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Publications
2017
1. P. Jaikaew, F. Malhat, J. Boulange and H. Watanabe., Aspect of the
degradation and adsorption kinetics of atrazine and metolachlor in andisol soil.
Hellenic Plant Protection Journal 10: 1-14, 2017, DOI 10.1515/hppj-2017-0001
2016
1. Julien Boulange, Dang Quoc Thuyet, Piyanuch Jaikaewa and HirozumiWatanabe*. Simulating the fate
and transport of nursery-box-applied pesticide in rice paddy fields. Pest Manag
Sci, (2016); 72: 1178–1186, DOI 10.1002/ps.4096.
2. Julien Boulange, Dang Quoc Thuyet, Piyanuch Jaikaew, Satoru Ishihara
and Hirozumi Watanabe*, Development and validation of the SPEC model for
simulating the fate and transport of pesticide applied to Japanese upland
agricultural soil. J. Pestic. Sci. 41(4), 152–162 (2016) DOI: 10.1584/jpestics.D16-027
2015
1. Indra Purnama, Farag Malhat, Piyanuch Jaikaew, Hirozumi Watanabe, Sri Noegrohati, Bambang Rusdiarso & Mohamed
Tawfic Ahmed (2015): Degradation profile of azoxystrobin in Andisol soil:
laboratory incubation, Toxicological & Environmental Chemistry, 96(8)
1141-1152. DOI:10.1080/02772248.2015.1015297
2. Junghun Ok, Sok Pisith,
Hirozumi Watanabe, Dang Quoc Thuyet, Julien Boulange, Kazuhiro Takagi.
(2015) Effect of Rice Husk Gasification Residue Application on Herbicide
Behavior in Micro Paddy Lysimeter. Bull Environ Contam Toxicol. 94:791–795 DOI
10.1007/s00128-015-1515-7
3. Phong K. Thai, Yuma Suka, Masaru Sakai, Kazuki Nanko, Jui-Hung Yend and
Hirozumi Watanabe*. Export of
radioactive cesium from agricultural fields under simulated rainfall in
Fukushima. Environ. Sci.: Processes Impacts, 2015, 17, 1157–1163 DOI:
10.1039/c5em00063g
4. Malhat. F., Watanabe. H
and Youssef. A. Degradation profile and safety evaluation of methomyl residues
in tomato and soil. Hellenic Plant Protection Journal 8: 55-62, 2015. DOI
10.1515/hppj-2015-0008
5. Piyanuch Jaikaew & Julien Boulange & Dang Quoc Thuyet
&Farag Malhat & Satoru Ishihara & Hirozumi Watanabe. Potential
impacts of seasonal variation on atrazine and metolachlor persistence in
andisol soil. Environ Monit Assess (2015) 187:760. DOI
10.1007/s10661-015-4986-4
2014
1.
Julien Boulange, Hirozumi Watanabe∗, Keiya Inao, Takashi Iwafune Minghua Zhang, Yuzhou Luo, Jeff Arnold. Development
and validation of a basin scale model PCPF-1@SWAT for simulating fate and
transport of rice pesticides. Journal of Hydrology 517, 146–156 (2014)
DOI: 10.1016/j.jhydrol.2014.05.013
2.
Farag M. Malhat, Hirozumi Watanabe, Naglaa M.
Loutfy & Mohamed Tawfic Ahmed*. Hazard assessment of the neonicotinoid
insecticide thiamethoxam residues in tomato: a prelude to risk assessment
profile. Toxicological & Environmental Chemistry 96(2) 318-327 (2014).
DOI:10.1080/02772248.2014.932522.
2013
1.
Hiroshi Jinguji*, Dang Quoc Thuyet , Tetsuyuki Ue´da ,Hirozumi Watanabe, Effect of
imidacloprid and fipronil pesticide application on Sympetrum infuscatum
(Libellulidae: Odonata) larvae and adults. Paddy and Water Environment
11:277-284 (2013). DOI 10.1007/s10333-012-0317-3.
2.
Dang Quoc Thuyet, Hirozumi Watanabe∗, Takashi
Motobayashi, Junghun Ok. Behavior of nursery-box-applied fipronil and its
sulfone metabolite in rice paddy fields, Agriculture, Ecosystems and
Environment 179, 69– 77 (2013)
3.
