TY - JOUR
T1 - Global inventory of atmospheric fibrous microplastics input into the ocean
T2 - An implication from the indoor origin
AU - Liu, Kai
AU - Wang, Xiaohui
AU - Song, Zhangyu
AU - Wei, Nian
AU - Ye, Haoda
AU - Cong, Xin
AU - Zhao, Longwei
AU - Li, You
AU - Qu, Liming
AU - Zhu, Lixin
AU - Zhang, Feng
AU - Zong, Changxing
AU - Jiang, Chunhua
AU - Li, Daoji
N1 - Publisher Copyright:
© 2020 Elsevier B.V.
PY - 2020/12/5
Y1 - 2020/12/5
N2 - Atmospheric transport could be a significant pathway for inland microplastics (MPs, with size<5 mm) to the ocean in addition to catchment runoff and coastal discharge. However, atmospheric input of MPs to the ocean is rarely quantified. To address this issue, transport of atmospheric MPs from source to sink was studied in the Asia-Pacific region during nine cruises from October 2018 to September 2019. Both deposited atmospheric MPs (DAMPs) and suspended atmospheric MPs (SAMPs) were collected, ranging from 23.04 n/(m2·d) to 67.54 n/(m2·d), and 0 to 1.37 n/m3, respectively. Size composition revealed that atmospheric deposition of MPs originating in terrestrial regions seems inadequate and insufficient to quantify the atmospheric input to the ocean. In addition, combined with aerodynamic modelling, for the first time, we estimated that 7.64–33.76 t of fibrous atmospheric MPs was globally generated in 2018, which is 3 % and 31 % of riverine input MPs of The Yangtze River and The Pearl River in terms of mid-point mass, respectively. The increasing load of ingestible plastics from sea air could have a far-reaching impact on marine ecosystem.
AB - Atmospheric transport could be a significant pathway for inland microplastics (MPs, with size<5 mm) to the ocean in addition to catchment runoff and coastal discharge. However, atmospheric input of MPs to the ocean is rarely quantified. To address this issue, transport of atmospheric MPs from source to sink was studied in the Asia-Pacific region during nine cruises from October 2018 to September 2019. Both deposited atmospheric MPs (DAMPs) and suspended atmospheric MPs (SAMPs) were collected, ranging from 23.04 n/(m2·d) to 67.54 n/(m2·d), and 0 to 1.37 n/m3, respectively. Size composition revealed that atmospheric deposition of MPs originating in terrestrial regions seems inadequate and insufficient to quantify the atmospheric input to the ocean. In addition, combined with aerodynamic modelling, for the first time, we estimated that 7.64–33.76 t of fibrous atmospheric MPs was globally generated in 2018, which is 3 % and 31 % of riverine input MPs of The Yangtze River and The Pearl River in terms of mid-point mass, respectively. The increasing load of ingestible plastics from sea air could have a far-reaching impact on marine ecosystem.
KW - Atmosphere
KW - Ecology
KW - Microplastics
KW - Ocean
KW - Transport
UR - https://www.scopus.com/pages/publications/85087064448
U2 - 10.1016/j.jhazmat.2020.123223
DO - 10.1016/j.jhazmat.2020.123223
M3 - 文章
C2 - 32947683
AN - SCOPUS:85087064448
SN - 0304-3894
VL - 400
JO - Journal of Hazardous Materials
JF - Journal of Hazardous Materials
M1 - 123223
ER -