We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
Characterization and source apportionment of microplastics in Indian composts
Summary
This study characterized microplastics in municipal solid waste composts from Kochi and Kozhikode, India, finding elevated concentrations of microplastics along with associated heavy metal accumulation. The results highlight compost as a pathway for microplastic and metal co-contamination of agricultural soils.
Microplastics (MP), small plastic particles under 5 mm, are pollutants known to carry heavy metals in ecosystems. Composts are a significant source of soil microplastics. This study examined MSW composts from Kochi and Kozhikode in India for microplastic concentrations and heavy metals' accumulation thereon. Microplastics were isolated using zinc chloride density separation, with Fenton's reagent used for organic matter oxidation. Resin types were identified using FTIR analysis that showed the presence of PE, PP, PS, nylon, PET, and allyl alcohol copolymer. In Kozhikode's compost, the average concentration of microplastics was 840 ± 30 items/kg, while Kochi had 1600 ± 111 items/kg, mainly polyethylene films. PE was the most prevalent resin, comprising 58.3% in Kozhikode and 73.37% in Kochi. Heavy metal analysis of MP showed significant concentrations of lead, cadmium, zinc, copper, and manganese adsorbed on the surface of microplastics. The concentrations of heavy metals in the MP before Fenton oxidation ranged from 1.02 to 2.02 times the corresponding concentrations in compost for Kozhikode and 1.23 to 2.85 times for Kochi. Source apportionment studies revealed that 64% of microplastics in Kozhikode and 77% in Kochi originated from single-use plastics. Ecological risk indices, PLI and PHI, showed that composts from both locations fall under hazard level V. The study revealed that compost from unsegregated MSW can act as a significant source of microplastics and heavy metals in the soil environment, with single-use plastics contributing major share of the issue.
Sign in to start a discussion.
More Papers Like This
Microplastics identification and quantification in the composted Organic Fraction of Municipal Solid Waste
Researchers quantified microplastics in composted organic municipal solid waste from five facilities, finding contamination levels that raise concerns about compost quality and the potential transfer of microplastics to agricultural soils through organic waste recycling.
Biowaste Compost Amendment is a Source of Microplastic Pollution in Agricultural Soils
Researchers found microplastics in Indian agricultural soils amended with biowaste compost, with concentrations increasing in proportion to years of compost application. Polypropylene was the dominant polymer type, showing that compost amendments can introduce microplastics into farmland soils.
Determination and quantification of microplastics in compost
Researchers analyzed commercially available compost products to determine how much microplastic contamination they contain. They found microplastics in all tested composts, with fibers and fragments being the most common forms, primarily made of polyethylene and polypropylene. The findings raise concerns that applying commercial compost to agricultural land may be an overlooked pathway for introducing microplastics into soil.
A systematic review of the occurrence of microplastics in compost: Understanding the abundance, sources, characteristics and ecological risk
Researchers reviewed 19 global studies and found microplastics in virtually all types of compost — including those made from animal manure, sewage sludge, and municipal waste — with concentrations reaching up to 288,000 particles per kilogram in some samples. Since compost is widely applied to farmland, these findings highlight a significant but overlooked pathway for microplastics to enter soils and the food chain.
Comprehensive understanding of microplastics in compost: Ecological risks and degradation mechanisms
This review examines how microplastics enter soil through compost made from household waste, sewage sludge, and agricultural waste. Microplastics in compost can disrupt soil structure, reduce fertility, and persist in the environment long after application. Since compost is widely used in farming, this represents a significant pathway for microplastics to contaminate agricultural soil and potentially enter the food chain.