A Comprehensive Guide to Formaldehyde
Book Details
Format
Paperback / Softback
ISBN-10
1536194654
ISBN-13
9781536194654
Publisher
Nova Science Publishers Inc
Imprint
Nova Science Publishers Inc
Country of Manufacture
US
Country of Publication
GB
Publication Date
Apr 5th, 2021
Print length
133 Pages
Weight
224 grams
Product Classification:
Chemistry
Ksh 13,150.00
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This monograph comprises four chapters concerning formaldehyde, a colourless, flammable, strong-smelling chemical and an essential component in many manufacturing industries. Chapter 1 explicates the synthesis of diaminodiphenyl sulphone bisbenzoxazine by three step process and the synthesis of bisphenol-S bisbenzoxazine by solvent method. Chapter 2 remarks on the substantial growth trajectory of formaldehyde, examining the potential health-related effects associated with its rise in popularity and discussing how nanotechnological advancement may play a future role in mitigating the chemical's harmful impact. Chapter 3 discusses the growth and development of doped nanostructure materials by using hydrothermal method in alkaline phase, concluding that the prepared doped nanomaterial could be implemented in a broad scale for efficient electro-chemical sensor applications for environmental and healthcare fields. Chapter 4 describes the production of reinforcing rubber products, specifically tires, using rubber compounded with methylene acceptor and methylene donor.
This monograph comprises four chapters concerning formaldehyde, a colourless, flammable, strong-smelling chemical and an essential component in many manufacturing industries. Chapter 1 explicates the synthesis of diaminodiphenyl sulphone bisbenzoxazine by three step process and the synthesis of bisphenol-S bisbenzoxazine by solvent method. Chapter 2 remarks on the substantial growth trajectory of formaldehyde, examining the potential health-related effects associated with its rise in popularity and discussing how nanotechnological advancement may play a future role in mitigating the chemical''s harmful impact. Chapter 3 discusses the growth and development of doped nanostructure materials by using hydrothermal method in alkaline phase, concluding that the prepared doped nanomaterial could be implemented in a broad scale for efficient electro-chemical sensor applications for environmental and healthcare fields. Chapter 4 describes the production of reinforcing rubber products, specifically tires, using rubber compounded with methylene acceptor and methylene donor.
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