level of manure fermentation. The pelleting method assures a
nitrogen content in the poultry manure pellet of 0.04 kg
kg
−1 or more, and it has high added value.
Acknowledgements The editors of the chapter thank Dr. Hideyuki
Umemoto, Mr. Yoshitaka Mukai, Dr. Yusuke Takata, and Prof. Akio
Morita for assistance in the preparation of the manuscript.
References
Aichi Prefecture (2016) Recommendation of fertilizers and manure
application.
http://www.pref.aichi.jp/soshiki/nogyo-keiei/
0000085287.html (Jan 2018). (in Japanese)
Aiura H (2014) Landslide by snow erosion. In: Heavy snowy regional
forestry technology development council (ed). To create forest of
broad-leaved species. J-FIC, Tokyo, pp 188 (in Japanese)
Arai S, Watanabe A et al (1988) Pedochemical studies on Ohnohara
peat with special reference to its properties related to Ando soils.
Pedologist 32:16–25 (in Japanese with English summary)
Biodiversity Center of Japan, Ministry of the Environment (2018) State
of vegetation obtained in the fourth national surveys on the natural
environment conducted from 1989–1993. Ministry of the Environment. http://www.biodic.go.jp/vg_map/vg_html/jp/html/vg_map.
html. Accessed 5 Mar 2018
Forestry Agency (2015) To create forestry work roads in steep slopes
and vulnerable areas. Forestry Agency, Tokyo, p 78 (in Japanese)
Forest Experimental Station, Forest Bureau (1968) Forest soil profile
photo collection book, 2nd. Ministry of Agriculture and Forestry,
Tokyo, p 84 (in Japanese)
Fukui Agricultural Experiment Station (1979–2011) Report on the soil
conservation program (in Japanese)
Gifu Prefectural Forestry Policy Division (2017) Statistical yearbook of
forest and forestry in Gifu Prefecture (the 2015 fiscal year). Gifu
Prefectural Forestry Policy Division, Gifu, p 148 (in Japanese)
Hara M (2017) Study on pelleting technology of livestock manure
compost. Jap J Soil Sci Plant Nutr 88:383–386 (in Japanese)
Hara M (2018) Study on pelleting technology of livestock manure
compost. Chubu Dojyou Hiryou Kenkyu 107:2–6 (in Japanese)
Hara M, Furuichi Y, Obata J (2004) Influence of the pelleting condition
of livestock manure using a uniaxial extruder to the fertility effect of
pelleted manure. Jpn J Soil Sci Plant Nutr 75:223–227 (in Japanese)
Higashino T (2006) Component materials of HM-1 tephra from
Shin-Hakusan volcano. Bull Hakusan Nat Conserv Cen. Ishikawa
33:1–6 (in Japanese)
Hosokawa K, Sasaki H, Kogi Y (2012) One example of the rice
cultivation method which reduced nitrogenous fertilizer by
winter-flooded paddy field and analysis of its factors. Jpn J Soil
Sci Plant Nutr 83:700–702 (in Japanese)
Imori H, Makida Y et al (2002) Change of the paddy soil characters and
desirable direction of soil and fertility management in Fukui
Prefecture. Bull Fukui Agric Exp Stn 39:17–28 (in Japanese with
English summary)
Inagaki H, Kusumoto Y (2014) Assessment of GIAHS in Shizuoka: the
traditional tea-grass integrated system. J Resour Ecol 5:398–401
Inoue K (2016) Growth, yield and quality of rice in winter-flooded
paddy field. Agric Hort 91:160–166 (in Japanese)
Japan Meteorological Agency (2017) Past weather data. Japan meteorological agency. http://www.data.jma.go.jp/gmd/risk/obsdl/#.
