| Literature DB >> 26646686 |
Tatyana Rakitskaya1, Alla Truba2,3, Alim Ennan4, Vitaliya Volkova1.
Abstract
Samples of the solid component of welding aerosols (SCWAs) were obtained as a result of steel welding by ANO-4, TsL‑11, and UONI13/55 electrodes of Ukrainian manufacture. The phase compositions of the samples, both freshly prepared (FP) and modified (M) by water treatment at 60 °C, were studied by X-ray phase analysis and IR spectroscopy. All samples contain magnetite demonstrating its reflex at 2θ ~ 35° characteristic of cubic spinel as well as manganochromite and iron oxides. FP SCWA-TsL and FP SCWA-UONI contain such phases as СaF2, water-soluble fluorides, chromates, and carbonates of alkali metals. After modification of the SCWA samples, water-soluble phases in their composition are undetectable. The size of magnetite nanoparticles varies from 15 to 68 nm depending on the chemical composition of electrodes under study. IR spectral investigations confirm the polyphase composition of the SCWAs. As to IR spectra, the biggest differences are apparent in the regions of deformation vibrations of M-O-H bonds and stretching vibrations of M-O bonds (M-Fe, Cr). The catalytic activity of the SCWAs in the reaction of ozone decomposition decreases in the order SCWA-ANO > SCWA-UONI > SCWA-TsL corresponding to the decrease in the content of catalytically active phases in their compositions.Entities:
Keywords: Air purification; Characterization; Ozone decomposition; Solid component; Welding aerosol
Year: 2015 PMID: 26646686 PMCID: PMC4673081 DOI: 10.1186/s11671-015-1186-7
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1X-ray diffraction patterns of freshly prepared (a, c, e) and modified (b, d, f) SCWAs: a, b ANO; c, d TsL; e, f UONI
X-ray spectral parameters and the phase composition of SCWA-ANO
| Phase Ref. | Freshly prepared sample | Modified sample | ||||||
|---|---|---|---|---|---|---|---|---|
| 2 |
|
| 2 |
|
| |||
| Exp. | Ref. | Exp. | Ref. | |||||
| (Mn,Fe)(Cr,V)2O4 | 18.212 | 85 | 4.867 | 4.85 | 18.362 | 219 | 4.828 | 4.85 |
| 36.654 | 70 | 2.449 | 2.44 | – | – | – | – | |
| – | – | – | – | 42.784 | 210 | 2.112 | 2.12 | |
| 56.402 | 121 | 1.630 | 1.63 | 56.453 | 197 | 1.629 | 1.63 | |
| 61.727 | 149 | 1.502 | 1.50 | – | – | – | – | |
| – | – | – | – | 62.402 | 369 | 1.487 | 1.50 | |
| Fe3O4 | 35.389 | 1000 | 2.534 | 2.55 | 35.546 | 999 | 2.524 | 2.55 |
