Experience our solvent-free fertilizer #coating ASKOCOAT! 🌱 ASK Chemicals is proud of its ASKOCOAT™ technology, a #fertilizer release solution that allows water to penetrate a protective coating, dissolving nutrients and transporting them into the soil for plant absorption in a very controlled way. ASKOCOAT™ is a 2K polyurethane system with over 60 % #renewable raw materials. Both components are #solvent-free and contain only reactive ingredients, preventing too fast leaching into the soil. The catalyst can be introduced in various ways, ensuring fast and complete #curing without sticking the coated granules. Discover more about our product and its benefits here: https://lnkd.in/e-2-XyRC #chemicals #chemicalindustry #innovation #industrialresin #specialties #sustainable
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So true! One of the most efficient coating processes I have ever seen. This technology is not only for controlled release fertilizer applications but also useful as anti-caking agent that improves the crush-resistance. #polyurethane #controlledreleasefertilizer #CRF
Experience our solvent-free fertilizer #coating ASKOCOAT! 🌱 ASK Chemicals is proud of its ASKOCOAT™ technology, a #fertilizer release solution that allows water to penetrate a protective coating, dissolving nutrients and transporting them into the soil for plant absorption in a very controlled way. ASKOCOAT™ is a 2K polyurethane system with over 60 % #renewable raw materials. Both components are #solvent-free and contain only reactive ingredients, preventing too fast leaching into the soil. The catalyst can be introduced in various ways, ensuring fast and complete #curing without sticking the coated granules. Discover more about our product and its benefits here: https://lnkd.in/e-2-XyRC #chemicals #chemicalindustry #innovation #industrialresin #specialties #sustainable
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One of the things we love about Cruz Foam’s biobased materials is their scalable production process. Watch this video to see how it works. Biobased materials are converted into pellets, which are then extruded as Cruz Foam and used to create packaging solutions that can naturally decompose into fertilizer. #consumerclimatech #regeneration #howitworks
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A study compared activated carbon (AC) and biochar (BC) for greywater treatment, finding AC better for removing chemical oxygen demand and anionic surfactants, while BC excelled with non-ionic surfactants. Both materials effectively treated greywater for reuse, with BC offering a sustainable, cost-effective option. https://buff.ly/4esx8ug #Biochar #Pyrolysis #CarbonCapture
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The sources of plasticisers are divided into the following five categories! Plasticisers should be widely used in many products because they are more effective, less dosage, fast absorption, good compatibility with rubber and low volatility. So what are the sources of plasticisers? Today, I will talk to you about the classification of the sources of plasticisers, I hope it will help you. Plasticiser source classification 1. Petroleum plasticisers Petroleum-based plasticizers are produced by selecting appropriate crude oil through decompression and atmospheric distillation, and the main varieties are process oil, light chemical oil, three lines of oil, mechanical oil, paraffin, petroleum jelly, asphalt, petroleum resins and so on. 2.Coal tar plasticiser The main varieties of coal tar-based plasticisers are: coal tar, Gumarone, coal tar pitch and RX-80 resin, of which Gumarone resin is more commonly used, it is both plasticiser and viscosity builder, the applicability of synthetic rubber is small. 3. Pine tar plasticiser Pine tar is pine roots and pine stems by dry distillation to remove the residue of turpentine, the main varieties of rosin oil, pine tar, rosin, Tall oil, etc., which is more commonly used is pine tar. 4. Aliphatic plasticisers Aliphatic plasticizers have fatty acids and ointments made from vegetable oil and animal oil, among which stearic acid is an important sulfur-activating agent, and ointment: there are black ointment, white ointment, etc., which make carbon black easy to be dispersed, and there are also glycerin, castor oil, soybean oil, zinc stearate and so on. 5.Synthetic plasticisers Synthetic plasticizers are divided into: phthalates, fatty acid esters, fatty acids, phosphate esters, polyesters, epoxy, chlorine and other categories according to the structure. Plasticisers are divided according to the source, there are five types mentioned above, of which rubber processing is one of the most used plasticisers. Dongying HeYu New Energy Co., Ltd. produces new environmentally friendly plasticiser raw materials from clean renewable resources, this plasticiser plasticising effect is relatively good, abundant sources, low cost!
