22.39 | 174.5 | 50.05 | 73.13 | 1.8691 |
Figure 3Removal efficiency at R141b–effluent volume ratio of 1:6.
Figure 4Effect of R141b–effluent volume ratio on removal efficiency with washing.
Figure 5Effect of R141b–effluent volume ratio on enrichment factor.