| 36.978 | 87 | 2.429 | 2.42 | 37.204 | 222 | 2.415 | 2.42 | |
| 43.027 | 297 | 2.100 | 2.10 | 43.186 | 344 | 2.093 | 2.10 | |
| 53.414 | 58 | 1.714 | 1.71 | – | – | – | – | |
| 57.001 | 219 | 1.614 | 1.61 | 57.015 | 295 | 1.614 | 1.61 | |
| 62.587 | 463 | 1.483 | 1.483 | 62.724 | 528 | 1.480 | 1.483 | |
| 73.957 | 75 | 1.281 | 1.279 | 74.154 | 121 | 1.278 | 1.279 | |
| 79.004 | 22 | 1.211 | 1.210 | 78.943 | 70 | 1.212 | 1.210 | |
| Mn3O4 | 53.638 | 57 | 1.707 | 1.70 | 53.712 | 147 | 1.705 | 1.70 |
| K2CO3 | 34.189 | 95 | 2.620 | 2.61 | Not detected | |||
| Na2CO3 | 56.058 | 90 | 1.639 | 1.62 | Not detected | |||
| 62.071 | 250 | 1.494 | 1.48 | Not detected | ||||
| 63.278 | 62 | 1.470 | 1.48 | Not detected | ||||
| K2CrO4 | 38.826 | 38 | 2.317 | 2.32 | Not detected | |||
| K2Cr2O7 | 30.809 | 75 | 2.900 | 2.85 | Not detected | |||
| 53.091 | 48 | 1.724 | 1.73 | Not detected | ||||
| (Mn,Fe)(Cr,V)2O4; | 30.033 | 328 | 2.973 | 2.99 | 30.159 | 439 | 2.961 | 2.99 |
| Fe3O4; | 2.97 | 2.97 | ||||||
| K2CrO4 | 2.96 | 2.96 | ||||||
X-ray spectral parameters and the phase composition of SCWA-TsL
| Phase | Freshly prepared sample | Modified sample | ||||||
|---|---|---|---|---|---|---|---|---|
| 2 |
|
| 2 |
|
| |||
| Exp. | Ref. | Exp. | Ref. | |||||
| (Mn,Fe)(Cr,V)2O4 | 18.072 | 122 | 4.905 | 4.89 | 18.179 | 102 | 4.876 | 4.89 |
| 36.685 | 50 | 2.448 | 2.44 | 36.766 | 52 | 2.442 | 2.44 | |
| Fe3O4 | 35.095 | 658 | 2.555 | 2.55 | 35.201 | 567 | 2.548 | 2.55 |
| 43.104 | 48 | 2.097 | 2.10 | 43.113 | 59 | 2.097 | 2.10 | |
| 73.622 | 24 | 1.286 | 1.279 | 73.675 | 30 | 1.285 | 1.279 | |
| β-Fe2O3⋅Н2О | 46.383 | 37 | 1.956 | 1.96 | 46.077 | 16 | 1.968 | 1.96 |
| 68.297 | 16 | 1.372 | 1.38 | 68.798 | 71 | 1.363 | 1.38 | |
| Mn3O4 | 73.876 | 21 | 1.282 | 1.28 | 73.315 | 33 | 1.290 | 1.28 |
| 78.794 | 11 | 1.214 | 1.21 | 78.534 | 13 | 1.217 | 1.21 | |
| 89.748 | 11 | 1.092 | 1.09 | 89.418 | 17 | 1.095 | 1.09 | |
| CaF2 | 46.999 | 871 | 1.932 | 1.93 | 47.130 | 881 | 1.927 | 1.93 |
| 68.647 | 76 | 1.365 | 1.365 | 68.798 | 271 | 1.363 | 1.365 | |
| 87.378 | 113 | 1.115 | 1.115 | 87.531 | 118 | 1.114 | 1.115 | |
| MgSiO3 | 30.804 | 50 | 2.900 | 2.908 | 30.628 | 22 | 2.917 | 2.900 |
| 61.330 | 49 | 1.510 | 1.499 | 61.513 | 60 | 1.506 | 1.499 | |
| K2CO3 | 31.670 | 11 | 2.822 | 2.80 | Not detected | |||
| K2CrO4 | 29.249 | 47 | 3.051 | 3.07 | Not detected | |||
