使用δ13C技术在土壤中降解常规、生物可降解和氧可降解的微塑料

IF 1.2 4区 农林科学 Q4 SOIL SCIENCE Soil Research Pub Date : 2023-09-21 DOI:10.1071/sr23140
Yuxin Huo, Feike A. Dijkstra, Malcolm Possell, Andrew Zi Dong, Balwant Singh
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引用次数: 0

摘要

大量的常规塑料废物,特别是微塑料(MPs)的形式,由于其有限的降解而积累在土壤中。氧可降解和生物可降解塑料也导致了土壤中的MP污染。在这项研究中,我们研究了一种传统塑料(水果和蔬菜(F&V)袋)、两种可生物降解塑料(垃圾箱内衬和地膜)和一种氧降解塑料(饮用吸管)的降解情况。方法将这些塑料(5mm)混合到土壤中,在实验室37±1℃条件下培养185 d。由于研究塑料的δ13C值与实验土壤的δ13C值相差≥10‰,因此采用δ13C技术测定了四种塑料的co2 -碳(C)矿化。在培养后期,Bin liner的C矿化率最高(5.7%),其次是地膜(4.1%)、秸秆(0.4%)和F&V袋(0.3%)。除地膜外,其余3种塑料对土壤有机碳(SOC)的影响均为正。傅里叶变换红外光谱和扫描电镜分析与C矿化数据一致。结论本研究采用可靠实用的δ13C方法测定了土壤中各种MPs的降解,这是该研究领域所缺乏的。各种MPs对SOC的启动效应是一个重要的发现。由于缺乏对土壤有机碳启动效应的考虑,可能高估了土壤中塑料的矿化作用。
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Degradation of conventional, biodegradable and oxo-degradable microplastics in a soil using a δ13C technique
Context A significant amount of conventional plastics waste, especially in the form of microplastics (MPs), has accumulated in soils due to its limited degradation. Oxo-degradable and biodegradable plastics have also contributed to MP contamination in soils. Aims In this study, we examined the degradation of a conventional plastic [fruit and vegetable (F&V) bag], two biodegradable plastics (bin liner and mulch film) and an oxo-degradable plastic (drinking straw). Methods These plastics (5 mm) were mixed into a soil and incubated in the laboratory at 37 ± 1°C for 185 days. The CO2-carbon (C) mineralisation of the four plastics was determined using a δ13C technique, because the difference in the δ13C values of studied plastics and the experimental soil was ≥10‰. Key results Bin liner showed the greatest C mineralisation (5.7%), followed by mulch film (4.1%), straw (0.4%) and F&V bag (0.3%) at the end of the incubation period. All plastics, except the mulch film for 23–77 days of incubation, caused a positive priming effect on soil organic carbon (SOC). Fourier transform infra-red spectroscopy and scanning electron microscopy analyses were consistent with the C mineralisation data. Conclusions This study determines the degradation of various MPs in soil using a reliable and practical δ13C method, which has been lacking in this field of study. The priming effect of various MPs on SOC is a significant finding. Implications The lack of consideration of priming effect on SOC may overestimate the mineralisation of plastics in soil.
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来源期刊
Soil Research
Soil Research SOIL SCIENCE-
CiteScore
3.20
自引率
6.20%
发文量
35
审稿时长
4.5 months
期刊介绍: Soil Research (formerly known as Australian Journal of Soil Research) is an international journal that aims to rapidly publish high-quality, novel research about fundamental and applied aspects of soil science. As well as publishing in traditional aspects of soil biology, soil physics and soil chemistry across terrestrial ecosystems, the journal welcomes manuscripts dealing with wider interactions of soils with the environment. Soil Research is published with the endorsement of the Commonwealth Scientific and Industrial Research Organisation (CSIRO) and the Australian Academy of Science.
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