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Enhancing microplastics biodegradation during composting using livestock manure biochar

Environmental Pollution 2022 86 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 60 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Xiuna Ren, Xiuna Ren, Binoy Sarkar, Xiuna Ren, Binoy Sarkar, Yue Sun, Yue Sun, Binoy Sarkar, Yue Sun, Yue Sun, Yue Sun, Yue Sun, Yue Sun, Sabry M. Shaheen, Xiuna Ren, Xiuna Ren, Xiuna Ren, Yue Sun, Jörg Rinklebe Jörg Rinklebe Binoy Sarkar, Binoy Sarkar, Binoy Sarkar, Jörg Rinklebe Binoy Sarkar, Jörg Rinklebe Binoy Sarkar, Binoy Sarkar, Yue Sun, Yue Sun, Esmat F. Ali, Esmat F. Ali, Xiuna Ren, Yue Sun, Binoy Sarkar, Jörg Rinklebe Binoy Sarkar, Hamada Abdelrahman, Binoy Sarkar, Jörg Rinklebe Xiuna Ren, Binoy Sarkar, Zengqiang Zhang, Zengqiang Zhang, Binoy Sarkar, Xiuna Ren, Sabry M. Shaheen, Jörg Rinklebe Zengqiang Zhang, Zengqiang Zhang, Binoy Sarkar, Xiuna Ren, Sabry M. Shaheen, Jörg Rinklebe Quan Wang, Hocheol Song, Quan Wang, Quan Wang, Yue Sun, Quan Wang, Quan Wang, Jörg Rinklebe Quan Wang, Sabry M. Shaheen, Zengqiang Zhang, Zengqiang Zhang, Zengqiang Zhang, Zengqiang Zhang, Jörg Rinklebe Binoy Sarkar, Binoy Sarkar, Hocheol Song, Zengqiang Zhang, Quan Wang, Jörg Rinklebe Quan Wang, Quan Wang, Jörg Rinklebe Jörg Rinklebe Binoy Sarkar, Quan Wang, Esmat F. Ali, Esmat F. Ali, Binoy Sarkar, Sabry M. Shaheen, Sabry M. Shaheen, Hamada Abdelrahman, Binoy Sarkar, Xiuna Ren, Zengqiang Zhang, Jörg Rinklebe Binoy Sarkar, Jörg Rinklebe Jörg Rinklebe Zengqiang Zhang, Jörg Rinklebe Zengqiang Zhang, Quan Wang, Jörg Rinklebe Jörg Rinklebe Jörg Rinklebe Jörg Rinklebe Sabry M. Shaheen, Binoy Sarkar, Jörg Rinklebe

Summary

Researchers tested whether adding livestock manure biochar to composting systems could enhance the breakdown of biodegradable microplastics. They found that biochar significantly accelerated the decomposition of polyhydroxyalkanoate microplastics by enriching beneficial microbial communities and improving composting conditions. The study suggests that biochar-enhanced composting could be a practical strategy for reducing biodegradable microplastic contamination in organic waste.

Biodegradation of microplastics (MPs) in contaminated biowastes has received big scientific attention during the past few years. The aim here is to study the impacts of livestock manure biochar (LMBC) on the biodegradation of polyhydroxyalkanoate microplastics (PHA-MPs) during composting, which have not yet been verified. LMBC (10% wt/wt) and PHA-MPs (0.5% wt/wt) were added to a mixture of pristine cow manure and sawdust for composting, whereas a mixture without LMBC served as the control (CK). The maximum degradation rate of PHA-MPs (22-31%) was observed in the thermophilic composting stage in both mixtures. LMBC addition significantly (P < 0.05) promoted PHA-MPs degradation and increased the carbon loss and oxygen loading of PHA-MPs compared to CK. Adding LMBC accelerated the cleavage of C-H bonds and oxidation of PHA-MPs, and increased the O-H, CO and C-O functional groups on MPs. Also, LMBC addition increased the relative abundance of dominant microorganisms (Firmicutes, Proteobacteria, Deinococcus-Thermus, Bacteroidetes, Ascomycota and Basidiomycota) and promoted the enrichment of MP-degrading microbial biomarkers (e.g., Bacillus, Thermobacillus, Luteimonas, Chryseolinea, Aspergillus and Mycothermus). LMBC addition further increased the complexity and connectivity between dominant microbial biomarkers and PHA-MPs degradation characteristics, strengthened their positive relationship, thereby accelerated PHA-MPs biodegradation, and mitigated the potential environmental and human health risk. These findings provide a reference point for reducing PHA-MPs in compost and safe recycling of MPs contaminated organic wastes. However, these results should be validated with other composting matrices and conditions.

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