As a chemical engineer, David was inspired to join our team for the opportunity to drive innovation in our drug manufacturing process. Our #manufacturing team is looking for like-minded people to help bring our leading-edge technology to patients. Join our team to help make a difference: https://msd.gl/3VnzumW #MSDCareers
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As we celebrate the #Nationaltechnologyday today, we look into a future brimming with #Corning innovations. We at Corning Advanced-Flow Reactors stand committed to our mission to, “Fundamentally transform chemical, pharmaceutical, new material manufacturing and the associated educational disciplines of chemistry and chemical engineering with Advanced-Flow Reactor (#AFR) technology to make these processes more #efficient, #inherentlysafer, #greener, #sustainable and #economic". From revolutionising chemical processes, to commissioning a chemical plant running at 200,000 TPA, to running a plant continuously for over 50,000 hrs, to having 800+ global installations, to commercially manufacturing with 150+ projects, to working in over 2500+ chemistry; our team of experts is at the forefront of industrial advancements. Lets celebrate together the #Nationaltechnologyday and keep our commitment to deliver the best technical solutions while transforming into #continouschemicalmanufacturing #CorningAFR #Corningemployee #technologyday #nationaltechnologyday #flowreactor #flowchemistry #continuousmanufacturing
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TECH TALK TUESDAY Chemical engineers play a crucial role in advancing continuous manufacturing (CM) in the pharmaceutical industry. Here's how we contribute: 1. Process Design and Intensification: - Chemical engineers apply fundamental principles to design efficient and robust CM processes. - CM offers benefits like faster time-to-market, better process control, smaller factories, and consistent product quality. - Their expertise in heat, mass, and reaction kinetics helps optimize manufacturing at scale¹³. 2. Safety and Efficiency: - Streamlining production processes is a major responsibility for chemical engineers. - They ensure safety, quality, and cost-effectiveness in drug manufacturing, guaranteeing timely distribution of life-saving medications². Remember, chemical engineers are essential in driving innovation and sustainability across various domains, including pharmaceuticals! Source: Conversation with Copilot, 7/2/2024 (1) Continuous Manufacturing in the Pharmaceutical Industry - AIChE. https://lnkd.in/ggshmyCT.... (2) Reimagine Career Success: A Narrative from the Pharmaceuticals ... - AIChE. https://lnkd.in/g3jDV9SQ.... (3) Chemical Engineering in the Pharmaceutical Industry: Manufacturing Life .... https://lnkd.in/gysYD8tb.... (4) What Do Chemical Engineers Do in the Pharmaceutical Industry?. https://lnkd.in/gAnPtska. #TechTalkTuesday #AIAssisted
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🌟Unlocking the Potential of Flow Chemistry Across Different Applications 🌟 Flow chemistry offers numerous advantages across various domains, from R&D to production. Check out the key applications and benefits: 🔬 Organic Synthesis (R&D) ✅ Explore operating windows not available in batch processes. ✅ Try routes that are not possible in batch. ✅ Improve batch results with enhanced control and efficiency. 🛠️ CRO/CMO/CRAM (Contract Research and Manufacturing) ☑ Assess the feasibility of existing routes. ☑Optimize available routes for better performance. ☑Generate material in grams and kilograms, catering to various scales of production. 🏭 Production ✳ Convert existing inefficient batch processes to more efficient continuous processes. ✳Implement new processes in flow chemistry, leveraging insights from the latest literature. Flow chemistry not only enhances efficiency but also opens up new avenues for innovation and optimization. Let's explore these possibilities and drive forward the future of chemical processes! Connect with us on: 📞 +91-74986 70688 📧 enquiry@makspeedtech.com 🌐 www.makspeedtech.com #processengineering #chemicalengineering #processimprovement #processengineer #pharmaceuticals #flowchemistry #greenchemistry #cdmo #pharma #processindustry #continuousflow
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🟢The Role of Chemical Engineering in Medicament Developpment: Chemical engineering plays a vital role in the development of medicaments, transforming discoveries into effective treatments. Here's a brief overview of how chemical engineers contribute: 1.Formulation Design: Chemical engineers collaborate with medicinal chemists to create effective and manufacturable medicament formulations. 2.Scale-Up: They scale up laboratory processes to commercial production, optimizing efficiency and cost while ensuring high-quality medicaments. 3.Process Optimization: Through advanced techniques, chemical engineers enhance production processes, improving yields and reducing waste. 4.Quality Control: They develop and implement quality control measures to ensure medicaments meet stringent regulatory standards. 5.Regulatory Compliance: Chemical engineers help navigate regulatory requirements, ensuring processes and documentation meet the necessary guidelines for approval. Recent technological advances, such as continuous manufacturing and automation, have further empowered chemical engineers to drive innovation and efficiency in medicament development. Their expertise remains crucial in advancing healthcare and improving patient outcomes.
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Grams to Kilograms Material Generation Using Flow Chemistry!! During process development or when optimization is nearly complete, there may be a need to produce samples in grams or kilograms for downstream processing or various tests. This stage often precedes or coincides with the transition from R&D to the Technology Transfer department. For CMOs/CDMOs, this requirement is typically regular. In batch processes, this represents the initial scale-up challenge and can lead to issues with reproducibility. An extreme solution would be running multiple batches, but this approach is cumbersome. The primary advantage of a flow reactor is its continuous operation. A typical lab reactor, with a volume of 5 ml or 10 ml, can produce several grams to kilograms of material in a short period when used continuously. The table below presents calculations for using 5 ml and 10 ml reactors with residence times of 1 minute and 2 minutes. Assuming a product concentration of 20% in the final reaction mass, the product generation in an 8-hour period for each scenario is shown in the last column. In summary, using a 10 ml reactor, it is feasible to generate from a few grams to approximately 1 kg/day or ~20 kg/week of material. The key factors influencing material generation rates are reactor volume, residence time, and product concentration in the reaction mass. Invest in MakSpeed and transform your chemical processes. To learn more! 📞 Contact us today at +91-74986 70688 📧 Email us at enquiry@makspeedtech.com 🌐 Visit our website at www.makspeedtech.com #processengineering #chemicalengineering #processimprovement #processengineer #pharmaceuticals #flowchemistry #greenchemistry #cdmo #pharma #processindustry #continuousflow
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New Post: Chemists - https://lnkd.in/e3jyaH_q of the Occupation:Chemists are professionals who specialize in the study of matter, its properties, composition, and reactions. They play a critical role in various industries, including pharmaceuticals, manufacturing, environmental…
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Chemical engineers turn science into progress by developing processes that transform raw materials into essential products. They’re at the forefront of fields like pharmaceuticals, energy, and sustainability. At Pinnova, we celebrate the innovators who make industry-changing advancements. Chemical engineers, your expertise in transforming materials has a place here to create a positive impact. #ChemicalEngineering
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New Post: Chemists - https://lnkd.in/ex7d6qi4 of the Occupation:Chemists are professionals who specialize in the study of matter, its properties, composition, and reactions. They play a critical role in various industries, including pharmaceuticals, manufacturing, environmental…
Chemists
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Clean rooms are a critical component in various industries, including biotechnology, pharmaceuticals, electronics, and aerospace. These controlled environments are essential for processes that require stringent contamination control to ensure product quality and safety. The implementation of a clean room is a complex task that demands the expertise of facility engineers. This blog will explore why facility engineering is crucial when implementing a clean room. Read more here: https://lnkd.in/etN88PJs
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