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首页> 外文期刊>The Science of the Total Environment >Distribution of low-density microplastics in the mollisol farmlands of northeast China
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Distribution of low-density microplastics in the mollisol farmlands of northeast China

机译:中国东北地区低密度微观塑料的分布

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Plastic pollution, especially microplastic (MP), which is small in size (<5 mm) is one of the main environmental problems in global ecosystems and can cause harm to organisms. Low-density plastic has been widely used in farmlands, but the factors that influence Low-density microplastic (LDMP) distribution are still not clear. In this study, both field investigations at small and large scales and laboratory simulations, and both geostatistics and classical statistics were used to examine LDMP distributions and the main driving factors in farmland soils. The results showed the following. (1) Only polyethylene (PE) of LDMP was found in farmland. (2) The means of LDMP weight content (LDMP-W), LDMP abundance (LDMP-AB) and LDMP area content (LDMP-A) were 0.27 mg kg~(-1), 107 N kg~(-1) and 12.6 mm~2 kg~(-1) in mol-lisol farmlands, respectively. (3) LDMPs were positively correlated with macroplastics (MAP) at the large scale, while any correlations were not obvious at small scales. (4) LDMPs were not only transported by surface soil-water loss (>96%) but were also transported by infiltration through soil pores (<4%). (5). LDMP loss increased with soil bulk density (BD) increasing, and low BD tends to increase LDMP loss by interflow. (6) LDMP distribution was not only influenced by water movement but also maybe influenced by microorganisms and crops. For LDMP pollution control, the focus on both surface soil-water loss and the infiltration processes is necessary, and a combination of the functions of microorganisms and crops probably accelerate LDMP decomposition in soils.
机译:塑料污染,尤其是尺寸小(<5 mm)的微塑料(MP)是全球生态系统的主要环境问题之一,并且可能对生物造成伤害。低密度塑料已广泛用于农田,但影响低密度微塑料(LDMP)分布的因素仍然尚不清楚。在这项研究中,使用小型和大规​​模和实验室模拟的现场调查以及地质数据和古典统计数据来检查LDMP分布以及农田土壤中的主要驾驶因子。结果表明以下。 (1)仅在农田中发现LDMP的聚乙烯(PE)。 (2)LDMP重量含量(LDMP-W),LDMP丰度(LDMP-AB)和LDMP面积含量(LDMP-A)的装置为0.27mg kg〜(-1),107 n kg〜(-1)和分别在Mol-Lisol Farmlands中12.6 mm〜2千克〜(-1)。 (3)LDMP与大规模的宏观形成塑料(MAP)正相关,而在小尺度上任何相关性并不明显。 (4)LDMP不仅由表面土壤 - 水损失(> 96%)而运输,而且还通过土壤毛孔(<4%)渗透而运输。 (5)。 LDMP损耗随着土壤堆积密度(BD)的增加而增加,低BD趋于通过交互增加LDMP损耗。 (6)LDMP分布不仅受水运动的影响,而且可能受微生物和作物的影响。对于LDMP污染控制,需要对表面土壤 - 水损失和渗透过程的关注,并且微生物和作物的功能的组合可能加速土壤中的LDMP分解。

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