Accessed 7 Jun 2017
Kamishima T, Takeuchi A (2016) Late Quaternary geomorphology of
the Tonami plain and activity of the Tonami-heiya fault zone,
Toyama Prefecture, central Japan. Int J Geosci 7:962–976
Kanda M (2015) Improvement of filling materials for drainage in the
drained paddy field of the cultivation of Japanese apricot (Prunus
mume Sieb. et Zucc.). Bull Fukui Agric Exp Stn 52:9–16 (in
Japanese with English summary)
Kanda T, Takata Y et al (2016) New soil maps of Hokuriku and Chubu
district (1:200,000)-Comparison the comprehensive soil classification system of Japan first approximation with unified soil classification system of Japan (2nd approximation). Pedologist 60:14–31
(In Japanese with English summary)
Kasuya M (2007) Availability of nitrogen from 15 N-labeled green
manure in yellow soil. Res Bull Aichi Agric Res Ctr 39:83–87 (in
Japanese with English summary)
Kasuya M, Hiroto S (2010) Effect of green manure on nitrogen balance
in a cabbage field. Res Bull Aichi Agric Res Ctr 42:141–146 (in
Japanese with English summary)
Kasuya M, Banzai K et al (2010) Nitrogen and phosphorus runoffs into
a stream from an upland basin with high stocking density in a
red-yellow soil area. Jpn J Soil Sci Plant Nutr 81:481–488 (in
Japanese with English summary)
Kato T (2002) Geology of central Honshu. In: Editorial board of
geology of the Japanese Archipelago (ed) Geology of the Japanese
Archipelago, CD-ROM version, Maruzen Publishing, Tokyo (in
Japanese)
Kato Y (1975) Age of parent material of soil in the Chubu Region. In:
Editorial board of Chubu Branch, Japanese Society of Soil Science
and Plant Nutrition (ed) Soil and Agriculture in the Chubu Region,
Conference Steering Committee of Japanese Society of Soil Science
and Plant Nutrition in 1975, pp 28–29. Mie (in Japanese)
Kimura I (1973a) Pleistocene sediments and geomorphic development
in the west coast area of Ise Bay, Japan: Part 2. Bull Aichi Univ
Educ (Nat. Sci.) 21:125–150
Kimura I (1973b) Pleistocene sediments and geomorphic development
in the west coast area of Ise Bay, Japan: Part 3. Bull Aichi Univ
Educ (Nat. Sci.) 22:109–131
Kinki-Chugoku Regional Forest Office (2018) Ishikawa District Forest
Office. Ministry of Agriculture, Forestry and Fisheries. http://www.
rinya.maff.go.jp/kinki/isikawa/. Accessed 3 May 2018
Kitamura H (2007) Lowland soils and wet-rice farming by using
delayed release fertilizer in Noubi plain. In: Editorial board of
Japanese Society of Pedology (ed) Love soil and protect soil,
Hakubunkan Shinsha Publishers, Tokyo, pp 188–191(in Japanese)
Kondo N (1967) On vertical zonality of mountain soils in the southern
part of the Japan South Alps. Pedologist 11:153–169 (in Japanese
with English summary)
Kosugi K (2014) Adjustment service of forest, how to adjust the
environment? In: The Japanese Forest Society (ed) Forestry as the
liberal arts, pp 97–105. Bun’eido publishing, Tokyo (in Japanese)
Kudo T, Uno F (2012) Standards for reducing the amount of
phosphorous fertilizer application for paddy fields based on the
fertility of the soil. Report of research on agriculture and fishery in
Ishikawa Prefecture 14:32 (in Japanese)
Kuribayashi S (1956) Sand dune around Cape Omaezaki. Chiri
(Geography) 1:264–271 (in Japanese)
Machida H (1999) The stratigraphy, chronology and distribution of
distal marker-tephras in and around Japan. Glob Planet Change
21:71–94
Makita N, Kuno C et al (2014) Fertilizer application rate and nutrient
uptake in the major vegetable cultivation area in Aichi Prefecture,
Japan. Jpn J Soil Sci Plant Nutr 85:236–240 (in Japanese)
Matsui T, Kato Y (1962) Notes on palaeopedology of red soils in
Japan. Daiyonki Kenkyu (Quat. Res.) 2:161–179 (in Japanese with
English summary)
Matsumoto M (2005) Agriculture, soil science and plant nutrition in
Shizuoka Prefecture. Jp J Soil Sci Plant Nutr 76:673–674 (in
Japanese)
8 Chubu Region (Hokuriku/Tokai)
297
nitrogen content in the poultry manure pellet of 0.04 kg
kg
−1 or more, and it has high added value.
