H2020Individual fellowship2022–2025

SoPla_Fate · Fate and impact of past, present and future consumer plastic on soil

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2022-09-01 → 2025-08-31
EU contribution
€252,876
Participants
2
Scheme
MSCA-IF

Lines connect the coordinator with its partners.

Results in brief

Fate and impact of past, present and future consumer plastic on soil

Soil provides 98.8% of our food, making healthy soils vital for our food security. By 2050, we need to increase food production by 70% to meet the needs of a growing population. However, our soils have been under pressure and are degrading. One vital service soil provides is the contaminant sink and filtration to protect groundwater. However, this means that soil stores and potentially accumulates pollutants including microplastics. The potential accumulation of microplastic in agricultural soil has recently raised concerns because of the increasing intentional use of plastics and unintentional entry of microplastics into soil due to farming practises. Practices like plastic mulching, where soil is covered with plastic to retain moisture and control weeds and the accidental introduction of plastics through biosolid applications, where composted biosolids are used as fertilizer, are contributing to microplastic entry into soil. Once the microplastic has been introduced into the soil they do not break down easily and can stay in the soil for many years. Based on this persistence, widespread use of plastic and recent results in soil eco toxicology and eco system effects, plastic has been proposed as driver of global change. However, even basic information such as plastic mass concentrations or its fate and impact on soil health are widely unknown. Therefore, this project aimed to assess the significance of micro/plastic pollution in agricultural soil to understand its relevance to impact soil health through addressing the following specific objectives: (1) Quantify soil profile mass concentrations of plastic for their polymer type; (2) Develop/modify and validate a comprehensive analytical workflow additive fingerprinting/screening und potential identification employing LC and GC UHRMS systems; (3) Determine additive partitioning and leaching behaviour at different stages of polymer aging; (4) Quantification of plastic impact on vital soil processes. Based on the findings of this project, it is evident that microplastics persist in the topsoil of all examined agricultural soils. However, the concentrations of microplastics detected were lower than anticipated, underscoring the importance of incorporating soil management practices into research methodologies and result interpretations. Further this highlights the need for standardized protocols to ensure comparability of results across studies. These findings further highlight the impact of “best practice” and legislation covering soil management practices, such as fertilizer application control and quality control of organic fertilizers in protecting soil health and minimize microplastic contamination.

Data: CORDIS, © European Union

Project objective

Soil provides us with 98.8% of our food and by 2050 we need to increase the production by 70%; yet our soils are degrading. Soils were recently recognised as a sink for plastic. This is particularly of concern for agricultural soil health due to extensive and increasing plastic use in farming such as plastic mulching and unintentional plastic introduction through biosolid applications. Based on plastic persistence, widespread use and recent results in soil eco toxicology and eco system effects, plastic has been proposed as driver of global change. However, critical data to clarify the impact of plastic on soil health is currently lacking. This project employs a multidisciplinary approach to determine the extent of plastic contamination in agricultural soils as well as the fate of plastic and its impact on soil processes while providing training and knowledge gain that will be transferred to the EU and further exploited. SoPla_Fate will address the current knowledge lack by (1) quantifying the polymer distribution and concentration in different agricultural soils. Polymer properties including size, shape and surface area will be quantified for representative samples. (2) State-of-the-art analytical instruments and workflows will be employed for the fingerprinting, screening and identification of plastic additives. (3) The workflows will further be employed to determine the leaching and partitioning behaviour of additives from plastic and aged plastic into the soil environment. (4) The impact of different plastic aspects such as polymer type, additive composition and aging induced changes to polymers and plastic on vital soil processes will be quantified. The outcomes from SoPla_Fate will advance our assessment of potential soil health impairment though plastic pollution highlighting the importance of an integrated multidisciplinary research connecting plastic fate in soil with its impact.

Original text from CORDIS.

Participants

  • FREIE UNIVERSITAET BERLIN · BerlinCoordinatorGermany
  • THE UNIVERSITY OF QUEENSLAND · BrisbaneAustralia

Links

Data: CORDIS, © European Union