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Effect of LDPE and biodegradable PBAT primary microplastics on bacterial community after four months of soil incubation

Journal of Hazardous Materials 2022 229 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 55 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Chengtao Li, Chengtao Li, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Chengtao Li, Chengtao Li, Qian Cui, Kai Zhang, Kai Zhang, Kai Zhang, Qian Cui, Xueqiang Lu, Qian Cui, Qian Cui, Xueqiang Lu, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Yan Li, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Xueqiang Lu, Qian Cui, Qian Cui, Kai Zhang, Kai Zhang, Xueqiang Lu, Kai Zhang, Xueqiang Lu, Kai Zhang, Kai Zhang, Kai Zhang, Xueqiang Lu, Xueqiang Lu, Kai Zhang, Xueqiang Lu, Xueqiang Lu, Yong Zhang Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Kai Zhang, Kai Zhang, Yong Zhang Xueqiang Lu, Kai Zhang, Xueqiang Lu, Xueqiang Lu, Kai Zhang, Kai Zhang, Kai Zhang, Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Xueqiang Lu, Chengtao Li, Xueqiang Lu, Xueqiang Lu, Kai Zhang, Kai Zhang, Kai Zhang, Kai Zhang, Xueqiang Lu, Xueqiang Lu, Yong Zhang

Summary

Researchers compared the effects of conventional polyethylene (LDPE) and biodegradable PBAT microplastics on soil bacterial communities over four months. They found that both types of microplastics altered soil microbial community composition, but PBAT had a more pronounced effect due to its biodegradability providing additional carbon sources. The study suggests that biodegradable plastics are not necessarily safer for soil ecosystems than conventional plastics.

Polymers

Biodegradable plastics would be gradually degraded by microbes after being used and discarded, forming biodegradable microplastics (BMPs). It is however not clear if it, like conventional microplastics, can affect the original soil ecological balance. In this study, the non-degradable LDPE (low density polyethylene) was used as the reference primary microplastic, and the BMP PBAT (polyadipate/butylene terephthalate) was used as the test object. The effects of the amount of PBAT on soil physical-chemical properties, bacterial community were investigated using high throughput sequencing. The results showed that when the highest amount of PBAT applied was up to 250 times higher than the normal application amount, resulted in a certain dose-effect, and a higher amount of PBAT would reduce the content of NO-N and TP. The lower amount of PBAT relatively increased the diversity of soil bacterial communities, and the relative abundance of the unique Azotobacter increased with increasing PBAT amount. The abundance of bacterial community in soil with different PBAT amounts was significantly correlated with the soil's physical-chemical properties. In addition, Mesorhizobium, TM7a and Azotobacter were observed to be highly tolerant bacteria in PBAT containing soil which can be actively explored to study the biodegradation of BMPs PBAT.

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