Flame retardancy efficacy of phytic acid: An overview

TC Mokhena, ER Sadiku, SS Ray… - Journal of Applied …, 2022 - Wiley Online Library
The article reviews the different methods of which, phytic acid (PA) can be employed as a
flame retardant (FR) filler for different polymeric materials. The methods are critically …

Biodegradable flame retardants for biodegradable polymer

M Maqsood, G Seide - Biomolecules, 2020 - mdpi.com
To improve sustainability of polymers and to reduce carbon footprint, polymers from
renewable resources are given significant attention due to the develo** concern over …

Technical lignin valorization in biodegradable polyester-based plastics (BPPs)

SJ Zhou, HM Wang, SJ ** the planet since the early 20th century. They have
brought plenty of conveniences to our lives; meanwhile, plastic wastes discarded into the …

[HTML][HTML] Highly active Ni–Mg–Al catalyst effect on carbon nanotube production from waste biodegradable plastic catalytic pyrolysis

S Prabu, KY Chiang - Environmental Technology & Innovation, 2022 - Elsevier
The catalyst composition effect on the biodegradable plastic (PolyLactic Acid, PLA) catalytic
pyrolysis in generating hydrogen and high-value carbon nanotubes (CNTs) was examined …

Identifying citric acid esters, a class of phthalate substitute plasticizers, in indoor dust via an integrated target, suspect, and characteristic fragment-dependent …

Y Zhang, J Li, G Su - Environmental Science & Technology, 2021 - ACS Publications
Citrate acid esters (CAEs) have been proposed as a class of phthalate substitute
plasticizers; however, information on their occurrence in indoor environments is rare. By …

Biomacromolecules and bio-sourced products for the design of flame retarded fabrics: Current state of the art and future perspectives

G Malucelli - Molecules, 2019 - mdpi.com
The search for possible alternatives to traditional flame retardants (FRs) is pushing the
academic and industrial communities towards the design of new products that exhibit low …

A phosphorus-and nitrogen-containing DOPO derivative as flame retardant for polylactic acid (PLA)

X Wang, W He, L Long, S Huang, S Qin… - Journal of Thermal …, 2021 - Springer
The preparation of high-efficient flame-retardant PLA remains a major challenge due to the
unavoidable loss in mechanical properties. In this study, a DOPO derivative containing …

Flame retardant and water repellent poly (lactic acid) electrospun fabrics

W Hao, Q Zheng, X Zhang, Y Li, L Qiu, H Lu, W Wang… - Thermochimica …, 2023 - Elsevier
For its biodegradability, renewability and sustainability, polylactic acid (PLA) fabrics are of
great interests to replace the petroleum based, non-degradable textiles. However, their …

Modification of Poly (lactic acid) by the Plasticization for Application in the Packaging Industry

K Gzyra-Jagieła, K Sulak, Z Draczyński, S Podzimek… - Polymers, 2021 - mdpi.com
Plastic products, especially in the packaging industry, have become the main commodities
penetrating virtually every aspect of our lives. Unfortunately, their omnipresence is not …

Synthesis of a novel flame retardant with phosphaphenanthrene and phosphazene double functional groups and flame retardancy of poly (lactic acid) composites

DM Bao, JH Wang, ZM Hou, ZY Xu, XL Ye, YZ Qi… - Frontiers in …, 2022 - frontiersin.org
A novel flame retardant hexa (4-(9, 10-dihydro-9-oxa-10-phosphaphenanthrene-10-sulfide)-
hydroxymethylphenoxy) cyclotriphosphazene (HAP-DOPS) with double functional groups …