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The production of biopolymer begins in sugarcane plantations. The process involves extracting ethanol from sugarcane, which is then converted into polyethylene. The significance of this process lies in its ecological efficiency: for every ton of the final product, up to 2.12 tons of carbon dioxide are captured from the atmosphere. In contrast, the traditional equivalent, derived from petroleum, emits approximately 2.24 tons of the same gas per ton produced. GigaLan Green cables, pioneers in the industry, are made from this sustainable biopolymer. They offer high performance and environmental responsibility, with the added safety assurance of LSZH-3 classification, ensuring safety in high-traffic areas. #Furukawa #Sustainability #Technology #Innovation #Market #GigaLanGreen #Environment
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⏰ We're feeling nostalgic here at World Fertilizer today, so why not head back in time with another edition of #ThrowbackThursday! 💡 This week we are looking at an article from our October 2020 issue, where Jan Hermans, Sulphurnet, explored why filter aids are increasingly being made from organic substances. 💬 "The sulfur processing market has been at a standstill for a long time. Copying and pasting old technology was common. However, a few years ago, the importance of sulfur processing was recognised and innovations were applied. This is also evident in the sulfur purification process and optimisation, resulting in a better quality of sulfur after the filtration is recognised. However, in order to fully optimise these processes companies should not only review their filter technology, but also look to enhance their whole process design." Don't forget to register for your FREE issue of World Fertilizer here 👇 https://lnkd.in/edF6Hze
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Enhance Fertilizer Efficiency with Kao’s Coating Agents! Managing dust in granular fertilizers is crucial for maintaining performance, worker health, and environmental safety. Kao Chemicals offers innovative solutions that tackle this challenge effectively. Here are three key benefits of Kao's fertilizer coating agents: - Superior Abrasion and Caking Resistance: Kao's surfactants and anticaking additives create a protective coating on granules, reducing abrasion and preventing caking. This not only minimizes dust formation but also ensures longer-lasting granules and a cleaner, safer work environment. - Moisture Absorption Control: Our advanced formulations are highly hydrophobic, preventing moisture absorption that leads to dust and degradation of the fertilizer granules. This results in stable fertilizer quality and reduced dust emissions even in varying climatic conditions. - Eco-Friendly Solutions: Kao is committed to sustainability. Our eco-friendly dust control additives, derived from vegetable sources, offer high biodegradability and low eco-toxicity, making them a responsible choice for modern agricultural practices. Connect with us to learn more about how you can optimize your fertilizer performance with Kao's cutting-edge technology. #fertilizers #workerhealth #environmentalsafety #anticaking #dustemissions #sustainability #ecofriendly #biodegradability
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Unlock the Potential of Hexane Co-Products! At Altiras Chemicals, we understand the value of sustainable solutions. The Hexane co-products in our catalog are a prime example of turning by-products into valuable resources. What are Hexane Co-Products? Hexane co-products are derived from industrial processes and can be repurposed for various applications. Common uses include: ▶ Solvent extraction: Ideal for extracting oils from seeds and vegetables. ▶ Cleaning agents: Effective in degreasing and cleaning in various industrial settings. ▶ Chemical intermediates: Used in the production of other chemicals and products. Why Choose Co-Products? ▶ Cost-effective: Lower cost than virgin materials, offering significant savings without compromising quality. ▶ Sustainable: By utilizing co-products, you're contributing to a circular economy and reducing waste. ▶ Regulatory Compliance: Our co-products meet rigorous standards, ensuring they are safe and effective for their intended uses. If you’re looking to enhance your operations with reliable and sustainable Hexane co-products, let’s connect! Together, we can drive efficiency and sustainability in your processes. #Hexane #CoProducts #Sustainability #ChemicalIndustry #CircularEconomy #IndustrialSolutions
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🌿 Transforming Water Purification with SAWBIOL: The Future of Clean Water 🌿 🔬 SAWBIOL: The Next Generation in Biological Activated Carbon 🔬 For years, activated carbon has been a key player in water treatment. Now, SAWBIOL is rewriting the rules, pushing the boundaries of water purification with cutting-edge technology. Here’s why SAWBIOL is a game changer: 💧 Unmatched Porosity & Enhanced Bacterial Performance. With a porosity of 0.26 cm³/cm³ for pores larger than 1 μm, SAWBIOL is 2.6 times more porous than traditional GAC. This superior structure creates the ideal environment for bacterial growth, even in temperatures as low as 10°C. In the same conditions, 1 cm³ of SAWBIOL retains 150 million bacteria, vastly outperforming sand (2-5 million) and high-grade coconut GAC (40-50 million). 🔋 Superior Removal of BOM & Ammonia SAWBIOL excels where others fall short, utilizing a biological process to effectively degrade Biological Organic Matter (BOM) and ammonia without relying on pre-chlorination. This means no harmful disinfection by-products, just cleaner, safer water. ⚙️ Optimized Filter Design & Low-Maintenance Operation Engineered for flow rates of 6 to 18 m/h, SAWBIOL guarantees efficient filtration. Its easy backwashing process controls biomass growth, removes suspended solids, and ensures long-lasting, low-maintenance operation with minimal pressure drops. 🌍 Sustainable, High-Performance Water Treatment SAWBIOL is crafted from sustainable materials and activated through advanced technology, offering rapid adsorption, uniform pore distribution, and low ash content. Rigorous quality control and full traceability ensure every batch delivers top-tier performance. 🔹 Key Applications: SAWBIOL effectively eliminates organic pollutants, toxins, microcystins, colours, and odours—all without the need for chlorine. Elevate your water treatment systems to new heights with SAWBIOL. Contact us today to discover how this innovative solution can transform your processes. #WaterTreatment #Innovation #SustainableTech #CleanWater #ActivatedCarbon #SAWBIOL #EnvironmentalSolutions
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An addition of hydrophobic SIPERNAT® D 17 improves the flowability as well as the longterm stability by its anti-caking performance and ensures a lump free, uniform fertilizer distribution. Thus SIPERNAT® D 17 contributes to a more effective and efficient use of fertilizers enabling a more sustainable and environmentally responsible application.
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