Knowledge (XXG)

Electrohydrogenesis

Source 📝

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Shaoan Cheng; Defeng Xing; Douglas F. Call; Bruce E. Logan (March 26, 2009). "Direct Biological Conversion of Electrical Current into Methane by Electromethanogenesis".
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of electricity is used, the original article reports an overall energy efficiency of 288% can be achieved (this is computed relative to the amount of electricity used,
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lowers the overall efficiency). This work was reported by Cheng and Logan.
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to contain the organic matter and water. A small amount, 0.2–0.8
39: 321: 96:"Hydrogen production through biocatalyzed electrolysis" 192:Proceedings of the National Academy of Sciences 26:is the name given to a process for generating 341: 8: 61:Electrochemical reduction of carbon dioxide 34:by bacteria. This process uses a modified 348: 334: 221: 211: 155: 145: 87: 16:Generating hydrogen from organic matter 120:Cheng, S; Logan, BE (November 2007). 7: 302: 300: 320:. You can help Knowledge (XXG) by 14: 304: 71:Fermentative hydrogen production 30:gas from organic matter being 1: 126:Proc. Natl. Acad. Sci. U.S.A 398: 299: 372:Environmental engineering 292:Biocatalyzed electrolysis 24:biocatalyzed electrolysis 213:10.1073/pnas.0706379104 147:10.1073/pnas.0706379104 247:Environ. Sci. Technol 66:Electromethanogenesis 367:Hydrogen production 259:2009EnST...43.3953C 204:2007PNAS..10418871C 198:(47): 18871–18873. 138:2007PNAS..10418871C 76:Microbial fuel cell 20:Electrohydrogenesis 329: 328: 267:10.1021/es803531g 389: 350: 343: 336: 308: 301: 279: 278: 242: 236: 235: 225: 215: 176: 170: 169: 159: 149: 117: 111: 110: 108: 107: 98:. Archived from 92: 397: 396: 392: 391: 390: 388: 387: 386: 357: 356: 355: 354: 297: 288: 283: 282: 244: 243: 239: 184:Logan, Bruce E. 178: 177: 173: 132:(47): 18871–3. 119: 118: 114: 105: 103: 94: 93: 89: 84: 52: 17: 12: 11: 5: 395: 393: 385: 384: 379: 374: 369: 359: 358: 353: 352: 345: 338: 330: 327: 326: 309: 295: 294: 287: 286:External links 284: 281: 280: 253:(10): 3953–8. 237: 186:(2007-11-20). 171: 112: 86: 85: 83: 80: 79: 78: 73: 68: 63: 58: 51: 48: 15: 13: 10: 9: 6: 4: 3: 2: 394: 383: 382:Biology stubs 380: 378: 377:Biotechnology 375: 373: 370: 368: 365: 364: 362: 351: 346: 344: 339: 337: 332: 331: 325: 323: 319: 316:article is a 315: 310: 307: 303: 298: 293: 290: 289: 285: 276: 272: 268: 264: 260: 256: 252: 248: 241: 238: 233: 229: 224: 219: 214: 209: 205: 201: 197: 193: 189: 185: 181: 180:Cheng, Shaoan 175: 172: 167: 163: 158: 153: 148: 143: 139: 135: 131: 127: 123: 116: 113: 102:on 2016-12-21 101: 97: 91: 88: 81: 77: 74: 72: 69: 67: 64: 62: 59: 57: 54: 53: 49: 47: 45: 41: 37: 33: 29: 25: 21: 322:expanding it 311: 296: 250: 246: 240: 195: 191: 174: 129: 125: 115: 104:. Retrieved 100:the original 90: 23: 19: 18: 56:Biohydrogen 361:Categories 106:2008-08-31 82:References 44:waste heat 32:decomposed 36:fuel cell 275:19544913 232:18000052 166:18000052 50:See also 28:hydrogen 314:biology 255:Bibcode 223:2141869 200:Bibcode 157:2141869 134:Bibcode 273:  230:  220:  164:  154:  312:This 318:stub 271:PMID 228:PMID 162:PMID 263:doi 218:PMC 208:doi 196:104 152:PMC 142:doi 130:104 22:or 363:: 269:. 261:. 251:43 249:. 226:. 216:. 206:. 194:. 190:. 182:; 160:. 150:. 140:. 128:. 124:. 349:e 342:t 335:v 324:. 277:. 265:: 257:: 234:. 210:: 202:: 168:. 144:: 136:: 109:. 40:V

Index

hydrogen
decomposed
fuel cell
V
waste heat
Biohydrogen
Electrochemical reduction of carbon dioxide
Electromethanogenesis
Fermentative hydrogen production
Microbial fuel cell
"Hydrogen production through biocatalyzed electrolysis"
the original
"Sustainable and efficient biohydrogen production via electrohydrogenesis"
Bibcode
2007PNAS..10418871C
doi
10.1073/pnas.0706379104
PMC
2141869
PMID
18000052
Cheng, Shaoan
Logan, Bruce E.
"Sustainable and efficient biohydrogen production via electrohydrogenesis"
Bibcode
2007PNAS..10418871C
doi
10.1073/pnas.0706379104
PMC
2141869

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