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水性、环保、全疏型涂料实现可持续应用.pdf

上传人: c** 编号:465086 2025-01-12 32页 30.84MB

1、Ramadan Abouomar,PhDPakItGreen 1We were working on PFAS alternative at Scops Coating Technologies Then PakItGreen acquired Scops Coating Technologies We developed a Technology that is not only PFAS-Free but also Micro-plastic-Free and used biodegradable technology IntroductionPlastics and microplast

2、ic dilemma PFAS Enigma(very good performance,reasonable price,harmful for environment;Forever chemicals)Paper packaging why recyclability is important?Our New Technology requirements of the coating Performance;water,MVTR,oil and grease Plastics in Packaging(36%of plastics are used in packaging)Examp

3、les applications paper cups problems(20 hrs),Oil test 5 hrs 5-Cobb value of 2 after 30 min 6-Heat-sealing for some formulas 7-Good MVTR(work in progress)Biodegradable coatingOur technology is suitable for many fiber-based substrates including but not limited to:1-Kraft papers 2-Cardboard 3-Cellulose

4、 fibers 4-Pizza boxes SubstratesRational DesignVariety of starting materials to account for:1-film formation 2-Water resistance 3-MVTR 4-OGR 5-Mechanical properties Hardness;toughness 6-Price?!7-Biodegradability Barrier PerformanceMW and MWD Morphology Crosslinking Tg Solubility parameter Polarity A

5、dditives/FillersBiodegradable coating is based on Polyester chemistry with modified structure to improve the OGR/Water performance and to enhance the biodegradability of the coatingExperimental Polymerization&emulsion1-Polymerization 2-Emulsification Chemical characterization4.20.01190.03110.01931pp

6、m0123456781.1951.2452.6153.4733.5973.6563.9504.0824.1594.1825.0195.1347.270876,6543,32145Mn(NMR)=158*I8(I4+I5+I7)/3+158+76Chemical composition30.22.0ppm0123456781.2482.6224.1004.2855.1385.2376.8597.27054,43,321Mole%fumarate=I5/2(I24)+(I52)*100Paper coatingControl GSMCobb Method:u

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本文介绍了Ramadan Abouomar博士及其团队在PakItGreen公司收购Scops Coating Technologies后,开发出一种PFAS-Free且无微塑料的生物可降解涂层技术。该技术不仅解决了PFAS(永久化学品)对环境的危害问题,也解决了纸包装可回收性、塑料污染和微塑料问题。新技术满足了对涂层性能(如防水、油和油脂阻隔)的要求,适用于任何纤维基材,如纸杯等。实验结果显示,该涂层具有超过4天的油阻隔性能,在60°C时超过24小时,水分透过率(MVTR)可达到两位数,且正在努力进一步降低MVTR值。这项技术使用生物可降解材料,旨在形成水和油、油脂的屏障涂层,适用于任何纤维素基材。
"PFAS替代技术如何创新?" "生物降解材料在包装中的应用前景如何?" "如何解决塑料包装带来的环境问题?"
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