Preparation of microencapsulated nitrogen‑phosphorus‑silicon flame retardant and its effect on high impact polystyrene flame retardancy

Author:

Sun Xiaoyan,Lu Wangxing,Liu Huimin,Deng LiSha,Zhou Ru,Liu Lian X.,Shu Chi-Min,Jiang Juncheng

Publisher

Elsevier BV

Subject

Materials Chemistry,Polymers and Plastics,General Chemical Engineering,Biochemistry,Environmental Chemistry,General Chemistry

Reference65 articles.

1. Catalytic pyrolysis of flame retarded high impact polystyrene over various solid acid catalysts;Ma;Fuel Process. Technol.,2017

2. Characterization and processability of post-consumer, double-recycled high impact polystyrene from disposable cups;El Bhilat;Mater. Today,2021

3. Recycling of high impact polystyrene and low-density polyethylene plastic wastes in lightweight based concrete for sustainable construction;Olofinnade;Mater. Today,2021

4. Thermal decomposition of fire-retarded high-impact polystyrene and high-impact polystyrene/ethylene–vinyl acetate blend nanocomposites followed by thermal analysis;Katančić;J. Elastom. Plast.,2014

5. Thermal and catalytic pyrolysis of a real mixture of post-consumer plastic waste: an analysis of the gasoline-range product;Paucar-Sánchez;Process. Saf. Environ. Prot.,2022

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