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In previous publications, the impact of molecular weight of cellulose ethers on both water retention and rheological properties of mortars has been investigated. The authors conclude that consistency was increased and water retention was improved by higher molecular weight ethers. The mortar rheology is highlighted as one of the key properties relative to water retention [12]. Other studies discussed the influence of cellulose ethers on water transport in the porous structure of cement-based materials and investigated their effect on cement hydration [13], [14]. They found that the type of substituents attached to the anhydro glucose ring of the cellulose ether is critical for water transport and development of the microstructure of fresh and hardened cement. Furthermore, the degree of substitution represents the key parameter relative to cement hydration, as was evidenced by different time periods at which portlandite precipitation occurs.

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hydrox extract chemical

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hydrox extract chemical


  • Enhancing Concrete Performance with Effective Additives for Improved Durability and Strength
  • Exploring Hydroxy Methyl Ethyl Cellulose Applications in Modern Industries and Innovations
  • Introduction of low viscosity hydroxypropyl methyl cellulose (HPMC)
  • Exploring Sustainable Practices in Construction and RDP Development Strategies
  • Provide viscosity, which can be used as an anti – precipitation agent.
  • One of the key advantages of HPMC is its biodegradability, making it an eco-friendly choice. As a polysaccharide, it can be broken down by microorganisms into simpler sugars, reducing environmental impact compared to synthetic alternatives. This sustainability factor has led to growing interest in using HPMC in green packaging and pharmaceutical formulations.
  • Tiêu chuẩn an toàn cho hóa chất CAS 209004-65-3 trong ngành công nghiệp.
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