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Combined effect of biochar and soil moisture on soil chemical properties and microbial community composition in microplastic‐contaminated agricultural soil

Soil Use and Management 2022 49 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 45 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Kumuduni Niroshika Palansooriya, Pavani Dulanja Dissanayake, Kumuduni Niroshika Palansooriya, Kumuduni Niroshika Palansooriya, Kumuduni Niroshika Palansooriya, Kumuduni Niroshika Palansooriya, Kumuduni Niroshika Palansooriya, Avanthi Deshani Igalavithana, Kumuduni Niroshika Palansooriya, Pavani Dulanja Dissanayake, Kumuduni Niroshika Palansooriya, Pavani Dulanja Dissanayake, Kumuduni Niroshika Palansooriya, Mee Kyung Sang, Mee Kyung Sang, Yong Sik Ok Yong Sik Ok Avanthi Deshani Igalavithana, Kumuduni Niroshika Palansooriya, Yong Sik Ok Yong Sik Ok Mee Kyung Sang, Avanthi Deshani Igalavithana, Kumuduni Niroshika Palansooriya, Dongyeop X. Oh, Yong Sik Ok Yong Sik Ok Sung Yeon Hwang, Kumuduni Niroshika Palansooriya, Mee Kyung Sang, Cheng Gu, Yong Sik Ok Cheng Gu, Yong Sik Ok Yong Sik Ok Mee Kyung Sang, Cheng Gu, Kumuduni Niroshika Palansooriya, Mee Kyung Sang, Cheng Gu, Mee Kyung Sang, Yong Sik Ok Cheng Gu, Cheng Gu, Jeyoung Park, Yong Sik Ok Yong Sik Ok Cheng Gu, Yong Sik Ok Yong Sik Ok Sung Yeon Hwang, Cheng Gu, Cheng Gu, Yong Sik Ok Yong Sik Ok Yong Sik Ok Cheng Gu, Cheng Gu, Cheng Gu, Dongyeop X. Oh, Sung Yeon Hwang, Yong Sik Ok Sung Yeon Hwang, Kumuduni Niroshika Palansooriya, Avanthi Deshani Igalavithana, Sung Yeon Hwang, Cheng Gu, Avanthi Deshani Igalavithana, Mee Kyung Sang, Cheng Gu, Sung Yeon Hwang, Mee Kyung Sang, Cheng Gu, Cheng Gu, Yong Sik Ok Jeyoung Park, Yong Sik Ok Yong Sik Ok Dongyeop X. Oh, Dongyeop X. Oh, Yong Sik Ok Yong Sik Ok Cheng Gu, Cheng Gu, Cheng Gu, Cheng Gu, Sung Yeon Hwang, Yong Sik Ok Yong Sik Ok Yong Sik Ok Yong Sik Ok Yong Sik Ok Yong Sik Ok Yong Sik Ok Yong Sik Ok Jeyoung Park, Jeyoung Park, Jeyoung Park, Cheng Gu, Cheng Gu, Cheng Gu, Cheng Gu, Dongyeop X. Oh, Yong Sik Ok Cheng Gu, Yong Sik Ok Cheng Gu, Dongyeop X. Oh, Cheng Gu, Yong Sik Ok Kumuduni Niroshika Palansooriya, Cheng Gu, Cheng Gu, Cheng Gu, Cheng Gu, Yong Sik Ok Yong Sik Ok Cheng Gu, Jeyoung Park, Cheng Gu, Cheng Gu, Cheng Gu, Jeyoung Park, Cheng Gu, Yong Sik Ok Yong Sik Ok Dongyeop X. Oh, Cheng Gu, Yong Sik Ok Yong Sik Ok Cheng Gu, Yong Sik Ok Kumuduni Niroshika Palansooriya, Yong Sik Ok

Summary

Biochar was applied to microplastic-contaminated agricultural soil under different moisture conditions, with results showing that biochar improved soil chemical properties and shifted microbial communities in ways that partially offset microplastic-induced degradation. The study suggests biochar as a practical soil amendment to mitigate microplastic impacts in farming systems.

Polymers

Abstract Accumulation of microplastics (MPs) in agricultural environments has caused growing concern in recent years because of its detrimental impacts on soil quality, crop productivity and ecosystem function. This study was conducted to assess the impact of biochar on soil chemical and microbial properties in a MP‐contaminated soil under two moisture regimes. Soil was contaminated with 1% (w/w) of low‐density polyethylene MPs. Four types of standard biochar, that is, oil seed rape (OSR) biochar produced at 550°C (OSR 550) and 700°C (OSR 700) and soft wood pellet (SWP) biochar produced at 550°C (SWP 550) and 700°C (SWP 700), were applied at a rate of 5% (w/w). The control was maintained without MP addition. The samples were incubated in soil with two moisture regimes, that is, at 30% and 70% of the water holding capacity, and the soil chemical and microbiological properties were assessed after 100 days of incubation. OSR biochar application significantly increased soil pH (8.53–8.81) and electrical conductivity (0.51–0.58 dS/m) in both moisture regimes. The effect of biochar application on soil enzyme activity and microbial community composition did not show a clear trend. However, SWP 700 biochar improved soil enzyme activity compared with that of the control and improved bacterial diversity and evenness compared with those of other biochars, which was attributed to the high surface area available for microbial colonization. Low soil moisture content significantly reduced enzyme activity and bacterial richness even with biochar amendment, except for SWP 550 biochar. This study implies the suitability of biochar for improvement of soil quality in MP contaminated soil under both moisture regimes. However, further long‐term studies are needed to get a clear understanding on the impact of different types of biochar on MP‐contaminated soil.

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