Showing 241 - 260 results of 400 for search '(( 13 c decrease ) OR ( 10 ((steel decrease) OR (((nn decrease) OR (mean decrease)))) ))*', query time: 0.15s Refine Results
  1. 241
  2. 242
  3. 243
  4. 244
  5. 245
  6. 246
  7. 247
  8. 248
  9. 249
  10. 250
  11. 251
  12. 252

    Thermally assisted efficient electrochemical lithium extraction from simulated seawater by Yanxi, Yu

    Published 2022
    “…A higher temperature (i.e., 60 oC) mitigates the activation polarization of lithium intercalation, decreases charge transfer resistances, and improves lithium diffusion. …”
    Get full text
    Get full text
    Get full text
  13. 253

    Temperature sensor based on composite film of vanadium complex (VO2(3-fl)) and CNT by Karimov, Kh S.

    Published 2015
    “…DC and AC (100 Hz) resistances of the temperature sensor decreased quasilinearly with increasing the temperature in the range of 25-80 °C. …”
    Get full text
    Get full text
    Get full text
  14. 254
  15. 255
  16. 256

    Prediction of biogas production from chemically treated co-digested agricultural waste using artificial neural network by Almomani F.

    Published 2020
    “…The results demonstrated that co-digestion of ASWs with CM with a ratio of 70% to 30% produced the highest CMP of 334 ± 4 NL/kgVS in comparison with 230 ± 10 NL/kgVS for mono-digested substrate. The CMP was the highest for the substrate with moisture content (%MC) in the range of 34% to 48%, and it decreased for %MC > 50%. …”
    Get full text
    Get full text
  17. 257
  18. 258
  19. 259

    Deoxygenation of pyrolysis vapour derived from durian shell using catalysts prepared from industrial wastes rich in Ca, Fe, Si and Al by Tan, Y.L.

    Published 2020
    “…The presence of AS-OPA and AS-EAF catalysts enhanced deoxygenation degree of bio-oil to 81.13% and 85.49%, respectively. The catalytic performance of AS-EAF at different temperatures (400–600 °C) and AS-EAF/durian shell ratios (1:30, 2:30, 3:30) was investigated. …”
    Get full text
    Get full text
  20. 260