good stability Methyl Oleate-Jingu Plasticizer Venezuela

  • good stability Methyl Oleate-Jingu Plasticizer Venezuela
  • good stability Methyl Oleate-Jingu Plasticizer Venezuela
  • good stability Methyl Oleate-Jingu Plasticizer Venezuela
  • What are Hebei Jingu products?
  • Hebei Jingu products include biodiesel (fatty acid methyl ester), oleic acid methyl ester, plasticizer (epoxy fatty acid methyl ester), base oil, lubricating oil and several other major series.
  • How many tons of lubricating oil does Hebei Jingu produce?
  • Hebei Jingu Renewable Resources Development Co., Ltd. has multiple production lines with an annual output of 150000 tons of base oil, 50000 tons of lubricating oil, 200000 tons of fatty acid methyl ester (biodiesel), and 100000 tons of oleic acid methyl ester.
  • Who is Hebei Jingu?
  • Hebei Jingu was founded in 1987, is consisted of Hebei Jingu Plasticizer Co., LTD., and Hebei Jingu Recycling Resources Development Co., LTD. Hebei Jingu is one of the larger grease and chemical enterprises in China.
  • Can methyl oleate plasticizers be epoxidized?
  • In summary, we have demonstrated an efficient, corrosion-free and clean catalytic route for the preparation of the epoxidized methyl oleate plasticizers via the epoxidation of methyl oleate. Firstly, a series of Mo/TS-1-bs catalysts were synthesized through the outer surface of TS-1-s supported different Mo-loading.
  • How stable is the epoxidation of jatropha oil?
  • Rios et al. used acid resin catalysts with high crosslinking and low external surface area to achieve stability in catalyzing the epoxidation of Jatropha oil, and the conversion rate and epoxy selectivity were maintained at 90% and 70%, respectively .
  • What are the steric limitations of methyl olefin?
  • However, compared with a small molecular olefin, the large-sized unsaturated FAMEs (such as methyl oleate (MO), molecular size of 0.63 × 2.16 nm) have significant steric hindrance and diffusion limitations in the catalytic process, which are unable to diffuse into the microporous pore (about 0.5 nm) channels of the TS-1 catalysts .

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