The chemical processing industry is a cornerstone of modern manufacturing, essential for producing various products, from pharmaceuticals to industrial chemicals. Our latest article has everything you need to know! 🚰 https://bit.ly/3xjNWDG
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Fluidized-bed dryers are key assets in the pharmaceutical, chemical and food-and-beverage industries. To benefit from optimal fluidized-bed drying operations and stay ahead of the game, it is important to keep up with the evolution of control technologies and industrial automation, delivering high-quality products with short lead times and costs. Learn more in this article from Chemical Engineering Magazine: https://lnkd.in/evZJxGZ8 #FluidBedDryer #IndustrialAutomation #ProcessControl
Optimizing Fluidized-Bed Drying Processes - Chemical Engineering
chemengonline.com
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Potassium hydroxide (KOH) is an important chemical used in diverse industrial processes, including chemical manufacturing, pharmaceuticals, and energy storage devices. Monitoring KOH concentration is vital for ensuring product quality, process efficiency, and safety. Measuring the refractive index with Anton Paar's Abbemat refractometer is a proven method for concentration determination that enables non-destructive real-time analysis. Download this report @TheEngineerUK now to find out more: https://loom.ly/nBd_sa4 #applicationreport #abbemat #refractometer
The Engineer - Refractometric Determination of Potassium Hydroxide (KOH)
theengineer.co.uk
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Potassium hydroxide (KOH) is an important chemical used in diverse industrial processes, including chemical manufacturing, pharmaceuticals, and energy storage devices. Monitoring KOH concentration is vital for ensuring product quality, process efficiency, and safety. Measuring the refractive index with Anton Paar's Abbemat refractometer is a proven method for concentration determination that enables non-destructive real-time analysis. Download this report @TheEngineerUK now to find out more: https://loom.ly/nBd_sa4 #applicationreport #abbemat #refractometer
The Engineer - Refractometric Determination of Potassium Hydroxide (KOH)
theengineer.co.uk
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The worldwide market for process analyzers was valued at approximately USD 7.9 billion in 2023 and is expected to grow to around USD 10.1 billion by 2030, with a compound annual growth rate (CAGR) of 3.7% between 2024 and 2030. Dive deeper into the industry insights here: https://lnkd.in/gCfnPt3K #processanalyzer #market #trends #innovations #industrialprocesses #oilandgas #chemical #pharmaceuticals #sensortechnologies #realtime #monitoring #marketdrivers #competitivelandscapes
Process Analyzer Market Size and Forecast Report, 2030
psmarketresearch.com
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What are the benefits of Multi Column Distillation System? -The Multi-Column Distillation System (MCDS) offers numerous benefits, making it a preferred choice for water purification in various industries. -Firstly, it provides high-purity water, meeting stringent quality standards required for pharmaceutical, biotech, and electronics applications. -Its multi-column configuration ensures a continuous supply of distilled water, minimizing downtime and maximizing productivity. -Secondly, the MCDS boasts exceptional energy efficiency, as it utilizes the heat from the condenser to preheat the feed water, reducing overall energy consumption. -Moreover, the system's design allows for easy maintenance and cleaning, ensuring long-term reliability and consistent performance. -Additionally, it offers enhanced control and monitoring capabilities, enabling operators to optimize process parameters and maintain water quality.
