Introducing the Orbit Viga! At Franklin Electric, we understand the unique demands across diverse industries. That’s why we’re proud to showcase the Orbit Viga Range, designed for versatile applications and optimal performance. Here’s how the Orbit Viga Range meets the specific challenges of your industry: ?? Mining: From raw material extraction to finishing processes and mine dewatering, our pumps handle it all with ease. (B, D, E, V, Mini, G, HD, PP Ranges) ?? Petrochemical: Ideal for catalyst slurry injection, refinery waste management, and precise dosing. (D, E, Mini, V, G Ranges) ?? Brewing & Distilleries: Optimized for hop extract dosing, product conveyance, and waste treatment. (B, D, E, V, Mini, G Ranges) ?? Sugar Industry: Perfect for transporting viscous masses, lime milk dosing, and solid conveyance. (B, D, E, V, Mini, G Ranges) ?? Pulp & Paper: Whether it's stock preparation, chemical pulp bleaching, or paper finishing, the Orbit Viga is a key component. (B, D, E, V, Mini, G Ranges) ?? Food Processing: Engineered for gentle conveyance of whole parts, viscous by-products, marinades, and more. (B, D, E, V, Mini, G Ranges) ?? Wastewater Treatment: Capable of efficient product conveyance, dosing, and waste treatment. (B, D, E, V, Mini, G Ranges) ?? Industrial Applications: Delivering consistent, high-performance pumping solutions tailored for industrial environments. #MiningSolutions #PetrochemicalIndustry #PumpingSolutions #Brewing #SugarIndustry #FoodProcessing #WastewaterTreatment #Innovation #FranklinElectric #OrbitViga #IndustrialPumps
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?? Elevate Your Manufacturing Processes with Decanter Centrifuge Technology! ???In the ever-evolving landscape of #engineering and #construction machinery, staying ahead means embracing innovation. Discover how the game-changing #decantercentrifuge is revolutionizing the industry with unparalleled efficiency and sustainability. ????As we break down the 'Key Facts About Decanter Centrifuge in Manufacturing and Processing Machinery,' you'll learn why this robust equipment is not just a component but a cornerstone in solid-liquid separation applications. From wastewater treatment to mining operations, decanter centrifuges deliver high capacity performance, precise solid recovery, and continuous operation that drives productivity sky-high. ????Tap into the benefits of this critical machinery that balances cost-effectiveness with environmental stewardship. ???? Dive deeper into the technical prowess and versatile applications of decanter centrifuges, and see how they can transform your processes. Don't miss out on harnessing the power of efficiency for your projects! Read on ?? https://bit.ly/3LDtelx
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The refinery elected to add Fluitec’s DECON to the system during operation to provide immediate temperature relief to the bearing. DECON enhances the solubility of the oil, which does two things: ?? It dissolves varnish throughout the system, and in this case, specifically in the bearings and shaft. ?? It prevents future varnish from forming again. Solubility enhancers are soluble in the oil and can react with already degraded products (deposits or varnish) to make them soluble in the oil. In this way, the degraded products are not allowed to agglomerate into the layers of deposits and remain in the oil as inert, harmless products. After Fluitec’s DECON was added to the system, the compressor saw an immediate decline in temperature from 101°C to 93°C and continued to decline afterward. Currently, this bearing is operating in the temperature range of 63°C. The highest temperature experienced by the system is 73°C, which is significantly below their “safe-zone” temperatures of 89°C. This is an excerpt of the article, "Dissolving Downtime: How Solubility enhancers prevent refinery shutdowns" published in Precision Lubrication Magazine by the team; Greg L., Martin Bonaimé, Ertan Kurt (Toros Filtrasyon Teknolojileri A.S.) & Bülent ?al??kan and MEHMET MURAT G?KTA? from Tüpra?. Read the full article here: https://lnkd.in/dcF4YnKa #fluitec #tupras #varnish #refinery #DECON #casestudy #article
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Whether you're looking for standard options (PL & PH series) or need the extra power of our premium models (XT & XU series), we’ve got you covered. Let us help you with optimization and reliable pumping solutions—proudly assembled in the USA! ???? Check out our latest product brochure, featuring our high-performance pump series! Inside, you'll find: ? Pump solutions for high- and low-pressure applications ? Industries Served: Wastewater Management, Mining, Oil & Gas, Agriculture, and more ? Versatile applications for clean liquids, high-viscosity fluids, and solids-handling See how our pumps are designed to keep your operations running smoothly, no matter the industry: www.phantompumps.com __________________ #PhantomPumps #PumpingSolutions #IndustrialPumps #MunicipalPumps #Efficiency #Engineering #Innovation
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?? Exploring the Versatility of Polyanionic Cellulose (PAC) in Drilling Operations ?? In the ever-evolving world of drilling operations, Polyanionic Cellulose (PAC) stands out as a game-changer! ??? PAC's ability to control fluid viscosity and filtration properties makes it an indispensable additive in drilling mud. Here are some fascinating aspects: ?? Versatility: PAC comes in two main types: ?- PAC LV (Low Viscosity): Ideal for freshwater and low-salinity mud systems. ?- PAC HV (High Viscosity): Perfect for higher salinity environments. ?? Environmental Friendliness: PAC is biodegradable, providing a greener alternative compared to other drilling fluid additives. ?? ?? Efficiency in Drilling: ?- Effectively suspends solids. ?- Prevents fluid loss. ?- Enhances hole cleaning. The unique molecular structure of PAC ensures efficient and smooth drilling operations, making it a crucial component for successful projects. ?? To Know more feel free to reach out on WhatsApp- +971502240108 #Drilling #PAC #PolyanionicCellulose #SustainableDrilling #OilAndGas #EnergySector #EnvironmentalSustainability #Innovation #DrillingFluids
