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INOPSYS NV understands the challenges of the #pharmaceutical industry around side stream treatment. We offer on-site modular water treatment solutions specifically designed for the pharmaceutical sector. Our technologies go beyond purification and API removal. We focus on circular water use and recovery of valuable substances from wastewater streams. This means not only cleaner water but also cost savings through resource recovery. #dontacceptthestatusquo #wastewater #PIE #circulareconomy
The pharmaceutical industry faces unique challenges when it comes to wastewater treatment. From complex molecules to strict environmental regulations and PIE, finding a sustainable and efficient solution is essential. 🌱 INOPSYS NV, we understand these challenges. We offer on-site modular water treatment solutions specifically designed for the pharmaceutical sector. Our technologies go beyond purification and API removal. We focus on circular water use and recovery of valuable substances from wastewater streams. This means not only cleaner water but also cost savings through resource recovery. Why Choose InOpSys? 🔹 Modular solutions that can be easily tailored to your specific processes and fluctuations in production volumes. 🔹 Recovery of valuable chemicals like solvents and catalysts, contributing to a circular economy. 🔹 Full compliance with the strictest environmental regulations and pharmaceutical guidelines. 🔹 Lower ecological footprint thanks to innovative treatment technologies that use less energy and reduce harmful chemical consumption. 🔹 Pay-per-use model, so you only pay for the treated water, without large capital investments. 🌍 Choose sustainable, efficient, and cost-effective solutions tailored to the pharmaceutical industry. Contact us and discover how we can elevate your water management. Together, we are building a circular future! ♻️ #dontacceptthestatusquo #PharmaceuticalIndustry #Sustainability #WaterManagement #CircularEconomy #InOpSys #Innovation #WastewaterTreatment #ChemicalRecovery
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FREE GUIDE: https://lnkd.in/ga4cc6zs Choosing the right lab instruments is crucial for productivity and innovation. With Bio-Rad's guide, explore key considerations for purchasing new equipment. Learn when to replace old instruments, what to consider in new ones, and how to minimize downtime. #Biotechnology #lifesciences #productivity
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Commit to Switch to biobased products! We support and applaud all the groups and individuals who are making a difference by discovering, inventing, manufacturing, distributing and advocating for biobased products. Everyone of us can make a difference. #CommitToSwitch #NBPD #Bioeconomy #CelebrateBiobased #BiobasedProductsDay
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The pharmaceutical industry faces unique challenges when it comes to wastewater treatment. From complex molecules to strict environmental regulations and PIE, finding a sustainable and efficient solution is essential. 🌱 INOPSYS NV, we understand these challenges. We offer on-site modular water treatment solutions specifically designed for the pharmaceutical sector. Our technologies go beyond purification and API removal. We focus on circular water use and recovery of valuable substances from wastewater streams. This means not only cleaner water but also cost savings through resource recovery. Why Choose InOpSys? 🔹 Modular solutions that can be easily tailored to your specific processes and fluctuations in production volumes. 🔹 Recovery of valuable chemicals like solvents and catalysts, contributing to a circular economy. 🔹 Full compliance with the strictest environmental regulations and pharmaceutical guidelines. 🔹 Lower ecological footprint thanks to innovative treatment technologies that use less energy and reduce harmful chemical consumption. 🔹 Pay-per-use model, so you only pay for the treated water, without large capital investments. 🌍 Choose sustainable, efficient, and cost-effective solutions tailored to the pharmaceutical industry. Contact us and discover how we can elevate your water management. Together, we are building a circular future! ♻️ #dontacceptthestatusquo #PharmaceuticalIndustry #Sustainability #WaterManagement #CircularEconomy #InOpSys #Innovation #WastewaterTreatment #ChemicalRecovery
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The Cultivated B (TCB) is a leader in innovation to overcome bioreactor bottlenecks. Our CEO, Dr. Hamid Noori, provided his insights on this vast opportunity to scale alternative proteins for a report from FoodHack: “Bioreactors are predominantly tailored to the pharma industry, and alternative protein production needs fit-for-purpose designs: cost-efficient, fast-to-manufacture reactors that meet food production requirements without compromising on performance of the relevant cell types. Operability by a broad workforce without an academic background is essential, too.” Subscription required to download the full report: https://lnkd.in/dHdc2hWQ #AlternativeProteins #Bioprocessing #Bioreactor
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This is why eco-friendly excipients are a game changer in pharmaceuticals! 🌿 Choosing eco-friendly excipients in pharmaceuticals brings numerous advantages for both the environment and our health. Here are five key benefits: 1. Environmental Sustainability: Derived from renewable resources, eco-friendly excipients reduce reliance on non-renewable materials, supporting a sustainable future. 2. Biodegradability: These excipients naturally break down in the environment, minimizing long-term pollution and ecological impact. 3. Reduced Toxicity: Eco-friendly excipients are generally non-toxic and safe for the environment, reducing the risk of chemical contamination. 4. Lower Carbon Footprint: Sustainable production processes for these excipients may require less energy and produce fewer greenhouse gases. 5. Improved Health Outcomes: Eco-friendly excipients enhance the stability, bioavailability, and efficacy of medications, ensuring better therapeutic results. Want to learn more about the benefits of eco-friendly excipients? Click the link to read our valuable article: https://ow.ly/xBsS50SkvkA #EcoFriendly #Pharmaceuticals #Sustainability #GreenPharmacy #HealthyLiving #BotanicalChemistPalmCove #PalmCove Reference: Mammino, L. Green chemistry: Chemistry working for sustainability. Elsevier eBooks. January 1, 2022. pp. 41-54. Available at: https://lnkd.in/g4pEhvbt Researcher: L. Mammino. Financial sponsor: Not specified. Source of funding: Not specified.
