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Does the improvement in low-temperature elasticity of bio-based polyols depend on a specific rigid diol structure?

Does the improvement in low-temperature elasticity of bio-based polyols depend on a specific rigid diol structure?

2026-02-11

Modification techniques such as transesterification, ozone decomposition, or thiol-double bond click reaction can be used to precisely control the type and content of rigid diols.

How can the compatibility between bio-based resins and inorganic fillers be improved in waterborne bio-based anti-corrosion coatings?

How can the compatibility between bio-based resins and inorganic fillers be improved in waterborne bio-based anti-corrosion coatings?

2026-01-27

In waterborne bio-based anti-corrosion coatings, the compatibility between bio-based resins and inorganic fillers is a key factor affecting coating performance.

How can bio-based polyols improve the environmental performance of slow-rebound polyurethane foam without sacrificing its comfort and resilience?

How can bio-based polyols improve the environmental performance of slow-rebound polyurethane foam without sacrificing its comfort and resilience?

2026-01-13

In the wave of green consumption and sustainable manufacturing, slow-rebound polyurethane foam, as a core material for mattresses, car seats, headrests, and medical protective gear, is undergoing a profound transformation from "petroleum-dependent" to "bi

How do waterborne bio-based anti-corrosion coatings improve adhesion to metals?

How do waterborne bio-based anti-corrosion coatings improve adhesion to metals?

2025-12-30

Optimizing the formulation of waterborne bio-based anti-corrosion coatings is a key approach to improving adhesion.

How can emulsions made from renewable bio-resources significantly reduce the dependence of paint production on fossil fuels?

How can emulsions made from renewable bio-resources significantly reduce the dependence of paint production on fossil fuels?

2025-12-17

In the traditional paint industry, emulsions, as key additives, have long relied on petroleum-derived surfactants. Their raw material sources are not only limited by the non-renewable nature of fossil resources, but also impose a significant environmental

How can bio-based polyols reduce carbon emissions at the raw material level by replacing petroleum-based feedstocks with renewable plant resources?

How can bio-based polyols reduce carbon emissions at the raw material level by replacing petroleum-based feedstocks with renewable plant resources?

2025-12-02

Against the backdrop of global efforts to address climate change and promote green transformation, the chemical industry is undergoing a profound raw material revolution.

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