We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Effects of conventional and biodegradable microplastics at comparable environmental levels on pesticide degradation in soil
No summary available — this paper's abstract is not included in the open metadata provided by the publisher. Learn why →
More Papers Like This
Source, Environmental Behavior and Ecological Impact of Biodegradable Microplastics in Soil Ecosystems: A Review
AI summary Read the abstract
This review finds that biodegradable plastics do not fully break down as commonly assumed—they fragment into microplastics that alter soil chemistry, disrupt microbial communities, harm soil organisms, and amplify the toxicity of co-occurring pollutants. The widespread adoption of biodegradable plastics as an environmental solution may be creating a new category of soil microplastic contamination with its own distinct ecological risks.
Effects of Conventional and Biodegradable Microplastics on Soil Physicochemical Properties and Microorganisms
AI summary Read the abstract
A four-month soil incubation experiment compared conventional polyethylene (PE) and biodegradable polylactic acid (PLA) microplastics, finding both alter soil organic carbon, nitrogen availability, enzyme activity, and microbial community composition — with PLA causing distinct effects due to its degradability. The finding that biodegradable plastics still significantly disrupt soil microbiology challenges assumptions about their environmental safety and suggests replacing conventional plastics with PLA does not eliminate ecological harm.
Degradation and remediation of microplastics in soil.
AI summary Read the abstract
Researchers reviewed current approaches to degrading and remediating microplastics in soil, examining both biological and physicochemical strategies for reducing persistent plastic particle accumulation in terrestrial environments.
Micro, Nano, and Biodegradable Plastics: Hidden Threats to Plant Health and Soil Function
AI summary Read the abstract
Researchers reviewed how microplastics, nanoplastics, and biodegradable plastic particles disrupt plant health and soil function in agroecosystems, finding that these contaminants impair nutrient uptake, photosynthesis, and redox balance while inducing oxidative stress, genotoxic effects, and soil property degradation with food safety implications.
Review of Soil Microplastic Degradation Pathways and Remediation Techniques
AI summary Read the abstract
Researchers reviewed methods for degrading and removing microplastics from soil, including pyrolysis, biodegradation, and photocatalytic breakdown, finding that in-situ photocatalysis shows particular promise for soil remediation. Soils may actually contain more microplastic than the oceans, yet cleanup strategies for soil remain far less developed than those for aquatic systems.
Research digests by email
When a large batch of papers lands in the Atlas, we read through it and send a short write-up of what stood out.