AMS
Alpha-methylstyrene (AMS) is a co-product of phenol production from cumene, obtained by alkylation of benzene with propylene. It is then separated from the rest of the products by means of fractionation.
AMSOur chemicals, present worldwide, are used in sectors such as pharmacy, automotive, IT, home care, and cosmetics. With our more sustainable line, we produce LAB, phenol, and other products with a lower environmental impact, thanks to the use of raw materials and renewable energy and an innovative process.
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Alpha-methylstyrene (AMS) is a co-product of phenol production from cumene, obtained by alkylation of benzene with propylene. It is then separated from the rest of the products by means of fractionation.
AMSAlpha-methylstyrene that incorporates certified secondary raw materials from biomass waste, while maintaining the same technical specifications as its fossil counterpart.
AMS-BCAlpha-methylstyrene that incorporates certified secondary raw materials from industrial waste, generally plastics, and maintains the same technical specifications as its fossil counterpart.
AMS-CAlpha-methylstyrene produced from fossil raw materials, but through renewable energy. Certified to guarantee the sustainable traceability of its production. Its main application is ABS manufacturing, a high-impact resistance thermoplastic, widely used in multiple sectors.
AMS-Low CarbonAlpha-methylstyrene that incorporates certified renewable raw materials and maintains the same specifications as its fossil counterpart.
AMS-RAcetone is a colorless, volatile and flammable compound, miscible in water. Thanks to its high solvent power and rapid evaporation, it is used to dissolve oils, resins, gums, waxes, and in the extraction and purification of organic compounds.
AcetoneIt is the co-product resulting from the production of phenol via cumene. This acetone grade complies with the standards of the current European Pharmacopoeia.
Acetone PharmaAcetone that incorporates certified secondary raw materials from biomass waste, while maintaining the same technical specifications as its fossil counterpart.
Acetone- BCAcetone that incorporates certified secondary raw materials from industrial waste, generally plastics, and maintains the same technical specifications as its fossil counterpart.
Acetone-CAcetone produced from fossil raw materials, but with renewable energy. This product has a certificate that guarantees the traceability of production through the use of sustainable energy.
Acetone-Low CarbonAcetone made with certified renewable raw materials, which maintains the same technical specifications as its fossil equivalent. Its production is ISCC Plus certified, ensuring sustainability through the mass balance methodology.
Acetone-RAnionic surfactants obtained through a sulfonation process of ethoxylated lauryl alcohol, carried out under a continuous mixture of air and SO₃ in state-of-the-art reactors, which ensures the highest quality of the product.
Anionic surfactants obtained through a process of sulfation of dairy alcohol. This process, carried out in state-of-the-art reactors with continuous mixing of air and SO₃, guarantees the highest quality of the final product.
Cumene, or isopropylene, is an aromatic hydrocarbon obtained by alkylation of benzene with propylene. Its main use is the production of cumene hydroperoxide, intermediate to synthesize phenol and acetone. It is also used in surfactants, propylene oxide, and as an additive in gasolines.
CumeneCumene that incorporates certified secondary raw materials from biomass waste, while maintaining the same technical specifications as its fossil counterpart.
Cumene-BCCumene that incorporates certified secondary raw materials from industrial waste, generally plastics, and maintains the same technical specifications as its fossil counterpart.
Cumene-CProduced using fossil raw materials, with renewable energy and with certified certification that guarantees its traceability. Its main use is to transform into cumene hydroperoxide, a key intermediate for obtaining phenol and acetone.
Cumene-Low CarbonCumene that incorporates certified renewable raw materials and maintains the same technical specifications as its fossil counterpart.
Cumene-RAromatic oil, composed mainly of dialkylbenzenes. This product is obtained in the production process of linear alkylbenzene (LAB). It is used as a lubricant, thermal oil, dielectric fluid, additive for diesel, solvent, and for treatments for metal or plastic surfaces.
Detalp 360Linear alkylbenzene (LAB) C10-C13 with less than 20% of 2-phenyl isomers, produced by allocating benzene with olefins using HF technology.
