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Sampling, Sorting, and Characterizing Microplastics in Aquatic Environments with High Suspended Sediment Loads and Large Floating Debris
Published on: July 28, 2018
Circulation of fibrous microplastic (microfiber) in sewage and sewage sludge treatment processes
Satoshi Nakao1, Kohsuke Akita1, Asako Ozaki2
1Osaka City Research Center of Environmental Science, Osaka, Japan.
Abstract:
The fate of microplastics (MPs) in the sewage treatment process has been investigated worldwide, and novel results have been reported; few studies have also clarified the fate of MPs in the sewage sludge treatment process. Although most MPs in sewage are transferred to sludge, some flow back from the sludge treatment process to the sewage treatment process. Therefore, throughout the sewage treatment plant, the removal rate of MPs may increase via a countermeasure during the sludge treatment process. In this study, samples obtained from sewage and sewage sludge treatments were used to degrade organic matter with hydrogen peroxide. Water sample particles were trapped on Ni filters with 20-μm-sized pores, dried at room temperature and then the MPs were detected and identified by FTIR microscopy. Note that sludge samples were treated with hydrogen peroxide and separated by specific gravity using NaI solution. The concentration of MPs per unit volume was then calculated and the MPs load was estimated using flow rates of water and sludge. Subsequently, we clarified the fate of MPs with sizes of 20 μm or greater in a sewage treatment plant. When the MPs load in the influent sewage is 100%, 12% of the MPs were found to return to the sewage treatment process via the sidestream of the sludge treatment process. Per this observation, it was made evident that MPs are in fact circulating throughout the sewage and sludge treatment processes. MPs in the sidestream mainly consisted of the effluent from the sludge concentration process, and most MPs were thought to be fibrous polyethylene terephthalate (fibrous MPs, i.e. microfibers [MFs]). The results show that MFs circulate throughout the sewage and sludge treatment processes, and for effectively increasing the removal rate of MPs, the removal of MFs proves correspondingly effective during the sludge treatment process.
Insights
Microplastics (MPs) recirculate between sewage and sludge treatment. Targeting microfibers during sludge treatment effectively increases overall MP removal rates in wastewater plants.
Area of Science:
- Environmental Science
- Water Treatment Engineering
- Polymer Science
Background:
- Microplastics (MPs) fate in sewage treatment is studied, but their behavior in sludge treatment is less understood.
- MPs predominantly transfer to sludge, yet some return to the sewage process, impacting overall removal efficiency.
- Understanding MP circulation is key to optimizing wastewater treatment plant (WWTP) performance.
Purpose of the Study:
- To investigate the fate and circulation of microplastics (MPs) within sewage and sludge treatment processes.
- To quantify the return rate of MPs from sludge treatment back to the sewage treatment process.
- To identify the types of MPs most prevalent in the sidestream and their impact on removal efficiency.
Main Methods:
- Samples from sewage and sludge treatment were analyzed using hydrogen peroxide for organic matter degradation.
- Waterborne MPs (≥20 μm) were filtered, dried, and identified via FTIR microscopy.
- Sludge MPs were treated with hydrogen peroxide and separated by specific gravity using NaI solution for quantification and load estimation.
Main Results:
- 12% of influent microplastic load returned to the sewage treatment process via the sludge treatment sidestream.
- Microplastics were confirmed to circulate between sewage and sludge treatment stages.
- Fibrous polyethylene terephthalate (microfibers) dominated MPs found in the sludge effluent, indicating their circulation.
Conclusions:
- Microplastics, particularly microfibers, continuously circulate between sewage and sludge treatment processes.
- Targeting microfibers during sludge treatment is an effective strategy to enhance overall MP removal in WWTPs.
- Implementing countermeasures in sludge treatment can significantly improve the removal rate of microplastics in wastewater treatment.

