Acrylonitrile butadiene styrene (ABS) with controllable photodegradation speed and preparation method thereof
A technology of photodegradation and speed, applied in recycling technology, plastic recycling, etc., can solve problems such as difficult post-processing problems, increased environmental pressure, ABS non-degradability, etc., to solve the problem of photodegradation and photodegradation speed, and reduce environmental pollution. The effect of loading problems
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Embodiment 1
[0008] Example 1: The ABS masterbatch and the composite photocatalyst of nano-titanium dioxide and fluorine were melt-mixed at a mass ratio of 91:9 to obtain an ABS with a controllable photodegradation rate. The mass ratio of nanometer titanium dioxide to fluorine in the composite photocatalyst is 100:50. The masterbatch can be further made into other products, and the service life of the product can be controlled within 8-10 years.
Embodiment 2
[0009] Example 2: The ABS masterbatch and the composite photocatalyst of nano-titanium dioxide and fluorine were melt-mixed at a mass ratio of 93:7 to obtain an ABS with a controllable photodegradation rate. The mass ratio of nanometer titanium dioxide to fluorine in the composite photocatalyst is 100:80. The masterbatch can be further made into other products, and the service life of the product can be controlled within 8-10 years.
Embodiment 3
[0010] Example 3: The ABS masterbatch and the composite photocatalyst of nano-titanium dioxide and fluorine were melt-mixed at a mass ratio of 98:2) to obtain an ABS with a controllable photodegradation rate. The mass ratio of nanometer titanium dioxide to fluorine in the composite photocatalyst is 100:100. The masterbatch can be further made into other products, and the service life of the product can be controlled within 8-10 years.
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