Dang Quoc Thuyet, Hirozumi
Watanabe* and Junghun Ok. Effect of pH on the degradation of imidacloprid and
fipronil in paddy water, J. Pestic. Sci. 38(4), 1–5 (2013), DOI:
10.1584/jpestics.D12-080
2012
1.
Thuyet D.Q, B.C. Jorgenson, C.Wissel-Tyson, Watanabe, H., T. M. Young,
Wash off of imidacloprid and fipronil from turf and concrete surfaces using
simulated rainfall, Science of The Total Environment, 414 p.515–524 (2012).
DOI:10.1016/j.scitotenv.2011.10.051,
2.
Thuyet D.Q, Watanabe, H.*, K. Takagi, K. Yamazaki, D.T.T. Nhung,
Behavior of nursery-box-applied imidacloprid in micro paddy lysimeter, Journal
of Pesticide Science,(Advance publication). DOI: 10.1584/jpestics.G11-19,
3. Kazuhiro Takagi*, Ferdinand F. Fajardo, Masumi
Ishizaka, Thai Khanh Phong, Hirozumi
Watanabe, Julien Boulange. Fate and transport of bensulfuron-methyl and
imazosulfuron in paddy fields - Experiments and model simulation. Paddy Water
Environ (2012) 10:139–151. DOI 10.1007/s10333-011-0276-0.
4. Junghun Ok, Nguyen
Hai Doan, Hirozumi Watanabe*,
Dang Quoc Thuyet, Julien Boulange, Behavior of Butachlor and
Pyrazosulfuron-ethyl in Paddy Water Using Micro Paddy Lysimeters under
Different Temperature Conditions in Spring and Summer. Bull. Environ. Contam.
Toxicol. (2012) 89:306–311, DOI 10.1007/s00128-012-0700-1
5. Kondo, K., Boulange, J., Phong, T. K.,
Hiramatsu, K., Inoue T. and Watanabe,
H.*(2012)Probabilistic
assessment of herbicide runoff from Japanese rice paddies: the effects of local
meteorological conditions and site specific water managements, J. Pestic. Sci.
37(4), 312–322, DOI: 10.1584/jpestics.D11-058 .
6. Boulange, J., Kondo, K., Phong, T. K., and
Watanabe, H.*(2012)Analysis of parameter uncertainty and
sensitivity in PCPF-1 modeling for predicting concentrations of rice herbicides,
J. Pestic. Sci. 37(4), 323–332, DOI: 10.1584/jpestics.D12-036
7. Takashi MOTOBAYASHI,* Masaaki GENKA, Thai Khanh PHONG and
Hirozumi WATANABE, Effects of Formulation and Treatment Method of Imidacloprid
in Nursery Boxes on Aquatic Insects Inhabiting Rice Paddy Fields. Jpn. J. Appl.
Entomol. Zool. 56: 169–172( 2012)in Japanese with English abstract. 本林 隆,*, 源河 正明, Thai Khanh Phong, 渡邊 裕純, イミダクロプリドの製剤および施用方法の違いが水田に生息する水生昆虫に及ぼす影響, 日本応用動物昆虫学会誌(応動昆)第56 巻第4 号:169–172
2011
1. Thuyet D.Q. , Watanabe, H.*, K. Yamazaki, K. Takagi,
Photodegradation of imidacloprid and fipronil in
rice-paddy water, Bulletin of
Environmental Contamination and Toxicology, 86
(5), p.548-553.(2011) DOI:
10.1007/s00128-011-0243-x
2. Thuyet, D.Q., Watanabe, H.*, and Motobayashi, T. Effect
of formulations and treatment methods of nursery
boxes applied with insecticide on the behavior
of imidacloprid in rice paddy fields. Journal of
Pesticide Science, Journal
of Pesticide Science, 36 (1) p.9-15, (2011).
3. Phong, T, K., Vu, S. H. Ishihara, S., Hiramatsu, K.
and Watanabe, H*. Exposure
risk
assessment
and
evaluation
of the best management practice
for controlling pesticide runoff from paddy fields.
Part 2: Model simulation for herbicide pretilachlor.
