References
- T. Iwafune, A. Yokoyama, T. Nagai, T. Horio, Evaluation of the
risk of mixtures of paddy insecticides and their transformation
products to aquatic organisms in the Sakura River, Japan,
Environ. Toxicol. Chem., 30 (2011) 1834–1842.
- K. Kondo, Y. Wakasone, J. Okuno, N. Nakamura, T. Muraoka,
K. Iijima, K. Ohyama, Performance evaluation of lysimeter
experiments for simulating pesticide dissipation in paddy
fields. Part 2: Nursery-box application and foliar application,
J. Pestic. Sci., 44 (2019) 61–70.
- T. Nagai, Ecological effect assessment by species sensitivity
distribution for 68 pesticides used in Japanese paddy fields,
J. Pestic. Sci., 41 (2016) 6–14.
- H. Shigehisa, H. Shiraishi, Biomonitoring with shrimp to detect
seasonal change in river water toxicity, Environ. Toxicol. Chem.,
17 (1998) 687–694.
- R.Y. Wang, Y.Z. Luo, H.J. Chen, Y.P. Yuan, R.L. Bingner,
D. Denton, M. Locke, M. Zhang, Environmental fate and impact
assessment of thiobencarb application in California rice fields
using RICEWQ, Sci. Total Environ., 664 (2019) 669–682.
- T.I. Hayashi, Y. Imaizumi, H. Yokomizo, N. Tatarazako,
N. Suzuki, Ecological risk assessment of herbicides in Japan:
integrating spatiotemporal variation in exposure and effects
using a multimedia model and algal density dynamics models,
Environ. Toxicol. Chem., 35 (2016) 233–240.
- Y. Yabuki, J. Ono, T. Nagai, K. Inao, S. Tanimori, Determining
the suitability of a polar organic chemical integrated sampler
(POCIS) for the detection of pesticide residue in the Ishikawa
River and its tributary in Osaka, Japan, J. Pestic. Sci., 43 (2018)
18–23.
- M.R. Abd Rahman, H. Ahmad, W. Fadhullah, The residual level
of isoprothiolane in paddy field surface water and its acute
toxicity level on freshwater prawn, Macrobrachium lanchesteri,
Paddy Water Environ., 17 (2019) 571–579.
- F. Gosetti, E. Robotti, B. Bolfi, E. Mazzucco, F. Quasso,
M. Manfredi, S. Silvestri, A. Facchi, E. Marengo, Monitoring of
water quality inflow and outflow of a farm in Italian Padana
plain for rice cultivation: a case study of two years, Environ. Sci.
Pollut. Res., 26 (2019) 21274–21294.
- S. Furihata, A. Kasai, K. Hidaka, M. Ikegami, H. Ohnishi,
K. Goka, Ecological risks of insecticide contamination in water
and sediment around off-farm irrigated rice paddy fields,
Environ. Pollut., 251 (2019) 628–638.
- T. Nagai, K. Taya, Estimation of herbicide species sensitivity
distribution using single-species algal toxicity data and
information on the mode of action, Environ. Toxicol. Chem.,
34 (2015) 677–684.
- T. Nagai, Analysis of Species Sensitivety Distribution for
Ecological Risk Assessment of Pesticides, Nattinal Institute for
Agro-Environmental Sciences, Ibaraki, Japan, 2016. Available
at: https://www.naro.affrc.go.jp/archive/niaes/techdoc/ssd/
accessed 11th November 2019, (in Japanese).
- Pesticides Handbook 2016, Japan Plant Protection Assosiation,
Tokyo, Japan, 2016, (in Japanese).
- Pesticides Handbook 2017, Japan Plant Protection Assosiation,
Tokyo, Japan, 2017, (in Japanese).
- Pesticides Handbook 2018, Japan Plant Protection Association,
Tokyo, Japan, 2018, (in Japanese).