Exploring a New Biocatalyst from Bacillus thuringiensis JNU01 for

Exploring a New Biocatalyst from Bacillus thuringiensis JNU01 for

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Significantly Tunable Foaming Behavior of Blowing Agent for the Polyethylene Foam Resin with a Unique Designed Blowing Agent System

Identification of novel potent biocatalysts, Bacillus thuringiensis STV1324a, Bacillus aquimaris STV1324b, and effective augmentation in a bioelectrochemical system for green energy production - ScienceDirect

Biodegradation of polystyrene and systems biology-based approaches to the development of new biocatalysts for plastic degradation - ScienceDirect

Toxins, Free Full-Text

IJMS, Free Full-Text

Microbial degradation of low-density polyethylene and synthesis of polyhydroxyalkanoate polymers

Exploring a New Biocatalyst from Bacillus thuringiensis JNU01 for Polyethylene Biodegradation

Chungoo PARK, Professor (Full), Ph.D, Chonnam National University, Gwangju, School of Biological Sciences and Biotechnology

High-Strength, Self-Healing, Recyclable, and Catalyst-Free Bio-Based Non-Isocyanate Polyurethane

Book of posters - BIOTRANS - International Symposium on Biocatalysis & Biotransformations

CSB

High-Strength, Self-Healing, Recyclable, and Catalyst-Free Bio-Based Non-Isocyanate Polyurethane

Book of posters - BIOTRANS - International Symposium on Biocatalysis & Biotransformations