Knowledge (XXG)

Calciothermic reaction

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An interesting way of performing calciothermic reductions is by in-situ generated metallic calcium, dissolved in molten calcium chloride, as shown in the
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best it in this respect in oxide processes. On the other hand, this trend does not continue to other compounds that are non-oxides, and for instance
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Calcium is one of the most potent reducing agents available, usually drawn as the strongest oxidic reductant in
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are metallothermic reduction reactions (more generally, thermic chemical reactions) which use
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Calciothermic processes are used in the extraction of metals such as
148:(Report). Argonne National Lab. (ANL), Argonne, IL (United States). 111:"Calciothermic powders of rare metals and intermetallic compounds" 27: 109:
Kasimtsev, A. V.; Yudin, S. N.; Levinsky, Yu. V. (2020-12-29).
65: 161:"Calciothermic Reduction of Zirconium Oxide in Molten CaCl2" 245: 144:
Figueroa, Javier; Williamson, Mark A. (2014-09-25).
45:is produced by the calciothermic reduction of the 159:Abdelkader, Amr Mohamed; El-Kashif, Emad (2007). 265: 8: 272: 258: 176: 101: 7: 226: 224: 244:. You can help Knowledge (XXG) by 14: 16:Metallothermic reduction reaction 228: 178:10.2355/isijinternational.47.25 1: 192:Vignes, Alain (2013-02-28). 317: 223: 146:Uranium Dioxide Conversion 301:Chemical reaction stubs 195:Extractive Metallurgy 3 123:10.17580/nfm.2020.02.05 85:Aluminothermic reaction 20:Calciothermic reactions 90:Silicothermic reaction 204:10.1002/9781118617106 73:FFC Cambridge Process 30:at high temperature. 291:Inorganic reactions 165:ISIJ International 115:Non-ferrous Metals 35:Ellingham diagrams 253: 252: 238:chemical reaction 308: 274: 267: 260: 232: 225: 218: 217: 189: 183: 182: 180: 156: 150: 149: 141: 135: 134: 106: 316: 315: 311: 310: 309: 307: 306: 305: 281: 280: 279: 278: 222: 221: 214: 191: 190: 186: 158: 157: 153: 143: 142: 138: 108: 107: 103: 98: 81: 17: 12: 11: 5: 314: 312: 304: 303: 298: 293: 283: 282: 277: 276: 269: 262: 254: 251: 250: 233: 220: 219: 212: 184: 151: 136: 100: 99: 97: 94: 93: 92: 87: 80: 77: 28:reducing agent 15: 13: 10: 9: 6: 4: 3: 2: 313: 302: 299: 297: 294: 292: 289: 288: 286: 275: 270: 268: 263: 261: 256: 255: 249: 247: 243: 240:article is a 239: 234: 231: 227: 215: 213:9781118617106 209: 205: 201: 197: 196: 188: 185: 179: 174: 170: 166: 162: 155: 152: 147: 140: 137: 132: 128: 124: 120: 116: 112: 105: 102: 95: 91: 88: 86: 83: 82: 78: 76: 74: 69: 67: 63: 59: 55: 50: 48: 44: 40: 37:, though the 36: 31: 29: 26:metal as the 25: 21: 246:expanding it 235: 194: 187: 171:(1): 25–31. 168: 164: 154: 139: 114: 104: 70: 51: 32: 19: 18: 64:from oxide 39:lanthanides 296:Metallurgy 285:Categories 96:References 131:2072-0807 117:: 31–50. 58:zirconium 43:lanthanum 79:See also 47:chloride 62:thorium 54:uranium 24:calcium 210:  129:  60:, and 236:This 242:stub 208:ISBN 127:ISSN 66:ores 200:doi 173:doi 119:doi 287:: 206:. 198:. 169:47 167:. 163:. 125:. 113:. 75:. 68:. 56:, 273:e 266:t 259:v 248:. 216:. 202:: 181:. 175:: 133:. 121::

Index

calcium
reducing agent
Ellingham diagrams
lanthanides
lanthanum
chloride
uranium
zirconium
thorium
ores
FFC Cambridge Process
Aluminothermic reaction
Silicothermic reaction
"Calciothermic powders of rare metals and intermetallic compounds"
doi
10.17580/nfm.2020.02.05
ISSN
2072-0807
Uranium Dioxide Conversion
"Calciothermic Reduction of Zirconium Oxide in Molten CaCl2"
doi
10.2355/isijinternational.47.25
Extractive Metallurgy 3
doi
10.1002/9781118617106
ISBN
9781118617106
Stub icon
chemical reaction
stub

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