DetenLAB 240Linear alkylbenzene sulfonic acid (LABSA) C10-C13 with low 2-phenyl isomer content (max. 21%). Its raw material, DetenLAB 240, is produced using HF technology.
DetenLAS 320They are obtained through an advanced process of ethoxylation of fatty alcohols, incorporating different ethylene oxide units (EO) to an aliphatic chain.
Waxy substances, generally with a high molecular weight, derived from natural fats and organic oils. Our alcohols are made from oil from palm kernels from certified sustainable production.
Glycerin is a viscous, colorless, odorless, and non-toxic liquid, widely used in the food industry as a sweetener and in pharmaceutical formulations. As a polyol (it contains three hydrogen groups) it has good water solubility.
Isopropyl alcohol (IPA) is a versatile solvent that evaporates quickly without leaving residues. It is ideal for applications that require dilution and transportation of substances, and for use as an intermediate when manufacturing ingredients for cosmetics and pharmaceutical products.
IPA (Isopropyl alcohol)IPA-BC is isopropyl alcohol that incorporates certified bio-circular raw materials, while maintaining the same technical specifications as traditional IPA.
IPA-BCIPA-C is isopropyl alcohol that incorporates certified secondary raw materials produced from industrial wastes, while maintaining the same technical specifications as traditional IPA.
IPA-CIPA-Low Carbon is isopropyl alcohol produced using certified renewable energy, while maintaining the same technical specifications as traditional IPA.
IPA-Low CarbonIPA-R is isopropyl alcohol that incorporates certified renewable raw materials, while maintaining the same technical specifications as traditional IPA.
IPA-RMolten sulfur with a purity of more than 99.5%. It can be used in the industry in different production processes: vulcanization of rubber, SO₃, sulfuric acid and some of its salts, fertilizer, animal feed, etc. It is loaded directly into tankers at the refineries.
Liquid sulfurDearomatized solvent that incorporates certified bio-circular raw materials. Available in four options (40, 60, 80 and 100), offers the same specifications and the same performance as traditional equivalents.
NextIsol D-BCDearomatized solvent that incorporates certified circular raw materials. Available in four options (40, 60, 80, and 100), offers the same specifications and the same performance as traditional equivalents.
NextIsol D-CDearomatized solvent produced with certified renewable energy. Available in four options (40, 60, 80, and 100), with the same specifications and the same performance as the traditional equivalents and a reduced carbon footprint.
NextIsol D-Low CarbonDearomatized solvent that incorporates certified renewable raw materials. Available in four options (40, 60, 80, and 100), offers the same specifications and the same performance as traditional equivalents.
NextIsol D-RLinear alkylbenzene (LAB) produced using energy from renewable sources. It maintains the same technical specifications as its fossil counterpart PetreLAB 500.
NextLab-Low Carbon 500-HLinear alkylbenzene (LAB) produced using renewable energy. Retains the same technical specifications as its fossil counterpart PetreLAB 550-Q.
NextLab-Low Carbon 550-HLinear alkylbenzene (LAB) produced using energy from renewable sources. It maintains the same technical specifications as its fossil counterpart PetreLAB 550.
NextLab-Low Carbon 550-LLinear alkylbenzene (LAB) that incorporates certified renewable raw materials, maintaining the same technical specifications as its fossil counterpart PetreLAB 550-Q.
NextLab-R 550-HLinear alkylbenzene (LAB) that incorporates certified renewable raw materials. It maintains the same technical specifications as its fossil counterpart PetreLAB 550.
NextLab-R 550-LLinear alkylbenzene (LAB) produced with renewable energy incorporates certified renewable raw materials. It maintains the PetreLAB 550-Q specifications and is manufactured using Detal® Flex 2-Phenyl technology.
NextLab-R-Low-Carbon 550-HLinear alkylbenzene (LAB) produced with renewable energy incorporates certified renewable raw materials. It maintains the PetreLAB 550 specifications and is manufactured using Detal® Flex 2-Phenyl technology.
