Mostrando 801 - 820 Resultados de 4,286 Para Buscar '"In Flames"', tiempo de consulta: 0.29s Limitar resultados
  1. 801
    “…FLAME CURTAIN BIOCHAR KILNS: Pyrolysis of organic waste or woody materials yields charcoal, a stable carbonaceous product that can be used for cooking or mixed into soil, in the latter case often termed "biochar". …”
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  2. 802
    “…As explained by kinetic and thermodynamic calculations, the selective synthesis of high-purity Mo(17)O(47) nanowires is achieved due to low oxygen partial pressure in the flame products as a result of the high ratio of fuel to oxidizer supplied to the flame, which enables the correct ratio of MoO(2) and MoO(3) vapor concentrations for the growth of Mo(17)O(47). …”
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  3. 803
    “…Here we present the successful hydrophobic modification of the flame retardant melamine sponge with a commercial fluorosilicone, by using a facile one-step solvent-free approach and demonstrate that the resultant superhydrophobic sponge not only exhibits extraordinary absorption efficiency (including high capacity, superior selectivity, good recyclability, and simple recycling routes), but also retains excellent flame retardancy and robust stability. …”
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  4. 804
    “…Aqueous miscible organic layered double hydroxides (AMO-LDHs) can act as organophilic inorganic flame retardant nanofillers for unmodified non-polar polymers. …”
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  5. 805
    “…We have fabricated a novel “smart” nonwoven electrospun separator with thermal-triggered flame-retardant properties for lithium-ion batteries. …”
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  6. 806
  7. 807
  8. 808
    “…A novel hybrid flame retardant combining graphene oxide (GO) with long-chain phosphaphenanthrene was fabricated via surface grafting reaction. …”
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  9. 809
    “…Flame-retardant polyvinyl alcohol (PVA) membranes with high transparency and flexibility were prepared by mixing an aqueous solution of a phosphorus-containing acrylic acid (AOPA) with PVA. …”
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  10. 810
  11. 811
  12. 812
    “…Owing to the excellent flame retardancy of kaolin particles, the LC coated with PDMS@STA-KL displayed a good flame retardancy during limiting oxygen index and cone calorimeter tests. …”
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  13. 813
  14. 814
    “…Results show that the C(60)-PEI-rGO hybrid exhibits high flame retarding efficiency for EP. Specifically, the time to ignition of epoxy increases from 68 to 89 s with the addition of 1.0 wt% C(60)-PEI-rGO, which are unusual in polymer nanocomposites. …”
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  15. 815
    “…The aim of this work is to prepare flame-retardant biobased poly(lactic acid) materials through incorporating a novel flame retardant dihydroxy-containing ammonium phosphate (DAP) derived from 2-chloro-5,5-dimethyl-1,3,2-dioxaphosphinane-2-oxide (DOP) and 2-amino-2-methyl-1,3-propanediol (AMPD). …”
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  16. 816
    “…The flame retardant modification of epoxy (EP) is of great signification for aerospace, automotive, marine, and energy industries. …”
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  17. 817
    “…The proportion of the flame-retardant mode in the physical barrier, flame inhibition, and char effects were recorded as 44.53%, 19.04%, and 9.04%, respectively.…”
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  18. 818
  19. 819
  20. 820
    “…The tensile strength could increase up to 90%, and the modified flame retardant was found to have higher UL-94 grade with the same dosage of flame-retardant additives. …”
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