期刊文献+

Mechanisms of photochemical release of dissolved organic matter and iron from resuspended sediments 被引量:1

原文传递
导出
摘要 Photochemical reactions can alter the transformation of sedimentary organic matter into dissolved organic matter(DOM)and affect its ultimate fate in water ecosystems.In the present study,the photorelease of DOM and Fe from resuspended lake sediments was investigated under different O_(2)and NO_(3)-concentration conditions to study the mechanisms of DOM and Fe photorelease.The amount of photoreleased Fe,which ranged from 0.22 to 0.70μmol/L,was significantly linearly correlated with the amount of photoreleased DOM.O_(2)and NO_(3)-could promote the photochemical release of DOM and Fe,especially during the initial 4 h irradiation.In general,the order of the photorelease rates of DOM and Fe under different conditions was as follows:NO_(3)-/aerobic>aerobic≈NO_(3)-/anaerobic>anaerobic.The photorelease rates of DOM and Fe were higher for the initial 4 hr irradiation than these for the subsequent 8 hr irradiation.The photorelease of DOM and Fe is thought to proceed via direct photodissolution and indirect processes.The relative contributions of indirect processes(>60%)was much greater than that of direct photodissolution(<40%).The photoproduced H 2 O_(2)under aerobic and anaerobic conditions indicated that hydroxyl radicals(·OH)are involved in the photorelease of DOM.Using·OH scavengers,it was found that 38.7%,53.7%,and 77.6%of photoreleased DOM was attributed to·OH under anaerobic,aerobic,and NO_(3)-/aerobic conditions,respectively.Our findings provide insights for understanding the mechanisms and the important role of·OH in the DOM and Fe photorelease from resuspended sediments.
出处 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2021年第6期288-295,共8页 环境科学学报(英文版)
基金 supported by the National Science Funds for Creative Research Groups of China(No.51421006) the Fundamental Research Funds for the Central Universities(Nos.B200204033 and B2018B08414) the National Key Plan for Research and Development of China(No.2016 YFC0401703) the National Natural Science Foundation of China(No.51579073)。
  • 相关文献

参考文献1

二级参考文献15

  • 1Arakaki, T., Fujimura, H., Hamdun, A.M., Okada, K., Kondo, H., Oornori, T., Tanahara, A., Taira, H., 2005. Simultaneous measurement of hydrogen peroxide and Fe species (Fe (II) and Fe(tot)) in Okinawa Island seawater: Impacts of red soil pollution.J.Oceanogr, 61, 561-568.
  • 2Fujiwara, K., Ushiroda, T., Takeda, K., Kumamoto, Y., Tsubota, H., 1993. Diurnal and seasonal distribution of hydrogen peroxide in seawater of Seto Inland Sea. Geochem. J. 27, 103-115.
  • 3Helms, J.R., Mao, J., Schmidt-Rohr, K., Abdulla, H., Mopper, K., 2013. Photochemical flocculation of terrestrial dissolved organic matter and iron. Geochim. Cosmochim. Acta 121, 398-413.
  • 4Hopwood, M.J., Statham, P.J., Skrabal, S.A., Willey, J.D., 2015. Dissolved iron(II) ligands in river and estuarine water. Mar. Chern. 173, 173-182.
  • 5Kondo, Y., Takeda, S., Furuya, K., 2012. Distinct trends in dissolved Fe speciation between shallow and deep waters in the Pacific Ocean. Mar. Chern. 134-135, 18-28.
  • 6Mostofa, K.M.G., Sakugawa, H., 2009. Spatial and temporal variations and factors controlling the concentrations of hydrogen peroxide and organic peroxides in rivers. Environ. Chern. 6, 524-534.
  • 7Mostofa, K.M.G., Honda, Y., Sakugawa, H., 2005. Dynamics and optical nature of fluorescent dissolved organic matter in river waters in Hiroshima prefecture. Geochem. J. 39, 257-271.
  • 8Mostofa, K.M.G., Yoshioka, T., Mottaleb, A., Vione, D., 2013. Photobiogeochemistry of organic matter: Principles and practices in water environments. Springer, Berlin Heidelberg, pp.1-849.
  • 9Nakatani, N., Veda, M., Shindo, H., Takeda, K., Sakugawa, H., 2007. Contribution of the photo-Fenton reaction to hydroxyl radical formation rates in river and rain water samples. Anal. Sci. 23, 1137-1142.
  • 10Richard, L.E., Peake, B.M., Rusak, S.A., Cooper, W.J., Burritt, D.J., 2007. Production and decomposition dynamics of hydrogen peroxide in freshwater. Environ. Chem. 4, 49-54.

共引文献3

同被引文献7

引证文献1

二级引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部