Pest Management Science 67(1):70-76 (2011).
4. Phong, T, K., Hiramatsu, K. and Watanabe, H.*, Simulating
concentration of bensulfuron-methyl in drainage
canal of a paddy block by a rice pesticide model,
Environmental Technology, Selper Ltd.,32(1),
69・1(2011).
2010
1. Thuyet, D. Q. Hien,T. Q., Watanabe,
H.*, Saito, H., Phong, T. K. and
Nishimura, T., Micro
paddy
lysimeter
for
monitoring
solute transport in paddy environment, Paddy
and Water Environment, Springer-Verlag, 8 (3),
p.235-245, (2010).
2. Thuyet,
D.
Q.,
Yamazaki,
K.
Phong, T. K., Watanabe, H., Nhung, D.T.T. and Takagi, K*.,
Liquid
Chromatography
Electrospray
Ionization-Tandem
Mass
Spectrometry Determination of Imidacloprid for
Paddy Water and Soil, Journal of Analytical
Chemistry, Springer, 65(8), (2010).
2009
1. Sunaga, K., Yoshimura, N.,
Hou, H., Win, K. T., Tanaka, H., Yoshikawa, M.,
Watanabe, H., Motobayashi, T.,
Kato, M., Nishimura, T., Toyota, K.* and Hosomi,
M. Impacts
of
Heavy
Application
of
Anaerobically
Digested Slurry to Whole Crop Rice Cultivation
in Paddy Environment
on
Water,
Air
and
Soil Qualities. Jpn. J. Soil Sci. Plant
Nutr., 80, 596- 605, In Japanese with English
abstract. (2009)
2. Nhung, D. T. T., Phong, T. K*. and Watanabe, H.,Determination
of Tricyclazole in Water Using Solid Phase
Extraction and Liquid Chromatography, Journal
of Liquid Chromatography & Related
Technologies, Taylor & Francis, 32,
2712・720, (2009).
3. Phong, T. K., Nhung, D. T. T.,
Motobayashi, T. and Watanabe,
H.*, Behavior
of
Simetryn
and
Thiobencarb
in
the Plough Zone of Rice Fields. Bull
Environ Contam Toxicol., Springer,
83, 794・98, (2009).
4. Phong T. K., Dang T.T. N.,
Motobayashi T., Dang Q. T. and Watanabe
H.*, Fate
and
Transport
of
Nursery-Box-Applied
Tricyclazole
and Imidacloprid in Paddy Fields, Water
Air Soil Pollut., Springer, 202, 3-12, (2009).
5. Phong, T. K., Nhung, D. T. T., Yamazaki, K., Takagi, K. and Watanabe,
H.*, Behavior
of
sprayed
tricyclazole
in
rice paddy lysimeters, Chemosphere, Elsevier B.V., 74, 1085-1089, (2009).
6. Nhung,D. T. T., Phong, T. K., Watanabe. H.*, Iwafune, T.
and Thuyet, D. Q., Simulating
the dissipation of two herbicides using micro
paddy lysimeters, Chemosphere, Elsevier
Ltd., 77 , 1393・399, (2009).
2008
1. Thai, K. P., Dang T. T. N., Yamazaki, K.,
Takagi, K. and Watanabe, H.*,
Simulated
Rainfall
Removal
of
Tricyclazole
Sprayed on Rice Foliage, Bulletin of
Environmental Contamination and Toxicology, Springer., 80,432-442, (2008).
2. Thai, K. P., Watanabe,
H.*, Thai, Q. H., Vu, H. S., Tanaka,
T., Dang T. T. N. and Motobayashi T., Excess
Water
Storage
Depth
・
A Water Management Practice to Control
Simetryn and Thiobencarb Runoff from Paddy
Fields, Journal of Pesticide Science, Pesticide Science Society of Japan, 33(2),
159-165, (2008).
3. Thai, K. P., Watanabe,
H.*, Nishimura, T., Toyoda, K. and Motobayashi, T., Behavior
of
simetryn
and
thiobencarb
in rice paddy lysimeters and the effect of the
excess water storage depth in controlling
herbicide runoff, Weed Biology and Management, Weed Science Society of Japan, 8, 243・49, (2008).