Acknowledgements The editors of the chapter thank Dr. Hideyuki
Umemoto, Mr. Yoshitaka Mukai, Dr. Yusuke Takata, and Prof. Akio
Morita for assistance in the preparation of the manuscript.
References
Aichi Prefecture (2016) Recommendation of fertilizers and manure
application.
http://www.pref.aichi.jp/soshiki/nogyo-keiei/
0000085287.html (Jan 2018). (in Japanese)
Aiura H (2014) Landslide by snow erosion. In: Heavy snowy regional
forestry technology development council (ed). To create forest of
broad-leaved species. J-FIC, Tokyo, pp 188 (in Japanese)
Arai S, Watanabe A et al (1988) Pedochemical studies on Ohnohara
peat with special reference to its properties related to Ando soils.
Pedologist 32:16–25 (in Japanese with English summary)
Biodiversity Center of Japan, Ministry of the Environment (2018) State
of vegetation obtained in the fourth national surveys on the natural
environment conducted from 1989–1993. Ministry of the Environment. http://www.biodic.go.jp/vg_map/vg_html/jp/html/vg_map.
html. Accessed 5 Mar 2018
Forestry Agency (2015) To create forestry work roads in steep slopes
and vulnerable areas. Forestry Agency, Tokyo, p 78 (in Japanese)
Forest Experimental Station, Forest Bureau (1968) Forest soil profile
photo collection book, 2nd. Ministry of Agriculture and Forestry,
Tokyo, p 84 (in Japanese)
Fukui Agricultural Experiment Station (1979–2011) Report on the soil
conservation program (in Japanese)
Gifu Prefectural Forestry Policy Division (2017) Statistical yearbook of
forest and forestry in Gifu Prefecture (the 2015 fiscal year). Gifu
Prefectural Forestry Policy Division, Gifu, p 148 (in Japanese)
Hara M (2017) Study on pelleting technology of livestock manure
compost. Jap J Soil Sci Plant Nutr 88:383–386 (in Japanese)
Hara M (2018) Study on pelleting technology of livestock manure
compost. Chubu Dojyou Hiryou Kenkyu 107:2–6 (in Japanese)
Hara M, Furuichi Y, Obata J (2004) Influence of the pelleting condition
of livestock manure using a uniaxial extruder to the fertility effect of
pelleted manure. Jpn J Soil Sci Plant Nutr 75:223–227 (in Japanese)
Higashino T (2006) Component materials of HM-1 tephra from
Shin-Hakusan volcano. Bull Hakusan Nat Conserv Cen. Ishikawa
33:1–6 (in Japanese)
Hosokawa K, Sasaki H, Kogi Y (2012) One example of the rice
cultivation method which reduced nitrogenous fertilizer by
winter-flooded paddy field and analysis of its factors. Jpn J Soil
Sci Plant Nutr 83:700–702 (in Japanese)
Imori H, Makida Y et al (2002) Change of the paddy soil characters and
desirable direction of soil and fertility management in Fukui
Prefecture. Bull Fukui Agric Exp Stn 39:17–28 (in Japanese with
English summary)
Inagaki H, Kusumoto Y (2014) Assessment of GIAHS in Shizuoka: the
traditional tea-grass integrated system. J Resour Ecol 5:398–401
Inoue K (2016) Growth, yield and quality of rice in winter-flooded
paddy field. Agric Hort 91:160–166 (in Japanese)
Japan Meteorological Agency (2017) Past weather data. Japan meteorological agency. http://www.data.jma.go.jp/gmd/risk/obsdl/#.
