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yŠw‰ï”­•\z@

1. ‰iˆä—³–çC’r“c—¹•ãC”ÑŽRˆê•½ 2011: “yë’†•úŽË«•¨Ž¿‚Ì—LŒø…•ª‚ւ̈ÚsŽŽŒ±, “y땨—Šw‰ï‘å‰ï(ŽD–yŽs).

2. ’Òç‘C³–؈ê^C”ÑŽRˆê•½ 2011: …—n«ƒKƒX‚ð—p‚¢‚½“yëƒKƒXŠgŽU‚Ì‘ª’è, “y땨—Šw‰ï‘å‰ï(ŽD–yŽs).

3. ˜a“c˜Ð^C”ÑŽRˆê•½ 2011: ÔŠOüCO2•ªÍŠí‚ð—p‚¢‚½“yëƒKƒXCO2”Z“x•ªÍŒn‚Ì\’z, “y땨—Šw‰ï‘å‰ï(ŽD–yŽs).



yŒ´’˜˜_•¶z@

1. ”ÑŽRˆê•½C‹{ú±‹BC’†–ì­ŽCˆä–{”Ž”ü 2000: ’n‰º…ˆÊ•Ï“®‚É”º‚¤“D’Y“y‚ÌŽûkE–c’£‚ɂ‚¢‚Ä,”_“y˜_W, 205, 1-11.

2. Iiyama I Fujimoto T, Nagata O, Hasegawa S 2005: Formation of a groundwater table by trench irrigation and evapotranspiration in a drained peatland, Soil Sci. Plant Nutr., 51, 313-322.

3. Iiyama I, Hasegawa S 2005: Gas diffusion coefficient of undisturbed peat soils. Soil Sci. Plant Nutr., 51, 431-435.

4. ”ÑŽRˆê•½C“¡–{•qŽ÷C‰i“cCC’·’JìŽüˆê 2006: Ž¼Œ´A¶•œŒ³‚Ì‚½‚߂̃gƒŒƒ“ƒ`ŸóŸò‚É‚æ‚é’n‰º…ˆÊ§Œä, ”_‹Æ“y–ØŠw‰ïŽ, 74, 591-594.

5. ”ÑŽRˆê•½ 2006: “D’Y’n‚É‚¨‚¯‚é“yëƒKƒXŠgŽU“Á«, “yë‚Ì•¨—«, 103, 79-85.

6. “¡–{•qŽ÷C”ÑŽRˆê•½Câˆä•‘C‰i“cCC’·’JìŽüˆê 2006: ‚‘wŽ¼Œ´‚É‚¨‚¯‚錴A¶‚ÆN“üA¶‚Ìö”­ŽU‘¬“x‚Ì”äŠr, “yë‚Ì•¨—«, 103, 39-47.

7. ”ÑŽRˆê•½C¼XŒ˜Ž¡C“¡Œ´‰pŽiC’†“‡‘×O 2007: ”_’n˜A½ŒnW…ˆæ‚É‚¨‚¯‚éó‘w’n‰º…‚Ì…•¶“Á«‰ðÍ|‰h—{‰–—Þ‚ÌŽü•Ó…Œn‚Ö‚Ì—¬oƒŠƒXƒN•]‰¿‚ÉŒü‚¯‚Ä|, “yë‚Ì•¨—«, 107, 17-26.

8. Iiyama I, Hasegawa S 2009: In-situ CO2 profiles with complementary monitoring of O2 in a drained peat layer, Soil Sci. Plant Nutr., 55, 26-34.

9. Iiyama I, Osawa K 2010: Surface O2 influx related to soil O2 profiles in a drained tropical peatland. Soil Sci. Plant Nutr., 56, 517-520.

10. Iiyama I, Osawa K, Nagata O 2012: Soil O2 profile affected by gas diffusivity and water retention in a drained peat layer. Soils and Foundations, 52, 49-58.

 

 

 

y‘Û‰ï‹c˜_•¶z

1. Iiyama, I., Imoto, H, Mizoguchi, M. and Miyazaki, T.CDistinction between mechanical and biological subsidence of peatlandCTrans. 17th World Cong. of Soil Science, Bangkok, 923_1-923_8C(2002)

2. Iiyama, I., Mizoguchi, M. and Miyazaki, T.CModeling of peatland subsidence due to groundwater lowering, Proc. 2nd Asian Conf. on Unsaturated Soils, UNSAT-ASIA 2003, Osaka, 403-406C(2003)

3. Iiyama, I., Matsumori, K., Fujiwara, H. and Nakajima, Y., Groundwater flow analysis in an agricultural head water catchment for evaluating the fates of leached nitrogen., in "Nitrogen Load in Agro-Ecosystems and its Outflow to Water Bodies: Analyses with Monitoring and Modeling", The 3rd international workshop of the Japan-Korea research cooperation Tsukuba, Japan, 2006.3,

4. Nakajima, Y., Iiyama, I., Kim MK, Park KL, and Roh KA, Elucidation of the mechanism on indirect emission of greenhouse gases associated with the spillage of nutrient solutes. In Final Report: Japan-Korea Cooperative Research Project on Water Quality Conservation in Agro-Ecosystem and Assessment of Risk to the Environment, ed. Sugahara K, 42-54 (2009).

 

y‚»‚Ì‘¼z

1. ‹{ú±‹BC’†–ì­ŽC”~“cˆÀŽ¡C””Ÿº’CºCˆÉ“¡ƒ—YC¼‘º‘ñC‰–‘ò¹C‘O‘º—f”VCì–{Œ’CÄ“¡L—²C_’J‹M•¶C”ÑŽRˆê•½Cˆä–{”Ž”üC”ü‰S“D’Y’n‚ÌŽ‘±“I”_‹Æ¶ŽY‚Æ“yëE…•ªE‘å‹Cƒ_ƒCƒiƒ~ƒbƒNƒX|•¨Ž¿ˆÚ“®‚ðƒtƒB[ƒ‹ƒhƒTƒCƒGƒ“ƒX‚ÉŒ©‚é|C…—˜‰ÈŠwC236, 29-40C(1997)

2. ”ÑŽRˆê•½C‚‘wŽ¼Œ´A¶•œŒ³‚Ì‚½‚߂̃gƒŒƒ“ƒ`ŠÁŸò‚É‚æ‚é“D’Y’n‚Ì’n‰º…ˆÊ§ŒäC‘æ44‰ñ”_“yŠw‰ï“y땨—Œ¤‹†•”‰ïŒ¤‹†W‰ï-ŠÂ‹«‚ÌC•œ¥•Û‘S‚Æ“y땨—-u‰‰W˜^C1-6C(2005)

3. ŠC–ì«FCì–{Œ’C¬¼“oŽuŽqCí“cŠxŽuC”ÑŽRˆê•½, “D’Y“y‚Ì’E…Žûk‰ß’ö‚É‚¨‚¯‚éƒKƒXŠgŽUŒW”‘ª’èC‘æ14‰ñ’n‰º…E“y뉘õ‚Æ‚»‚Ì–hŽ~‘Îô‚ÉŠÖ‚·‚錤‹†W‰ïu‰‰—vŽ|WC106-109C(2008)