A Novel Approach of Chitosan Additive to Remove Formaldehyde from Building Materials

Author:

Wang Huang Chin1,Kang Sy Yuan1,Tseng Chao Heng1,Shau Wen Cheng1,Chen Zhi Yang1

Affiliation:

1. National Taipei University of Technology

Abstract

Formaldehyde (HCHO) which emitted from building materials, such as plywood and adhesive, is a carcinogenic substance in indoor air. Chitosan is produced from the structural element in the exoskeleton of crustaceans (such as crabs and shrimp), and has the ability to absorb HCHO. In this study, the HCHO removal efficiency by chitosan additives was evaluated for two building materials - adhesive and plywood. The experiments were performed in a small chamber based on the method of Japanese Industrial Standards (JIS) A1901 to evaluate the HCHO emission from adhesive and plywood before and after the application of chitosan additives. Both the HCHO concentration in the chamber and the HCHO emission factor of two adhesives, urea-formaldehyde (UF) resin and Poly Vinyl Acetate (PVAC) resin, were reduced from 0.02~0.21 ppm and 0.12~1.05 mg/m2h to 0~0.14 ppm and 0.12~0.63 mg/m2h after using chitosan additives. The best HCHO removal efficiency was adding 9% chitosan additives in the adhesives. The amount of absorbed HCHO is proportional to the amount of chitosan additives, and approximate 0.02 mg of HCHO can be absorbed by per mg of chitosan additive (i.e. absorption capacity 0.02 g HCHO/g Chitosan).

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference8 articles.

1. Ruey-Yu Chen, Indoor Air Pollution-Study on the Formaldehyde Emission from Pressed-Wood Products, National Security Council, NSC83-0421-B038-001-Z (1994).

2. Huey-Jen Su, Che-Ming Chiang, Ching-Chang Lee, Risk assessment and cost-benefit analysis of controlling indoor and outdoor air pollution, Environmental Protection Administration, EPA-91-FA11-03- A218 (2003).

3. Cheng-Chen Chen, A Study on VOCs Emitted Characteristics of Air Exchange Effect from Building Materials in Local Climate of Taiwan– Plywood and Varnish for Example, Department of Architecture, master, Tainan, National Cheng Kung University (2003).

4. Tamaki Wada, Tadashi Uragami, Yasuhiro Matoba, Kuniaki Inui, Hideki Imajyo and Yasuhiro Irie, Studies on Preparation of Chitosan–Complex Acrylic Resin in an Emulsion Polymerization System and Application to Indoor Environment Paint, Japan Society for Finishings Technology (2003).

5. Chi-Cheng Chiang, The Study of Chitosan Paint to diminish Formaldehyde on construction material surface - the Plastic Wall Paper case study, master, Department of Bioenvironmental Systems Engineering, National Taiwan University, Taipei (2007).

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