中文
Announcement
More

Figure/Table detail

Potential Health Risks Associated with Biodegradable Plastics and Future Research Prospects: A Focus on Biodegradable Microplastics
Yongfeng Deng, Ailin Zhao, Changzhi Shi, Ao Guo, Ruqin Shen, Mingliang Fang
Progress in Chemistry, 2025, 37(1): 59-75.   DOI: 10.7536/PC240904

Methods Size Identification Characteristic fragment ions LOQ
(ng/g)
Limitations
Pyr-GC/MS >1 μm PLA 2,3-pentadione;
meso-lactide (3,6-dimethyl-1,4-dioxane-2,5-dion);
DL-lactide (3,6-dimethyl-1,4-dioxane-2,5-dion);
methyl 2-hydroxypropanoate;
methyl 2-methoxypropanoate
50 Destructive method;
Particle size distribution and shape cannot be obtained
PCL ε-caprolactone;
dimer of ε-caprolactone;
trimer of ε-caprolactone;
pentyl pent-4-enoate;
5-oxo-5-(pentyloxy)pentyl pent-4-enoate;
5-hexenoic acid;
6-(5-hexenoyloxy)hexanoic acid;
methyl 6-methoxyhexanoate
30
PBS tetrahydrofuran;
1,4-butanediol;
3-dibutenyl succinate;
3-butenyl-4-hydroxybutyl succinate;
bis(4-hydroxybutyl) succinate;
dibut-3-enyl-butane-1,4-diyl disuccinate;
dimethyl succinate;
butylene glycol methyl ether
40
PBAT tetrahydrofuran;
cyclopentanone;
benzoic acid;
3-butenyl 4-hydroxybutyl adipate;
2-((but-3-enyloxy)carbonyl)benzoic acid;
dimethyl terephthalate;
dimethyl hexanedioate
30
PHAs 2-butenoic acid (cis);
2-butenoic acid (trans);
1H-indene,1-chloro-2,3-dihydromethyl 2-butenoate (cis);
methyl 2-butenoate (trans)
20
LC-MS/MS 0.075,0.15,
and 2 mm
PLA lactic acid 18.7 Simultaneous detection is not possible
TED-GC/MS >1 μm PLA propanoic acid
propenoic acid
3,6-dimethyl-1,4-dioxan-2,5-dione
/ Not applicable to complex organic systems
PBAT terephthalic acid dibut-3-enyl ester
adipic acid dibut-3-enyl ester
1,6-dioxacyclododecane-7,12-dione
Table 3 Comparison of methods for the detection of biodegradable microplastics (BMPs) in aquatic environments[54]
Other figure/table from this article