A review of plants formaldehyde metabolism: Implications for hazardous emissions and phytoremediation

The wide use of hazardous formaldehyde (CH2O) in disinfections, adhesives and wood-based furniture leads to undesirable emissions to indoor environments. This is highly problematic as formaldehyde is a highly hazardous and toxic compound present in both liquid and gaseous form. The majority of gaseo...

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Veröffentlicht in:Journal of hazardous materials 2022-08, Vol.436, p.129304-129304, Article 129304
Hauptverfasser: Peng, Wan-Xi, Yue, Xiaochen, Chen, Huiling, Ma, Nyuk Ling, Quan, Zhou, Yu, Qing, Wei, Zihan, Guan, Ruirui, Lam, Su Shiung, Rinklebe, Jörg, Zhang, Dangquan, Zhang, Baohong, Bolan, Nanthi, Kirkham, M.B., Sonne, Christian
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Sprache:eng
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Zusammenfassung:The wide use of hazardous formaldehyde (CH2O) in disinfections, adhesives and wood-based furniture leads to undesirable emissions to indoor environments. This is highly problematic as formaldehyde is a highly hazardous and toxic compound present in both liquid and gaseous form. The majority of gaseous and atmospheric formaldehyde derive from microbial and plant decomposition. However, plants also reversibly absorb formaldehyde released from for example indoor structural materials in such as furniture, thus offering beneficial phytoremediation properties. Here we provide the first comprehensive review of plant formaldehyde metabolism, physiology and remediation focusing on release and absorption including species-specific differences for maintaining indoor environmental air quality standards. Phytoremediation depends on rhizosphere, temperature, humidity and season and future indoor formaldehyde remediation therefore need to take these biological factors into account including the balance between emission and phytoremediation. This would pave the road for remediation of formaldehyde air pollution and improve planetary health through several of the UN Sustainable Development Goals. [Display omitted] •Formaldehyde is a hazardous gas causing diseases such as cancer.•Here we review plant formaldehyde metabolism, physiology and remediation.•Phytoremediation depends on rhizosphere, temperature, humidity and season.•Indoor formaldehyde remediation need to take these biological factors into account.•Such modifications support planetary health through the UN Sustainable Development.
ISSN:0304-3894
1873-3336
DOI:10.1016/j.jhazmat.2022.129304