A S Harrison & Co offers a wide range of lubricant additive packages designed to enhance engine performance by improving the properties of base oils. These additive packages are essential for various applications, from small engines to heavy-duty machinery, ensuring optimal lubrication and protection.
Engine oil lubricates all major engine parts, including the crankcase, sump, or oil pan of an internal combustion engine. A S Harrison & Co’s additive packages typically contain detergents, dispersants, anti-acids, and friction modifiers to enhance base oil properties.
Detergents and Dispersants: Detergents eliminate sludge contaminants, keeping metal surfaces clean. When combined with dispersants, they prevent the agglomeration of particle impurities, ensuring a smooth and efficient engine operation.
Anti-Acids: The presence of anti-acids in the additive packages minimizes the likelihood of corrosion and damage within the engine, prolonging the life of the engine components.
Friction Modifiers: These additives allow the oil to withstand high-pressure conditions, reducing friction and wear on engine parts, thus improving overall performance and efficiency.
Extreme Pressure (EP) Additives: EP additives prevent metal surfaces from seizing under extreme pressure conditions, ensuring reliable operation even in the most demanding environments.
By incorporating A S Harrison & Co’s lubricant additive packages, engine performance is significantly enhanced, ensuring optimal lubrication, protection, and efficiency across various applications.
Product and customer insights
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CHALLENGE A municipal water reuse plant processing 8 million gallons per day (MGD) experienced severe fouling and scaling issues, including calcium phosphate and silica deposits. With steep feed pressure increases and differential pressures in both stages, the plant required frequent cleanings every 4 to 6 weeks, amounting to 32 cleanings annually. Each cleaning cycle resulted […]
The plant was experiencing weekly shutdowns for fiber clean up (~ 3 kg bags of matted slurry is cleaned per week). The shut downs were costly as they reduce plant availability for production.
CHALLENGE A municipal reverse osmosis (RO) plant on Florida’s west coast, with a 20 MGD capacity, faced high operational costs due to its reliance on 93% sulfuric acid for pH adjustment. The plant used a combination of a brackish water reverse osmosis (BWRO) membranes and fiberglass-wrapped membranes across 10 trains, each operating at 75% recovery. […]
CHALLENGE A gold processing plant in New Zealand sought to improve gold recovery efficiency while addressing high Total Organic Carbon (TOC) levels. Elevated TOC increased the Preg-Robbing Factor (PRF), reducing the plant’s ability to efficiently recover gold during the Carbon-In-Leach (CIL) process. The traditional use of kerosene as a carbon blanking agent offered limited efficacy, […]
CHALLENGE A municipal reverse osmosis (RO) plant, with a capacity of 2 million gallons per day (MGD), faced frequent system cleanings, every 2-4 months, due to rising feed pressure. The plant, which sources water from brackish wells and uses Toray TMG-20D-400 membranes in a (16×7) -> (8×7) train configuration, was operating at 78% recovery. Despite […]
Research indicates that Sea Buckthorn may be able to strengthen the immune system. One in vitro study focused on the possible immunomodulatory properties of Sea Buckthorn.
AWC A-110 effectively inhibited scale at a dosage of 3.5 ppm and an operating pH of 6.9. This increase in operating pH reduced the district’s annual acid consumption by ~$350K per year based on their current production.
MCI® -2020 V/O and ChemMaster’s Colorsil were chosen to repair and protect the walls based on their 20 year warranties and the fact that together they could fulfill the other specified repair design requirements.
Despite numerous cleanings, the productivity of the Reverse Osmosis plant would not recover from severe membrane fouling. The membrane autopsy revealed that the ferric hydroxide was seeding
silica polymerization and that even while the ferric hydroxide was removed, the silica scaling was continuing to grow.
The East Hokkaido region is known to have the highest volume of potato product in Japan. Unfortunately, a potato farmer in the area was experiencing a high rate of potato scab infection in his agricultural field.
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