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NovaCell? is a pioneering flotation equipment technology designed to revolutionise the flotation process. Developed by Laureate Professor Graeme Jameson, this breakthrough innovation offers efficient separation and recovery of both coarse and fine particles in a single machine. NovaCell? is not only applicable to a wide range of industries including base metals, precious metals, critical metals, coal and industrial minerals, but also possesses a unique capability to handle ore types with low levels of mineral liberation. Small-scale testing of the NovaCell? is available at Core's laboratory in Brisbane. This scaled-down unit is tailored to evaluate the technology's benefits and provide invaluable insights for plant design. Read more here???? https://lnkd.in/gxnFb6qY Take a look at it in action ???? https://lnkd.in/gXCCC8aT #NovaCell #FlotationTechnology #Flotation #MineralProcessing #CoreResources
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???????????? ?????????? The reflux ratio is a key parameter in distillation that defines the ratio of the liquid returned to the distillation column (reflux) to the liquid product withdrawn (distillate). It is calculated as follows: ???????????? ?????????? (??) = ???????????? ???????? ???????? (??) / ???????????????????? ???????? ???????? (??) Where: is the flow rate of the reflux, which is the liquid that is condensed and sent back to the top of the column. is the flow rate of the distillate, which is the liquid product drawn from the column. ?????????? ???? ?????????????????? ???????????? ??????????: ??. ?????????????? ???? ?????????????????? ???????????? ???????? ???????? (??): The amount of liquid condensed from the vapor phase at the top of the column and returned to the column as liquid reflux. ??. ?????????????? ???? ?????????????????? ???????????????????? ???????? ???????? (??): The amount of liquid product collected as distillate from the top of the column. ??. ?????????????????? ?????? ???????????? ?????????? (??): Simply divide the reflux flow rate by the distillate flow rate to get the reflux ratio. Example: If the reflux flow rate is 150 m3/h and the distillate flow rate is 50 m3/h, the reflux ratio would be: R = 150 / 50 = 3 This means that for every unit of distillate product, 3 units of liquid are returned to the column as reflux. ?????????????????? ????????????????????????????: ???????????? ???????????? ??????????: Improves separation but increases energy consumption as more vaporization and condensation cycles are required. ?????????? ???????????? ??????????: Saves energy but reduces separation efficiency. Optimizing the reflux ratio is crucial for balancing between operational cost and product purity. #OPEC #IEA #BP #Shell #ExxonMobil #Chevron #TotalEnergies #Halliburton #Schlumberger #BakerHughes7 #aramco #jobs #chemicalengineer #abroad #talent #process Visual example :
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Reflux cycle of a distillation plant.
???????????? ?????????? The reflux ratio is a key parameter in distillation that defines the ratio of the liquid returned to the distillation column (reflux) to the liquid product withdrawn (distillate). It is calculated as follows: ???????????? ?????????? (??) = ???????????? ???????? ???????? (??) / ???????????????????? ???????? ???????? (??) Where: is the flow rate of the reflux, which is the liquid that is condensed and sent back to the top of the column. is the flow rate of the distillate, which is the liquid product drawn from the column. ?????????? ???? ?????????????????? ???????????? ??????????: ??. ?????????????? ???? ?????????????????? ???????????? ???????? ???????? (??): The amount of liquid condensed from the vapor phase at the top of the column and returned to the column as liquid reflux. ??. ?????????????? ???? ?????????????????? ???????????????????? ???????? ???????? (??): The amount of liquid product collected as distillate from the top of the column. ??. ?????????????????? ?????? ???????????? ?????????? (??): Simply divide the reflux flow rate by the distillate flow rate to get the reflux ratio. Example: If the reflux flow rate is 150 m3/h and the distillate flow rate is 50 m3/h, the reflux ratio would be: R = 150 / 50 = 3 This means that for every unit of distillate product, 3 units of liquid are returned to the column as reflux. ?????????????????? ????????????????????????????: ???????????? ???????????? ??????????: Improves separation but increases energy consumption as more vaporization and condensation cycles are required. ?????????? ???????????? ??????????: Saves energy but reduces separation efficiency. Optimizing the reflux ratio is crucial for balancing between operational cost and product purity. #OPEC #IEA #BP #Shell #ExxonMobil #Chevron #TotalEnergies #Halliburton #Schlumberger #BakerHughes7 #aramco #jobs #chemicalengineer #abroad #talent #process Visual example :
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BWI bond work index is key parameter when designing comminution circuits (crashing and grinding) ??Insightful post ??