Accessed 7 Jun 2017
Kamishima T, Takeuchi A (2016) Late Quaternary geomorphology of
the Tonami plain and activity of the Tonami-heiya fault zone,
Toyama Prefecture, central Japan. Int J Geosci 7:962–976
Kanda M (2015) Improvement of filling materials for drainage in the
drained paddy field of the cultivation of Japanese apricot (Prunus
mume Sieb. et Zucc.). Bull Fukui Agric Exp Stn 52:9–16 (in
Japanese with English summary)
Kanda T, Takata Y et al (2016) New soil maps of Hokuriku and Chubu
district (1:200,000)-Comparison the comprehensive soil classification system of Japan first approximation with unified soil classification system of Japan (2nd approximation). Pedologist 60:14–31
(In Japanese with English summary)
Kasuya M (2007) Availability of nitrogen from 15 N-labeled green
manure in yellow soil. Res Bull Aichi Agric Res Ctr 39:83–87 (in
Japanese with English summary)
Kasuya M, Hiroto S (2010) Effect of green manure on nitrogen balance
in a cabbage field. Res Bull Aichi Agric Res Ctr 42:141–146 (in
Japanese with English summary)
Kasuya M, Banzai K et al (2010) Nitrogen and phosphorus runoffs into
a stream from an upland basin with high stocking density in a
red-yellow soil area. Jpn J Soil Sci Plant Nutr 81:481–488 (in
Japanese with English summary)
Kato T (2002) Geology of central Honshu. In: Editorial board of
geology of the Japanese Archipelago (ed) Geology of the Japanese
Archipelago, CD-ROM version, Maruzen Publishing, Tokyo (in
Japanese)
Kato Y (1975) Age of parent material of soil in the Chubu Region. In:
Editorial board of Chubu Branch, Japanese Society of Soil Science
and Plant Nutrition (ed) Soil and Agriculture in the Chubu Region,
Conference Steering Committee of Japanese Society of Soil Science
and Plant Nutrition in 1975, pp 28–29. Mie (in Japanese)
Kimura I (1973a) Pleistocene sediments and geomorphic development
in the west coast area of Ise Bay, Japan: Part 2. Bull Aichi Univ
Educ (Nat. Sci.) 21:125–150
Kimura I (1973b) Pleistocene sediments and geomorphic development
in the west coast area of Ise Bay, Japan: Part 3. Bull Aichi Univ
Educ (Nat. Sci.) 22:109–131
Kinki-Chugoku Regional Forest Office (2018) Ishikawa District Forest
Office. Ministry of Agriculture, Forestry and Fisheries. http://www.
rinya.maff.go.jp/kinki/isikawa/. Accessed 3 May 2018
Kitamura H (2007) Lowland soils and wet-rice farming by using
delayed release fertilizer in Noubi plain. In: Editorial board of
Japanese Society of Pedology (ed) Love soil and protect soil,
Hakubunkan Shinsha Publishers, Tokyo, pp 188–191(in Japanese)
Kondo N (1967) On vertical zonality of mountain soils in the southern
part of the Japan South Alps. Pedologist 11:153–169 (in Japanese
with English summary)
Kosugi K (2014) Adjustment service of forest, how to adjust the
environment? In: The Japanese Forest Society (ed) Forestry as the
liberal arts, pp 97–105. Bun’eido publishing, Tokyo (in Japanese)
Kudo T, Uno F (2012) Standards for reducing the amount of
phosphorous fertilizer application for paddy fields based on the
fertility of the soil. Report of research on agriculture and fishery in
Ishikawa Prefecture 14:32 (in Japanese)
Kuribayashi S (1956) Sand dune around Cape Omaezaki. Chiri
(Geography) 1:264–271 (in Japanese)
Machida H (1999) The stratigraphy, chronology and distribution of
distal marker-tephras in and around Japan. Glob Planet Change
21:71–94
Makita N, Kuno C et al (2014) Fertilizer application rate and nutrient
uptake in the major vegetable cultivation area in Aichi Prefecture,
Japan. Jpn J Soil Sci Plant Nutr 85:236–240 (in Japanese)
Matsui T, Kato Y (1962) Notes on palaeopedology of red soils in
Japan. Daiyonki Kenkyu (Quat. Res.) 2:161–179 (in Japanese with
English summary)
Matsumoto M (2005) Agriculture, soil science and plant nutrition in
Shizuoka Prefecture. Jp J Soil Sci Plant Nutr 76:673–674 (in
Japanese)
8 Chubu Region (Hokuriku/Tokai)
297