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Control panels are the backbone of fluid handling operations, orchestrating precise regulation of flow rates, pressure, temperature, and other critical parameters. In industries where precision is paramount, such as manufacturing, petrochemicals, and pharmaceuticals, control panels play an indispensable role in safeguarding both product quality and safety. These panels go beyond precision by optimizing energy efficiency through effective management of system components, leading to reduced operational costs. #controlpanels #vemc #kbl #apoem
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Discover the Key Role of Inert Ceramic Balls in Industrial Applications 🔹 Also known as inert ceramic spheres or support media 🔹 Essential in chemical, petrochemical, and environmental industries 🔹 Provide crucial support in catalyst beds 🔹 Enhance efficiency and longevity of industrial processes 🔹 Resistant to high temperatures and chemical corrosion #ChemicalEngineering #Petrochemical #Pharmaceutical #Manufacturing #WastewaterTreatment #EnvironmentalTech #InertCeramicBalls #CeramicMedia #IndustrialCeramics
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Catalyst Carrier Manufacturing Plant Cost | 2023 Edition Grab the Detailed PDF Insight: https://lnkd.in/dBtpfwW6 The market is experiencing significant growth due to various factors. First and foremost, there is a surging demand for catalytic processes that are efficient and sustainable, driven by the need to increase productivity while adhering to environmental regulations and sustainability goals. Additionally, the adoption of catalyst carriers is on the rise, as they prove to be highly effective in converting raw materials into desired products with minimal waste generation. This efficiency is contributing to the market's expansion. Furthermore, the market is positively influenced by the increasing demand for catalyst carriers capable of optimizing the production of high-value chemicals and pharmaceutical intermediates. Government agencies in different countries are also playing a pivotal role in driving market growth. #CatalystCarrier #projectReport #IndustryTrends #ManufacturingProcess #PlantSetup #Machinery #RawMaterials #plantCost
Catalyst Carrier Manufacturing Plant Cost 2023-2028: Manufacturing Process, Project Report, Plant Setup, Business Plan
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PRODUCTION EXECUTIVE @ UPL LTD || HIKAL LTD. || CADILA HEALTHCARE LTD.|| SUN PHARMA LTD. || M.Sc. ORGANIC CHEMISTRY।। MBA OPERATION MANAGEMENT (DE)।। SIX SIGMA BLACK BELT ||
Hello Connection are you looking to boost productivity and minimize downtime in chemical as well as pharmaceutical manufacturing process? 📈 Look no further than Overall Equipment Effectiveness (OEE)! 🛠️ OEE is a powerful metric used to measure the performance of equipment in terms of availability, performance, and quality. Let's break it down: 🔍 Availability✳️ How often is the equipment available for production? Example: If a reactor is scheduled to run for 8 hours but experiences 1 hour of downtime due to maintenance, its availability would be 7/8 or 87.5%. ⚙️ Performance✳️ How efficiently is the equipment running during production? Example: If a mixer is capable of producing 100 units per hour but only produces 80 units due to speed fluctuations or stoppages, its performance would be 80%. 🎯 Quality✳️ What percentage of the output meets quality standards? Example: If a distillation column produces 900 kg of a chemical, but 100 kg is rejected due to impurities, its quality would be 900/1000 or 90%. By multiplying these three factors together (Availability × Performance × Quality), you get the OEE score, which provides insight into the overall effectiveness of your equipment. Implementing OEE initiatives can lead to significant improvements in productivity, reduced waste, and increased profitability. It empowers chemical manufacturers to identify areas for improvement and take proactive steps towards optimizing their operations. 💪 So my dear connections ready to supercharge your chemical manufacturing process? Start tracking OEE today and unleash the full potential of your operations! 🚀 🙏Thanks🙏 #continuousimprovement #OperationalExcellence #ChemicalIndustry #OEE #ProductivityBoost
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Do you have issues when mixing? The ‘Applied Mixing Technology For Process Development: Scaling Down to Scale Up' course will help you solve problems in future and the next course will be held online on 26-29 September. Our course tutor Aaron Sarafinas is a recognized expert in process development and mixing technology in the chemical and pharmaceutical industries. He formed Sarafinas Process & Mixing Consulting LLC in June 2018 to help chemists achieve faster process development, scaling, and troubleshooting while leveraging advantaged mixing technology. Aaron will start off the course looking into some essential basics of mixing technology. With those fundamentals, he will then progress through different mixing applications in increasing levels of complexity: single-phase (blending and heat transfer), multiple phase (solid-liquid, immiscible liquid, gas-liquid, and 3-phase), and mixing in competitive rate processes (reactions and crystallizations). Throughout, he will look at scale-up and scale-down by using examples from industrial processes which have a variety of mixing requirements. A previous course attendee told us ‘The course was really great, the topics talked about were from really basic terms using simple case studies that were really helpful to understand. Also, if we had any questions that were not included in the handbook, Dr Aaron prepared an addendum and gave the answer in the next session, It’s really helpful. Thank You.’ Please click here https://lnkd.in/eXUePsuk for more information and to register. Please share with your colleagues if you think they might also be interested. #mixingtechnology #ScaleUp #ProcessChemistry #OrganicChemistry
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Global Operations Executive Driving Profitability & Organizational Excellence
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