NextLab-R-Low-Carbon 550-LLABSA produced using renewable energy, reducing greenhouse gas emissions. It retains the same specifications as the fossil counterpart, Petresul 550-Q.
NextLabsa-Low Carbon 550-HLinear alkylbenzene sulfonic acid (LABSA) produced using renewable energy, which reduces greenhouse gas emissions. It maintains the same specifications as the fossil counterpart, Petresul 550.
NextLabsa-Low Carbon 550-LLinear alkylbenzene sulfonic acid (LABSA) that incorporates certified renewable raw materials in its production process and maintains the same technical specifications as its fossil counterpart, Petresul 550-Q.
NextLabsa-R 550-HLinear alkylbenzene sulfonic acid (LABSA) that incorporates certified renewable raw materials in its production process and maintains the same technical specifications as its fossil counterpart.
NextLabsa-R 550-LLABSA made using certified renewable raw materials and renewable energy, which reduces greenhouse gas emissions. It maintains the same specifications as the fossil counterpart, Petresul 550-Q.
NextLabsa-R-Low-Carbon 550-HLABSA made using certified renewable raw materials and renewable energy, which reduces greenhouse gas emissions. It maintains the same specifications as the fossil counterpart, Petresul 550.
NextLabsa-R-Low-Carbon 550-LA hydroxybenzene that incorporates certified secondary raw materials from biomass waste, while maintaining the same technical specifications as its fossil counterpart.
NextPhenol-BCA hydroxybenzene that incorporates certified secondary raw materials from industrial waste, generally plastics, and maintains the same specifications as its fossil counterpart.
NextPhenol-CA hydroxybenzene produced from fossil raw materials, using energy from renewable sources as part of our process. It has a certificate that guarantees the traceability of its production through the use of sustainable energies.
NextPhenol-Low CarbonA hydroxybenzene that incorporates certified renewable raw materials and maintains the same specifications as its fossil counterpart.
NextPhenol-RLinear alkylbenzene (LAB) C10-C13 with 27-31% of 2-phenyl isomers and lower molecular weight than PetreLAB 550, produced using Detal® Flex 2-Phenyl technology.
PetreLAB 500-QLinear alkylbenzene (LAB) produced by catalytic alkylation of benzene with olefins. Mixture C10-C13 with 15-21% of 2-phenyl isomers, manufactured with Detal® Flex technology 2-Phenyl.
PetreLAB 550Linear alkylbenzene (LAB) produced by catalytic alkylation of benzene with olefins (C10-C13), with 25-35% of 2-phenyl isomers. Manufactured using Detal® Flex 2-Phenyl technology.
PetreLAB 550-QAromatic oil, composed mainly of dialkylbenzenes. This product is obtained in the production process of linear alkylbenzene (LAB). It is used as a lubricant, thermal oil, dielectric fluid, diesel additive, and solvent. Sulfonated, it also works as a surfactant for oils.
Petrene 900Aromatic oil, composed mainly of dialkylbenzenes. This product is obtained in the production process of linear alkylbenzene (LAB). It is used as a lubricant, thermal oil, dielectric fluid, diesel additive, and solvent. Sulfonated, it also acts as a surfactant for oils.
Petrene 900-QLinear alkane hydrocarbon with various direct applications, for example, as solvents in printing inks, degreasers, herbicides and insecticides. A mixture of normal paraffins with a C14 and C15 carbon distribution.
Petrepar 145Linear alkane hydrocarbon with various direct applications, for example, as solvents in printing inks, degreasers, herbicides and insecticides. Normal paraffin with a C10 content of over 95%.
Petrepar n-C10Linear alkylbenzene sulfonic acid (LABSA) C10-C13 with low 2-phenyl isomer content (15-21%). Its raw material, PetreLAB 550, is produced using Detal® Flex 2-Phenyl technology.
