Ethylenediamine modified Ammonium polyphosphate (EDA-MAPP), and Charring-Foaming Agents (CFA) was prepared via a simple chemical approach and further utilizes for the preparation of Epoxy resin based intumescent flame retardation coatings. The ratio belongs to MAPP and CFA was fixed at 2:1 ratio. Comparative thermo gravimetric analysis TGA study of Modified Ammonium polyphosphate (MAPP) and Ammonium polyphosphate (APP) investigated. SbO was introduced into flame retardation coating formulation at various amounts to evaluate the synergistic action of SbO along with flame retardant coating system. The synergistic action of SbO on flame retardation coating formulation was studied by vertical burning test (UL-94V), thermo gravimetric analysis (TGA), Limited Oxygen Index (LOI), and Fourier Transform Infra-Red spectroscopy (FTIR). The UL-94V results indicated that adding SbO effectively increased flame retardancy and meets V-0 ratings at each concentration. The TGA results revealed that the amalgamation of SbO at each concentration effectively increased the thermal stability of the flame retardant coating system. Cone-calorimeter study results that SbO successfully minimized the combustion parameters like, Peak Heat Release Rate (PHRR), and Total Heat Release (THR). The FTIR result shows that SbO can react with MAPP and generates the dense-charred layer which prevents the transfer of heat and oxygen.
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http://dx.doi.org/10.3390/polym12112721 | DOI Listing |
Water Res
December 2024
Deptartment of Biotechnology, Delft University of Technology, Van der Maasweg 9, Delft, HZ 2629, the Netherlands; Department of Chemistry and Bioscience, Center for Microbial Communities, Aalborg University, Aalborg, Denmark.
Extracellular Polymeric Substances (EPS) are ubiquitous in biological wastewater treatment (WWT) technologies like activated sludge systems, biofilm reactors, and granular sludge systems. EPS recovery from sludge potentially offers a high-value material for the industry. It can be utilized as a coating in slow-release fertilizers, as a bio-stimulant, as a binding agent in building materials, for the production of flame retarding materials, and more.
View Article and Find Full Text PDFFront Chem
December 2024
School of the Environment and Safety Engineering (School of the Emergency Management), Jiangsu University, Zhenjiang, China.
In this paper, we report a novel method for enhancing the flame retardancy of wood-based paper by utilizing natural biomaterials. The research constructed a bilayered structure coating on paper fiber surfaces, incorporating mixed starch (MS), adenosine triphosphate (ATP), and phytic acid (PA) as natural bio-based flame retardants. The structural configuration of the coating comprises MS/ATP and MS/PA, which were sequentially assembled as bottom and top parts, respectively, through pneumatic spraying.
View Article and Find Full Text PDFAnn Agric Environ Med
December 2024
Department of Toxicology and Health Risk Assessment, National Institute of Public Health NIH / National Research Institute, Warsaw, Poland.
ACS Omega
December 2024
State Key Laboratory of Chemical Engineering, School of Chemical Engineering East China University of Science and Technology (ECUST), Shanghai 200237, China.
An environmentally friendly flame retardant coating for polyurethane composed of ammonium polyphosphate(APP)/montmorillonite(MMT)/(3-aminopropyl)triethoxysilane(APTES) has been prepared by deposition on a polyurethane surface through a one-step immersion, enhancing its flame retardancy. The coating of APP/MMT/APTES on the polyurethane sample surface has been verified from XPS and FTIR analysis. In comparison to untreated polyurethane, the amount of char residue after combustion of the flame-retardant polyurethane increases significantly, with a 50.
View Article and Find Full Text PDFSpectrochim Acta A Mol Biomol Spectrosc
December 2024
Polymer & Nano Research Laboratory, Department of Chemistry, Siksha-Bhavana, Visva-Bharati University, Santiniketan 731 235, India.
Schiff base polymer (SBP) is a new research field and an excellent candidate for real-life applications such as photoresistors, fluorescent chemical sensing kits, electrochromic devices, flame-retarders, and electrochemical substances. The dye-containing SBP (DSBP) advances the material further. Herein, the quality of pyrene dye has been improved through its chemical attachment to polyethyleneimine by a facile Schiff base reaction.
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