Keywords: تری متیل پروپان; Sesame; Biolubricant; Transesterification; Trimethylolpropane; Response surface methodology;
مقالات ISI تری متیل پروپان (ترجمه نشده)
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در صورتی که به ترجمه آماده هر یک از مقالات زیر نیاز داشته باشید، می توانید سفارش دهید تا مترجمان با تجربه این مجموعه در اسرع وقت آن را برای شما ترجمه نمایند.
Keywords: تری متیل پروپان; Bio-lubricants; Waste fish oil; Transesterification; Trimethylolpropane;
Keywords: تری متیل پروپان; AA; adipic acid; AcA; acrylic acid; AIBN; α,αâ²-azoisobutyronitrile; AM; additive manufacturing; BM; 4,4-bismaleimidodiphenylmethane; BMP; butyl-3-mercapto propionate; BPO; benzoyl peroxide; BOD; biochemical oxygen demand; CA; Candida Antarctica; CAD;
Keywords: تری متیل پروپان; Epoxy; Cardanol; Resorcinol; hBADGE; Trimethylolpropane; Coatings;
Keywords: تری متیل پروپان; AFM; Atomic Force Microscopy; CEC; Coordinating European Council; CoF; coefficient of friction; cST; centistokes; HFRR; high frequency reciprocating rig; NPG; neopentyl glycol; OBM; oil-based mud; PAG; polyalkylene glycols; PAO; polyalphaolefin; PE; penta
Keywords: تری متیل پروپان; Biolubricant; Transesterification; Waste cooking oil; Trimethylolpropane triester; Oxidation stability; BHA; butylated hydroxyanisole; DTBHQ; 2,5-di-tertbutyl-hydroquinone; FAME; fatty acid methyl esters; FFA; fatty acids; IP; induction period; MD; molecu
Keywords: تری متیل پروپان; Biolubricant; Transesterification; Trimethylolpropane; Tribological property;
Improved production of biolubricants from soybean oil and different polyols via esterification reaction catalyzed by immobilized lipase from Candida rugosa
Keywords: تری متیل پروپان; Biolubricant; Neopentyl glycol; Trimethylolpropane; Pentaerythritol; Lipase from Candida rugosa; Lipase immobilization;
Enhanced selective oxidation of trimethylolpropane to 2,2-bis(hydroxymethyl)butyric acid using Corynebacterium sp. ATCC 21245
Keywords: تری متیل پروپان; Selective oxidation; Trimethylolpropane; Corynebacterium sp.; Sequential batch fermentation; Cell recycling; Cell bleeding; 2,2-Bis(hydroxymethyl)butyric acid;
Synthesis and characterization of poly(ethylene glycol) (PEG) based hyperbranched polyurethanes as thermal energy storage materials
Keywords: تری متیل پروپان; Hyperbranched polyurethane; Poly(ethylene glycol); Trimethylolpropane; Phase change material; Thermal energy storage;
Selective oxidation of trimethylolpropane to 2,2-bis(hydroxymethyl)butyric acid using growing cells of Corynebacterium sp. ATCC 21245
Keywords: تری متیل پروپان; Selective oxidation; Corynebacterium sp.; Trimethylolpropane; 2,2-Bis(hydroxymethyl)butyric acid; Whole cell biotransformation; Product recovery
Degradable polyurethane based on star-shaped polyester polyols (trimethylolpropane and É-caprolactone) for marine antifouling
Keywords: تری متیل پروپان; Star-shaped polyester polyols; Trimethylolpropane; Pentaerythritol; É-Caprolactone; Degradable polyurethane; Marine antifouling;
Synthesis of palm based biolubricant in an oscillatory flow reactor (OFR)
Keywords: تری متیل پروپان; Palm methyl ester; Palm biolubricant; Trimethylolpropane; Transesterification; Oscillatory flow reactor (OFR)
10-Undecenoic acid-based polyol esters as potential lubricant base stocks
Keywords: تری متیل پروپان; Biolubricant; Polyol esters; Neopentylglycol; Trimethylolpropane; Pentaerythritol; Undecenoic acid
Kinetic study of jatropha biolubricant from transesterification of jatropha curcas oil with trimethylolpropane: Effects of temperature
Keywords: تری متیل پروپان; Jatropha; Biolubricant; Transesterification; Jatropha methyl ester; Trimethylolpropane
Heteropolyacid salts as self-separation and recyclable catalysts for transesterification of trimethylolpropane
Keywords: تری متیل پروپان; Heteropolyacid salts; Trimethylolpropane; Transesterification; Self-separation; Catalyst;
Clean synthesis of biolubricants for low temperature applications using heterogeneous catalysts
Keywords: تری متیل پروپان; Biolubricant; Trimethylolpropane; Esterification; Solid acid catalyst; Immobilised lipase