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Article ? AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button. Tier 2 ? Original research — experimental, observational, or case-control study. Direct primary evidence. Detection Methods Nanoplastics Sign in to save

Raman imaging of microplastics and nanoplastics generated by cutting PVC pipe

Environmental Pollution 2022 37 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Yunlong Luo, Yunlong Luo, Cheng Fang, Christopher T. Gibson, Christopher T. Gibson, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Christopher T. Gibson, Ravi Naidu Ravi Naidu Yunlong Luo, Christopher T. Gibson, Christopher T. Gibson, Christopher T. Gibson, Ravi Naidu Ravi Naidu Ravi Naidu Christopher T. Gibson, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Clarence Chuah, Md. Al Amin, Md. Al Amin, Clarence Chuah, Yunlong Luo, Yunlong Luo, Yunlong Luo, Yunlong Luo, Christopher T. Gibson, Christopher T. Gibson, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Christopher T. Gibson, Ravi Naidu Christopher T. Gibson, Christopher T. Gibson, Christopher T. Gibson, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Christopher T. Gibson, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Yunlong Luo, Yunlong Luo, Youhong Tang, Youhong Tang, Youhong Tang, Youhong Tang, Youhong Tang, Youhong Tang, Clarence Chuah, Clarence Chuah, Clarence Chuah, Clarence Chuah, Md. Al Amin, Clarence Chuah, Clarence Chuah, Clarence Chuah, Clarence Chuah, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Christopher T. Gibson, Clarence Chuah, Clarence Chuah, Cheng Fang, Cheng Fang, Ravi Naidu Youhong Tang, Cheng Fang, Cheng Fang, Youhong Tang, Ravi Naidu Ravi Naidu Youhong Tang, Youhong Tang, Youhong Tang, Christopher T. Gibson, Ravi Naidu Cheng Fang, Cheng Fang, Christopher T. Gibson, Cheng Fang, Christopher T. Gibson, Cheng Fang, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Christopher T. Gibson, Youhong Tang, Youhong Tang, Cheng Fang, Cheng Fang, Ravi Naidu Cheng Fang, Cheng Fang, Cheng Fang, Ravi Naidu Youhong Tang, Cheng Fang, Cheng Fang, Christopher T. Gibson, Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Ravi Naidu Cheng Fang, Cheng Fang, Ravi Naidu Cheng Fang, Cheng Fang, Cheng Fang, Cheng Fang, Youhong Tang, Ravi Naidu Ravi Naidu Cheng Fang, Ravi Naidu Cheng Fang, Ravi Naidu Cheng Fang, Cheng Fang, Yunlong Luo, Cheng Fang, Yunlong Luo, Ravi Naidu Cheng Fang, Ravi Naidu Cheng Fang, Ravi Naidu Ravi Naidu Ravi Naidu

Summary

Researchers used Raman imaging to characterize both microplastics and nanoplastics generated by cutting PVC pipe, demonstrating that mechanical processing of plastic products releases particles spanning the nano to micro size range with detectable polymer signatures.

Polymers

The characterisation of nanoplastics is much more difficult than that of microplastics. Herewith we employ Raman imaging to capture and visualise nanoplastics and microplastics, due to the increased signal-noise ratio from Raman spectrum matrix when compared with that from a single spectrum. The images mapping multiple characteristic peaks can be merged into one using logic-based algorithm, in order to cross-check these images and to further increase the signal-noise ratio. We demonstrate how to capture and identify microplastics, and then zoom down gradually to visualise nanoplastics, in order to avoid the shielding effect of the microplastics to shadow and obscure the nanoplastics. We also carefully compare the advantages and disadvantages of Raman imaging, while giving recommendations for improvement. We validate our approach to capture the microplastics and nanoplastics as particles released when we cut and assemble PVC pipes in our garden. We estimate that, during a cutting process of the PVC pipe, thousands of microplastics in the range of 0.1-5 mm can be released, along with millions of small microplastics in the range of 1-100 μm, and billions of nanoplastics in the range of <1 μm. Overall, Raman imaging can effectively capture microplastics and nanoplastics.

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