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💊 One of the steps in the production processes of pharmaceuticals is removing low concentrations of drug residues and solvents in relatively large volumes of #water. Researchers at Wageningen University & Research propose a smart combination of methods to treat this water more sustainably and effectively. 💧 "After concentration, you have two options,” Tania Mubita explains, "you can either recover and reuse the solvents or break them down into less harmful substances." #Microorganisms play a crucial role in breaking down solvents, as they can extract their nutrients from the continaminated water. "We can assemble a community of microorganisms that precisely breaks down the desired substance", Mattijs Julsing adds. "Microorganisms adapt quickly, so with the right selection pressure, they will do what you want them to do." 🔗 https://lnkd.in/dTDeUkBT
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Article Summary: The article discusses the potential of utilizing organic solid waste from traditional Chinese medicine in creating multifunctional biochar-based materials. The significant amount of waste generated by the pharmaceutical process poses environmental challenges and calls for innovative solutions. Biochar derived from TCM waste shows promise due to its rich cellulose and lignin content, leading to various applications in environmental remediation, energy storage, and bioimaging. Hashtags: #Biochar #TraditionalChineseMedicine #OrganicWasteManagement #EnvironmentalRemediation #Sustainability Read more here: https://lnkd.in/ehCgWxkt BioMedHack.com is your leading source for the latest news, breakthroughs, and insights in medicine, biohacking, and alternative medicine. Our mission is to help you live healthier and longer by bringing you cutting-edge information and expert advice. Follow us on Facebook, Instagram, and X.
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Scaling up a bioreactor process can be daunting. But it doesn't have to be. Here are key considerations to keep in mind. 1. Evaluate and adjust parameters from the lab scale to optimize for larger bioreactors. 2. Implement robust systems for monitoring and control. 3. Compare performance and quality between lab-scale and larger-scale bioreactors. 4. Assess the economic feasibility and ROI of scaling up. 5. Evaluate resource consumption and waste generation for mitigation strategies. 6. Ensure regulatory compliance throughout the scale-up process. What challenges have you faced in scaling up bioreactor processes? Let's discuss it! #cellculture #processdevelopment #bioprocessing #celltherapymanufacturing #cellandgenetherapy #leadbiotech
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𝗛𝗼𝘄 𝘄𝗲 𝘄𝗼𝗿𝗸 𝘄𝗶𝘁𝗵 𝘄𝗮𝘁𝗲𝗿 𝗿𝗲𝗱𝘂𝗰𝘁𝗶𝗼𝗻 𝗶𝗻 𝘁𝗵𝗲 𝗽𝗵𝗮𝗿𝗺𝗮𝗰𝗲𝘂𝘁𝗶𝗰𝗮𝗹 𝗶𝗻𝗱𝘂𝘀𝘁𝗿𝘆 – 𝗔 𝘁𝗮𝗹𝗸 𝘄𝗶𝘁𝗵 𝗽𝗿𝗼𝗰𝗲𝘀𝘀 𝘀𝗽𝗲𝗰𝗶𝗮𝗹𝗶𝘀𝘁, 𝗝𝘂𝘀𝘁𝗶𝗻 𝗕𝗼𝗿𝗿𝗶𝘀𝗼𝗻 🌊🧪💡 “I believe this is just the beginning. There was a plethora of options to save water and as you do something more and more times you can get better and be more ambitious. It would be cool if one day, we could save 90% of all water on site, and I don’t think we are that far off.” Across the life science sector, finding new ways to optimize and reduce water usage is becoming increasingly important. As the demand for pharmaceutical products is on the rise and more and more products are being developed and brought to market, climate change is altering the way companies can access water reserves, which brings with it a need for rethinking how water is used and reused throughout the various steps in the production processes. We’ve caught up with our colleague and water and life science process engineer, Justin Borrison, who recently worked on a project to reduce water consumption by up to 44% at a major international pharmaceutical manufacturer – in the interview, Justin gives his account of what it’s like to work with global pharmaceutical manufacturers to rethink water processes, explore new ways of reusing water, and push the limits in terms of how we build sustainable production processes. Read the interview here 👉 https://lnkd.in/dzcNVpMF #waterreuse #pharma #lifescience #HereWeGrow
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