Petresul 550Linear alkylbenzene sulfonic acid with a mixture of C10-C13 equivalents and high 2-phenyl isomer content (25-35%).
Petresul 550-QIt is a kerosene fraction with a typical initial and final distillation range of 150-200°C. It has a limited content in aromatic compounds. Used in solvents, adhesives, paints, varnishes, inks, etc.
Petrosol 15A 15/20Petrosol 20A 19/22 is a fraction of kerosene (190–220 °C) with low aromatic content, suitable for formulations that require balanced solvents.
Petrosol 20A 19/22It is a mixture of aromatic hydrocarbons, mainly C9-C10, with a typical initial and final distillation range of 160-180°C. Due to its excellent properties as a solvent, it is used in adhesives and paints.
Petrosol 95A 16/18It is a mixture of aromatic hydrocarbons — mainly C9-11, the majority being C-10 — with a typical initial and final distillation range of 180-200°C. Due to its excellent properties as a solvent, it is used in adhesives and paints.
Petrosol 95A 18/20It is a mixture of aromatic hydrocarbons — mainly C9-11, the majority being C-10 — with a typical initial and final distillation range of 180-200°C. It has a low naphthalene content. Due to its excellent properties as a solvent, it is used in adhesives and paints.
Petrosol 95A 18/20 NDHigh-purity aromatic solvent used in adhesives and paints mainly due to its average evaporation rate.
Petrosol 95A TolueneAromatic hydrocarbon that is a mixture of xylene isomers in varying proportions. It is used in adhesives and paints, mainly due to its average evaporation rate.
Petrosol 95A XyleneMixture of hydrocarbons composed of n-paraffins, isoparaffins, and naphthenes, with a typical distillation range between 100–120 °C. Stands out for its low content of aromatic compounds.
Petrosol D 100/120A cut of hydrogenated kerosene with a typical distillation range of 150-200ºC. It has a very low content in aromatic compounds and a barely noticeable odor.
Petrosol D 40Mixture of hydrocarbons composed of n-paraffins, isoparaffins, and naphthenes, with a typical distillation range of 60–95 °C. Notable for its low content of aromatic compounds and virtually imperceptible odor.
Petrosol D 60/95Mixture of C7 hydrocarbons —including n-heptane, isoheptanes, and cycloparaffins— with a purity of more than 95%. Characterized as being an effective solvent, with an extremely low content of aromatic compounds and impurities, and a virtually imperceptible smell.
Petrosol D HeptaneMixture of n-hexane and its isomers, recognized for its high volatility and rapid evaporation, excellent extraction capacity, extremely low content of aromatic compounds and impurities, and almost imperceptible odor.
Petrosol D HexaneThis is a mixture of C6 isomers with an n-hexane content of less than 5%. A volatile solvent with rapid evaporation, extremely low content of aromatic compounds and impurities, and a virtually imperceptible odor.
Petrosol D IsohexanePhenol, or hydroxybenzene, is mainly used to produce bisphenol A, key to the manufacture of polycarbonates and epoxy resins. It also plays a role in the production of nylon 6, phenolic resins and is used in insulation, coatings, pharmaceuticals, disinfectants, and food additives.
PhenolPhenol 90% is a dilution of phenol with 10% of water content. In turn, phenol is the result of splitting cumene hydroperoxide with sulfuric acid. Before this, cumene is obtained through an alkylation of benzene with propylene in a solid bed catalyst.
Phenol 90High-purity solid sulfur (99.5% minimum) prills. It can be used in different industrial production processes: vulcanization of rubber, SO₃, sulfuric acid and some of its salts, fertilizer production, animal feed, etc. It is sold in 25 kg bags, 500 kg sacks, and in bulk.
Prill sulfurHigh-purity solid sulfur (99.5% minimum) in the form of cakes or sheets. It can be used in different industrial production processes: vulcanization of rubber, SO₃, sulfuric acid and some of its salts, fertilizer production, animal feed, etc. It is sold in 25 kg bags, 500 kg sacks, and in bulk.
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