| 30.310 | 83 | 2.946 | 2.96 | Not detected | ||||
| CaF2; | 28.251 | 1000 | 3.156 | 3.154 | 28.386 | 999 | 3.142 | 3.154 |
| 3.170 | 3.170 | |||||||
| K2CO3 | 34.486 | 117 | 2.599 | 2.61 | Not detected | |||
| Na2CO3 | 2.60 | |||||||
| K2CrO4; | 38.802 | 455 | 2.319 | 2.321 | 38.910 | 49 | 2.313 | 2.29 |
| 2.32 | 2.32 | |||||||
| 2.29 | 2.29 | |||||||
| (Mn,Fe)(Cr,V)2O4; | 42.631 | 147 | 2.119 | 2.12 | 42.747 | 123 | 2.114 | 2.12 |
| 2.10 | 2.10 | |||||||
| 2.10 | 2.10 | |||||||
| 2.12 | 2.12 | |||||||
| (Mn,Fe)(Cr,V)2O4; | 61.969 | 200 | 1.496 | 1.50 | 62.051 | 173 | 1.495 | 1.50 |
| 1.494 | 1.494 | |||||||
| 1.495 | 1.495 | |||||||
| Fe3O4 ; | 62.361 | 97 | 1.487 | 1.483 | 62.471 | 88 | 1.485 | 1.483 |
| 1.485 | 1.485 | |||||||
| 1.486 | 1.486 | |||||||
| 1.482 | 1.482 | |||||||
X-ray spectral parameters and the phase composition of SCWA-UONI
| Phase | Freshly prepared sample | Modified sample | ||||||
|---|---|---|---|---|---|---|---|---|
| 2 |
|
| 2 |
|
| |||
| Exp. | Ref. | Exp. | Ref. | |||||
| (Mn,Fe)(Cr,V)2O4 | 18.055 | 54 | 4.909 | 4.89 | 18.068 | 144 | 4.906 | 7.89 |
| 29.740 | 131 | 3.001 | 2.99 | 29.797 | 299 | 2.996 | 2.99 | |
| – | – | – | – | 42.425 | 168 | 2.129 | 2.12 | |
| 56.066 | 160 | 1.639 | 1.63 | 56.130 | 310 | 1.637 | 1.639 | |
| 61.823 | 95 | 1.499 | 1.50 | 61.806 | 257 | 1.50 | 1.50 | |
| Fe3O4 (magnetite) | 35.465 | 177 | 2.529 | 2.53 | 35.418 | 726 | 2.532 | 2.53 |
| 42.880 | 89 | 2.107 | 2.10 | 42.899 | 206 | 2.106 | 2.10 | |
| – | – | – | – | 56.837 | 134 | 1.619 | 1.61 | |
| 62.104 | 111 | 1.486 | 1.48 | 62.403 | 316 | 1.487 | 1.485 | |
| Fe2O3 (goethite, hematite) | 24.103 | 44 | 3.689 | 3.68 | – | – | – | – |
| 35.844 | 87 | 2.503 | 2.51 | 35.961 | 174 | 2.495 | 2.51 | |
| 62.134 | 106 | 1.493 | 1.485 | 62.137 | 266 | 1.493 | 1.485 | |
| β-Fe2O3⋅Н2О (agacansite) | 39.243 | 31 | 2.293 | 2.29 | 39.502 | 25 | 2.280 | 2.29 |
| 43.055 | 92 | 2.099 | 2.10 | 43.112 | 213 | 2.097 | 2.10 | |
| Mn3O4 | 28.749 | 66 | 3.103 | 3.08 | – | – | – | – |
| 42.664 | 88 | 2.117 | 2.10 | 42.634 | 215 | 2.119 | 2.10 | |
| 62.689 | 103 | 1.481 | 1.48 | 62.557 | 339 | 1.484 | 1.48 | |
| CaF2 | 28.282 | 357 | 3.153 | 3.15 | 28.319 | 1000 | 3.149 | 3.15 |
| 47.023 | 317 | 1.931 | 1.93 | 47.075 | 751 | 1.929 | 1.93 | |
| 68.663 | 31 | 1.366 | 1.365 | 68.546 | 54 | 1.368 | 1.365 | |
