Institute of Biogeochemistry and Pollutant Dynamics , ETH Zurich , 8092 Zurich , Switzerland.
Environ Sci Technol. 2019 Mar 5;53(5):2304-2315. doi: 10.1021/acs.est.8b05208. Epub 2019 Feb 14.
The agricultural use of conventional, polyethylene-based mulch films leads to the accumulation of remnant film pieces in agricultural soils with negative impacts for soil productivity and ecology. A viable strategy to overcome this accumulation is to replace conventional with biodegradable mulch films composed of polymers designed to be degraded by soil microorganisms. However, understanding polymer biodegradation in soils remains a significant challenge due to its dependence on polymer properties, soil characteristics, and prevailing environmental conditions. This perspective aims to advance our understanding of the three fundamental steps underlying biodegradation of mulch films in agricultural soils: colonization of the polymer film surfaces by soil microorganisms, depolymerization of the polymer films by extracellular microbial hydrolases, and subsequent microbial assimilation and utilization of the hydrolysis products for energy production and biomass formation. The perspective synthesizes the current conceptual understanding of these steps and highlights existing knowledge gaps. The discussion addresses future research and analytical advancements required to overcome the knowledge gaps and to identify the key polymer properties and soil characteristics governing mulch film biodegradation in agricultural soils.
传统的聚乙烯基覆盖膜在农业中的应用导致残余膜片在农业土壤中积累,对土壤生产力和生态产生负面影响。克服这种积累的可行策略是用由设计为可被土壤微生物降解的聚合物制成的可生物降解覆盖膜取代传统覆盖膜。然而,由于其依赖于聚合物特性、土壤特性和流行的环境条件,理解聚合物在土壤中的生物降解仍然是一个重大挑战。本观点旨在增进我们对农业土壤中覆盖膜生物降解的三个基本步骤的理解:土壤微生物对聚合物膜表面的定殖、胞外微生物水解酶对聚合物膜的解聚,以及随后微生物对水解产物的同化和利用,以产生能量和生物量。该观点综合了对这些步骤的当前概念理解,并突出了现有知识空白。讨论涉及克服知识空白和确定控制农业土壤中覆盖膜生物降解的关键聚合物特性和土壤特性所需的未来研究和分析进展。