?? Importance of Bond Work Index in Mineral Processing ?? ? The Bond Work Index (BWI) is a key parameter in mineral processing, specifically in the design and operation of comminution circuits (crushing and grinding). It is a measure of the resistance of a material to crushing and grinding and is used to estimate the energy required to reduce the material to a specified size. And why it's important: 1?? Energy Estimation: The Bond Work Index helps in calculating the specific energy required for size reduction, allowing process engineers to estimate the power consumption of comminution equipment like ball mills and crushers. This energy estimation is critical for optimizing plant design and operational efficiency. 2?? Circuit Design: BWI is used to determine the capacity of grinding circuits. Higher work indices indicate harder materials, requiring more energy to achieve the same level of size reduction. This directly influences the choice and sizing of grinding equipment. 3?? Process Efficiency: By knowing the BWI, engineers can optimize grinding circuits to operate efficiently. Understanding the energy requirements allows for adjustments to grinding time, feed rates, or mill speed, which can improve the overall efficiency of the process. 4?? Material Characterization: Different ores and minerals have different Bond Work Indices. This parameter is useful for comparing the hardness and grindability of various materials and helps in predicting the performance of new ores in existing circuits or when designing new plants. ?? In summary, the Bond Work Index is crucial in energy consumption estimation, equipment sizing, and ensuring the efficient operation of mineral processing plants. #Comminution, #Crushing_Circuits, #Grinding_Circuits, #Energy_Consumption, #BondWorkIndex, #Mineral_Processing.
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?? Importance of Bond Work Index in Mineral Processing ?? ? The Bond Work Index (BWI) is a key parameter in mineral processing, specifically in the design and operation of comminution circuits (crushing and grinding). It is a measure of the resistance of a material to crushing and grinding and is used to estimate the energy required to reduce the material to a specified size. And why it's important: 1?? Energy Estimation: The Bond Work Index helps in calculating the specific energy required for size reduction, allowing process engineers to estimate the power consumption of comminution equipment like ball mills and crushers. This energy estimation is critical for optimizing plant design and operational efficiency. 2?? Circuit Design: BWI is used to determine the capacity of grinding circuits. Higher work indices indicate harder materials, requiring more energy to achieve the same level of size reduction. This directly influences the choice and sizing of grinding equipment. 3?? Process Efficiency: By knowing the BWI, engineers can optimize grinding circuits to operate efficiently. Understanding the energy requirements allows for adjustments to grinding time, feed rates, or mill speed, which can improve the overall efficiency of the process. 4?? Material Characterization: Different ores and minerals have different Bond Work Indices. This parameter is useful for comparing the hardness and grindability of various materials and helps in predicting the performance of new ores in existing circuits or when designing new plants. ?? In summary, the Bond Work Index is crucial in energy consumption estimation, equipment sizing, and ensuring the efficient operation of mineral processing plants. #Comminution, #Crushing_Circuits, #Grinding_Circuits, #Energy_Consumption, #BondWorkIndex, #Mineral_Processing.
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We’ve reached another milestone with our Atlantic Copper project! The fabrication and installation of the ISASMELT? furnace shell has recently been completed! This is a significant step forward in the construction of this state-of-the-art CirCular Project, a cutting-edge ISACYCLE? facility capable of processing 100% e-scrap feed – up to 60,000 tonnes annually. Our ISASMELT? technology also boasts exceptional emissions control, minimising effects on the surrounding ecosystem, including the nearby Natural Site Marismas del Odiel. This cylindrical shell is a key design feature. Not only is it the distinctive shape of an ISASMELT? furnace, but did you know the efficient shell design and fabrication also lowers the capital expenditure requirement? The compact footprint of the furnace shell allows for easy integration into existing facilities, supporting brownfield installations. Additionally, the ISASMELT? technology enables industry-leading refractory life, significantly reducing annual maintenance costs. At Glencore Technology, we believe meticulous planning, innovative development, and strong client partnerships are the keys to successful projects. We’re proud to work closely with Atlantic Copper to bring this project to life. By utilising proven ISASMELT? technology, the ISACYCLE? process helps you transform residual waste, including e-scrap, into saleable products. To learn more, visit our website and get in touch. Sign up to our database for updates on this project, upcoming webinars, and much more! https://ow.ly/qfmV50UbvG1 #Escrap #pyrometallurgy #engineering #MiningTechnology #smelting #innovation #ISASMELT #ISACYCLE
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Director @ Aerolex Cables I Quality Manufacturing, Global Sales
4 周Excellent work