Diesel EN590 10 PPM is a type of diesel fuel that meets the European standard EN590 for automotive diesel oil The 10 PPM designation refers to the maximum allowable sulfur content in the fuel which is 10 parts per million ppm or less Here are some of the specifications for Diesel EN590 10 PPM Density at 15 C 820845 kgm Flash point minimum 55 C Cetane number minimum 51 Sulfur content maximum 10 ppm Distillation range 90 distilled at 360370 C Cold filter plugging point maximum 5 C Appearance Clear and bright free from visible sediment and water Diesel EN590 10 PPM is primarily used as a fuel for diesel engines in automobiles trucks buses and other vehicles It is designed to meet the stringent emissions standards in Europe and other regions which require lower levels of sulfur and other pollutants in diesel fuel The use of lowsulfur diesel fuels like EN590 10 PPM can help to reduce air pollution and improve air quality as well as reduce the emissions of greenhouse gases
Sulphur is a bright yellow naturally occurring element with the symbol S and atomic number 16 Its a versatile and essential material used in various industrial applications due to its reactive and unique properties Primary Characteristics Appearance Bright yellow crystalline solid in its elemental form Odor Typically odorless but when burned it produces a characteristic rotten egg smell due to the formation of sulphur dioxide Solubility Insoluble in water but soluble in carbon disulphide and other nonpolar solvents Melting Point 11521C 23938F Forms Grades Sulphur can be found in various forms and grades including Elemental Sulphur Typically extracted from natural gas and oil Agricultural Sulphur Finegrade sulphur used in agriculture to adjust soil pH Pharmaceutical Grade Ultrapure sulphur for medical applications Applications Chemical Industry Key ingredient in the manufacture of sulphuric acid the most widely produced industrial chemical Agriculture Used as a soil conditioner and as a component in certain fertilizers Pharmaceuticals An ingredient in some skin treatments particularly for conditions like acne and dandruff Rubber Industry Used in vulcanization a process that hardens rubber Pulp Paper Industry Used in the Kraft process to break down wood components Advantages Essential for Life An important element for all living cells playing a crucial role in the functionality of vitamins enzymes and amino acids Industrial Utility Forms the backbone of numerous chemical reactions and processes Environmental Role Used in flue gas desulphurization to reduce sulphur emissions from power plants Note When procuring or using sulphur its essential to specify the desired grade or form to ensure suitability for the intended application
Light Cycle Oil (LCO) is a secondary liquid product derived from the fluid catalytic cracking (FCC) process in refineries. This process breaks down larger hydrocarbon molecules from heavy gas oils into smaller, more valuable products like gasoline and diesel. LCO typically sits between diesel and heavy gas oil in terms of boiling range and weight. Primary Characteristics: Appearance: Typically amber to dark brown liquid. Odor: Characteristic petroleum smell. Density: Intermediate, falling between lighter distillates and heavier oils. Sulfur Content: Can vary based on the feedstock and refining process, but often higher than diesel and gasoline. Applications: Blending Component: Frequently blended into diesel fuel to enhance volume, though this requires treating to meet emissions standards. Feedstock: Used in hydrocracking and other refining processes to produce more valuable products, such as gasoline or diesel. Industrial Burning: Some industries utilize LCO as a combustion fuel, though this is less common due to its higher sulfur content and potential emissions. Advantages: Versatility: Can be further processed or blended to meet various fuel product needs. Economic Value: Provides an additional stream of revenue from the FCC process, maximizing the yield of a refinery. Feedstock Potential: Offers refineries another option for producing lighter, more desirable products.
Gross Calorific Value (GCV) KWh/Nm3 11.131-12.647 LNG Density Kg/m3 430-478 Molecular Weight Kg/Kmol 16.52 - 18.88 Methane % mol 85.0 min 97.0 max LNG stands for Liquefied Natural Gas, which is natural gas that has been cooled to a very low temperature (-162°C or -260°F) and condensed into a liquid state. The process of liquefaction reduces the volume of natural gas by around 600 times, making it easier and more cost-effective to transport and store, particularly over long distances. LNG is odorless, colorless, and non-toxic. It is typically transported in specialized cryogenic tanker ships, and upon reaching its destination, it can be regasified back into its gaseous state for distribution through pipelines to consumers. LNG is used for a variety of purposes, including heating and electricity generation in residential, commercial, and industrial settings, as well as fuel for transportation, particularly in heavy-duty vehicles like trucks, ships, and buses.
Propane: 85% min. by liquid volume Propylene: 5% max. by liquid volume Butane & heavier HC: 2.5% max. by liquid volume Sulfur: 120 ppm max. by weight LPG stands for liquefied petroleum gas, also known as propane or butane. It is a flammable hydrocarbon gas that is commonly used as fuel for heating and cooking in homes, as well as for industrial applications, transportation, and agriculture. LPG is a byproduct of crude oil refining and natural gas processing. It is a mixture of propane and butane gases, which are liquefied through pressurization and cooling. LPG is stored and transported in pressurized tanks and cylinders as a liquid, but when released into the atmosphere, it vaporizes into a gas. LPG is a versatile fuel that has many advantages over other fossil fuels. It is clean-burning and produces fewer emissions than gasoline or diesel, making it a more environmentally friendly fuel option. It is also highly efficient, as it has a high energy content per unit volume, and can be easily transported and stored in liquid form. LPG is widely used around the world, particularly in areas where natural gas pipelines are not available or where electricity is unreliable or expensive. It is commonly used in households for cooking and heating, and in vehicles as an alternative fuel to gasoline or diesel. LPG is also used in industrial applications such as manufacturing, agriculture, and chemical processing.
Gasoil, often referred to as diesel oil or simply diesel, is a middle distillate derived from the crude oil refining process. It possesses properties between those of lighter fuels like gasoline and heavier fuels like lubricating oil. Gasoil is used as both a fuel and a processing element in various industries. Primary Characteristics: Appearance: Clear to slightly hazy, ranging in color from light straw to amber. Odor: Characteristic petroleum smell. Density: Varies based on specific grade and blend but generally denser than gasoline. Cetane Number: Indicator of the combustion speed of diesel fuel and compression needed for ignition. Specifications: Gasoilâ??s quality and classification often adhere to standards set by organizations such as ASTM (American Society for Testing and Materials) or equivalent regional standards. Variations include Ultra-Low Sulfur Diesel (ULSD), Low Sulfur Diesel, and others. Applications: Automotive: Fuel for diesel-engine vehicles, such as trucks, buses, and cars. Industrial: Used in various industrial machines and engines, including generators. Marine: Fuel for certain types of marine vessels. Heating: Used in some regions as heating oil for homes and businesses. Power Generation: Fuel for diesel-powered electricity generators. Advantages: Energy Dense: Provides more energy per gallon compared to gasoline, leading to longer fuel economy in diesel engines. Efficient: Diesel engines often convert fuel to energy more efficiently than their gasoline counterparts. Reliable: Known for its durability and reliability in heavy-duty applications.
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