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植物中有机磷酸酯的生物累积与排放影响大气磷循环。

Bioaccumulation and emission of organophosphate esters in plants affecting the atmosphere's phosphorus cycle.

作者信息

Long Shengxing, Hamilton Paul B, Fu Bo, Xu Jing, Han Luchao, Suo Xinhao, Lai Yuqin, Shen Guofeng, Xu Fuliu, Li Bengang

机构信息

College of Urban and Environmental Sciences, Sino-French Institute for Earth System Science, Laboratory for Earth Surface Processes, Peking University, Beijing, 100871, China.

Canadian Museum of Nature, P.O. Box 3443, Station D, Ottawa, Ontario K1P 6P4, Canada.

出版信息

Environ Pollut. 2023 Feb 1;318:120803. doi: 10.1016/j.envpol.2022.120803. Epub 2022 Dec 8.

Abstract

The imbalance of atmospheric, terrestrial and aquatic phosphorus budgets remains a research conundrum and global concern. In this work, the uptake, distribution, bioaccumulation and emission of organophosphate esters (OPEs) by clove trees (Syzygium aromaticum), lemon trees (Citrus limon) and cape jasmine trees (Gardenia jasminoides var. fortuniana) was investigated as conduits for phosphorus transfer or sinks and sources. The objective was to assess the role OPEs in soils play as atmospheric phosphorus sources through plant bioaccumulation and emission. Results demonstrated OPEs in experimental soil plots ranging from 0.01 to 81.0 ng g dry weight, were absorbed and transported through plants to the atmosphere. The total emission of OPEs varied greatly from 0.2 to 588.9 pg g L h, with a mean of 47.6 pg g L h. There was a negative linear relationship between the concentrations of total phosphorus and four OPEs, tri-iso-butyl phosphate, tri-n-butyl phosphate, tris (2-chloroisopropyl) phosphate and tripentyl phosphate. Trimethyl phosphate levels were positively correlated with total nitrogen, and the concentrations of tri-iso-butyl phosphate, tri-n-butyl phosphate, tris (2-chloroisopropyl) phosphate and tripentyl phosphate decreased along with available potassium in leaves after 72 h. There was a significantly positive linear relationship between higher emission concentrations of OPEs and the emission factor of OPEs concentration (F = 4.2, P = 0.002), with lower emissions of OPEs and the bioaccumulation of OPEs in leaves (F = 4.8, P = 0.004). OPEs releases to the atmosphere were enriched in aerosols, and participate in atmospheric chemical reactions like photolysis, thereby affecting the phosphorus balance and cycling in the atmosphere.

摘要

大气、陆地和水体磷收支的不平衡仍然是一个研究难题和全球关注的问题。在这项工作中,研究了丁香树(Syzygium aromaticum)、柠檬树(Citrus limon)和栀子树(Gardenia jasminoides var. fortuniana)对有机磷酸酯(OPEs)的吸收、分布、生物累积和排放,将其作为磷转移的渠道或汇与源。目的是评估土壤中的OPEs通过植物生物累积和排放作为大气磷源所起的作用。结果表明,实验土壤地块中OPEs的含量为0.01至81.0 ng g干重,被植物吸收并输送到大气中。OPEs的总排放量差异很大,从0.2至588.9 pg g L h,平均为47.6 pg g L h。总磷浓度与四种OPEs(磷酸三异丁酯、磷酸三正丁酯、磷酸三(2-氯异丙基)酯和磷酸三戊酯)之间存在负线性关系。磷酸三甲酯水平与总氮呈正相关,72小时后,叶片中磷酸三异丁酯、磷酸三正丁酯、磷酸三(2-氯异丙基)酯和磷酸三戊酯的浓度随有效钾含量的降低而降低。OPEs较高的排放浓度与OPEs浓度排放因子之间存在显著的正线性关系(F = 4.2,P = 0.002),而OPEs较低的排放量与叶片中OPEs的生物累积之间也存在显著的正线性关系(F = 4.8,P = 0.004)。OPEs向大气中的释放富集在气溶胶中,并参与光解等大气化学反应,从而影响大气中的磷平衡和循环。

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