| 87.361 | 55 | 1.115 | 1.115 | 87.303 | 69 | 1.116 | 1.115 | |
| K2CO3 | 31.768 | 208 | 2.815 | 2.80 | Not detected | |||
| 37.831 | 141 | 2.376 | 2.37 | Not detected | ||||
| Na2CO3⋅Н2О | 40.628 | 95 | 2.220 | 2.24 | Not detected | |||
| K2CrO4 | 29.176 | 40 | 3.058 | 3.07 | Not detected | |||
| 53.028 | 23 | 1.726 | 1.72 | Not detected | ||||
| 57.110 | 39 | 1.612 | 1.61 | Not detected | ||||
| MgSiO3 | 30.844 | 109 | 2.897 | 2.908 | 30.672 | 94 | 2.912 | 2.908 |
| 54.978 | 27 | 1.669 | 1.66 | 55.266 | 57 | 1.660 | 1.66 | |
| 68.914 | 16 | 1.361 | 1.359 | 68.852 | 68 | 1.362 | 1.359 | |
| Fe3O4; | 30.073 | 1000 | 2.969 | 2.97 | 30.046 | 268 | 2.972 | 2.97 |
| 2.98 | 2.98 | |||||||
| 2.96 | 2.96 | |||||||
| 2.96 | 2.96 | |||||||
| K2Cr2O7; | 31.224 | 239 | 2.862 | 2.87 | 31.090 | 64 | 2.874 | 2.87 |
| 2.87 | 2.87 | |||||||
| K2CO3; | 34.090 | 255 | 2.628 | 2.61 | 33.914 | 58 | 2.671 | 2.61 |
| 2.64 | 2.64 | |||||||
| (Mn,Fe)(Cr,V)2O4; | 35.050 | 279 | 2.558 | 2.55 | 35.031 | 775 | 2.559 | 2.55 |
| 2.55 | 2.55 | |||||||
| 2.551 | 2.551 | |||||||
| β-Fe2O3⋅Н2О; | 38.836 | 184 | 2.317 | 2.29 | 38.854 | 800 | 2.316 | 2.29 |
| 2.36 | 2.36 | |||||||
| 2.32 | 2.32 | |||||||
| 2.32 | 2.32 | |||||||
| β-Fe2O3⋅Н2О; | 55.760 | 130 | 1.647 | 1.648 | 55.941 | 340 | 1.642 | 1.648 |
| 1.647 | 1.647 | |||||||
| 1.642 | 1.642 | |||||||
CAP contents, unit cell parameters, and sizes of magnetite nanoparticles estimated from (311) reflection of Fe3O4
| Sample | Content of CAP, % |
|
|
|---|---|---|---|
| FP SCWA-ANO | 81 | 8.404 | 18.0 |
| M SCWA-ANO | 97 | 8.371 | 15.0 |
| FP SCWA-TsL | 51 | 8.474 | 23.0 |
| M SCWA-TsL | 52 | 8.451 | 20.5 |
| FP SCWA-UONI | 54 | 8.388 | 68.0 |
| M SCWA-UONI | 78 | 8.398 | 31.5 |
Fig. 2IR spectra of the freshly prepared (a, c, e) and modified (b, d, f) SCWAs: a, b ANO; c, d TsL; e, f UONI
Fig. 3Time dependences of the final ozone concentration, , in the course of ozone decomposition by freshly prepared (a) and modified (b) SCWAs. 1 SCWA-TsL, 2 SCWA-UONI, and 3 SCWA-ANO ()
Kinetic parameters for the reaction of ozone decomposition by freshly prepared and modified SCWAs ()
| Sample |
|
|
|
|
|---|---|---|---|---|
| FP SCWA-ANO | 7.00 | 4.4 | 3.3 | 8.3 |
| M SCWA-ANO | 6.51 | 3.7 | 14.4 | 4.0 |
| FP SCWA-TsL | 5.76 | 2.2 | 24.0 | 0.9 |
| M SCWA-TsL | 6.65 | 3.8 | 8.8 | 4.9 |
| FP SCWA-UONI | 5.95 | 2.4 | 13.8 | 4.4 |
| M SCWA-UONI | 4.97 | 0.8 | 6.1 | 6.0 |