4. Inao, K.*, Watanabe
H., Karpouzas, D. and Capri, E., Simulation
Models of Pesticide Fate and Transport in
Paddy Environment for Ecological Risk
Assessment and Management,Japan Agricultural Research
Quarterly、JIRCAS, 42(1), 13-21,(2008).
2007
1. Watanabe, H.*,
Nguyen, H. M., Komany, S., Vu, H. S., Thai, K. P.,
Tournebize, J. and Ishihara, S., Effect
of water management practice on pesticide behavior
in paddy water,
Agricultural Water Management, Elsevier B.V., 88,
132-140, (2007).
2. Watanabe. H.*, Watermeier, N. L., Steichen J. M., Barnes, P. and Thai, K. P.,Impacts
of tillage and application methods on atrazine and
alachlor losses from upland fields, Weed
Biology and Management, Weed Science Society of
Japan, 7, 44・4, (2007).
2006
1. Watanabe, H.*,
Nguyen, H. M., Komany,
S., Vu, H.S., Asami,
Y., Thai, K. P.
and Tournebize, J., Applicability
of
ELISA
in
pesticide
monitoring
to control runoff of bensulfuron-methyl and
simetryn from paddy fields, Journal of
Pesticide Science, Pesticide Science Society of
Japan, 31(2), 123-129, (2006).
2. Karpouzas,
G.
D.,
Cervelli,
S.,
Watanabe, H., Capri, E*. and
Ferrero, A., Pesticide
exposure
assessment
in
rice
paddies in Europe, A comparative study of existing
mathematical models, Pest Management Science,
Society of Chemical Industry, 62, 624-636, (2006).
3. Vu, H. S., Ishihara, S.
and Watanabe, H.*,
Exposure
risk
assessment
and
evaluation
of
best management practices of pesticide runoff from
paddy fields into rivers. Part I, Multi-scale
paddy watershed monitoring, Pest Management
Science, Society of Chemical Industry, 62,1193・206,
(2006).
4. Phong, K. T., Nguyen, H. M., Komany, S., Vu, H. S. and Watanabe,
H.*, Fate of simetryn and thiobencarb in
Japanese paddy fields with different water
management, Bulletin
of
Environmental
Contamination
and
Toxicology,
Springer, 77, 375-382, (2006).
5. Tournebize, J., Watanabe, H.*, Takagi, K. and
Nishimura, T., The
development of a coupled model (PCPF-SWMS) to
simulate water flow and pollutant transport in
Japanese paddy fields, Paddy and Water
Environment, Springer-Verlag, 4, 39-51, (2006).
6. Watanabe, H.*,
Takagi, K. and Vu, H. S.,
Simulation of mefenacet concentrations in paddy
field by improved PCPF-1 model, Pest Management
Science, Society of Chemical Industry, 62,
20-29, (2006).
2005
1. Vu, H. S., Watanabe, H.*, Takagi, K.: Application
of FAO-56 for evaluating evapotranspiration in
simulation of pollutant runoff from paddy rice
field in Japan, Agricultural
Water Management, 76, 195-210 (2005).
2003
1. Watanabe, H.*,
Grismer. M. E. : Numerical
modeling of diazinon transport through inter-row
vegetative filter strips, Journal of Environmental
Management, 69, 157-168 (2003).
2001
1. Watanabe, H.*,
Grismer. M. E. : Diazinon
transport through inter-row vegetative filter
strips: Micro-ecosystem modeling, Journal of
Hydrology, 247, 183-199 (2001).
2000
1. Watanabe H*.
and Takagi. K. Prediction
of
pretilachlor
concentrations
in
paddy water and paddy surface soil by PCPF-1 model
and the model application for controlling
pesticide losses from paddy fields.
Transactions of JSIDRE 209:43-50 Japanese with
English abstract. (2000).
2. Watanabe, H.*,
Takagi,
K.:
A
simulation model for pesticide concentrations in
paddy water and surface soil. II. Model validation
and application, Environmental Technology, 21,
1393-1404 (2000)
3. Watanabe, H.*,
Takagi,
K.:
A
simulation model for pesticide concentrations in
paddy water and surface soil. I. Model development,
Environmental Technology, 21, 1379-1391 (2000)
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