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Biobased wetting agents and recycling: a dual wheel drive for building a green ecological chain
Release time:2024-09-21 Page-views:32

Biobased wetting agents and recycling systems are the two core strategies for green development of wetting agents, jointly constructing a closed-loop green ecological chain, promoting the effective utilization of resources and sustainable development of the environment.

Biobased wetting agents are synthesized from biomass resources through biotechnology, and have significant advantages such as renewability, degradability, and low toxicity. They not only reduce dependence on fossil resources, but also lower the difficulty of waste disposal, which is in line with the development concept of green chemistry.

Establish a comprehensive waste recycling network, recycle and process used wetting agents, extract valuable components for reuse. Through technological innovation, achieve material recycling in the production process, reduce waste generation, and improve resource utilization efficiency. Implement environmental management throughout the entire process of designing, producing, using, and disposing of wetting agents to ensure environmental friendliness at all stages.

The mutual promotion of bio based wetting agents and recycling systems has jointly promoted the greening process of the wetting agent industry. In the future, with the continuous advancement of technology and the growth of market demand, this green ecological chain will be more perfect, injecting strong impetus into the sustainable development of the industry. At the same time, the combined effects of policy drivers, market demand growth, technological innovation and cooperation, green upgrading of the industrial chain, and international market opportunities will further accelerate the pace of green development of wetting agents, enabling them to play a greater role in environmental protection coatings and inks, clean energy manufacturing, agricultural water-saving irrigation, personal hygiene and care, textile printing and dyeing optimization, and other fields.

 

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