A−1 農業分野における温暖化緩和技術の開発

2015年

  執筆者 課題名 発表 Vol.:ページ
A Asada K. et al. redicting nitrogen leaching with the modified LEACHM model: validation in soils receiving long-term application of animal manure composts. Nutrient Cycling in Agroecosystems Volume 102, Issue 2, pp 209-225
DOI: 10.1007/s10705-015-9690-9.
F 藤田裕ら 黒ボク土ナシ園における豚糞堆肥連用が土壌全炭素含量と二酸化炭素発生に及ぼす影響 日本土壌肥料学雑誌 86: 29-32
K Kajiura M., et al. Optimal thermolysis conditions for soil carbon storage on plant residue burning: modeling the trade-off between thermal decomposition and subsequent biodegradation. Journal of Environmental Quality 44(1): 228-235, doi: 10.2134/jeq2014.06.0279.
M Mori A., et al. Effect of dairy manure type and supplemental synthetic fertilizer on methane and nitrous oxide emissions from a grassland in Nasu, Japan. Soil Science and Plant Nutrition 61: 347-358
M Mori A., et al. Methane and nitrous oxide emissions due to excreta returns from grazing cattle in Nasu, Japan Grassland Science 61:736-746
M Mori A., et al. Effect of dairy manure type on the carbon balance of mowed grassland in Nasu, Japan: comparison between manure slurry plus synthetic fertilizer plots and farmyard manure plus synthetic fertilizer plots. Soil Science and Plant Nutrition 61:736-746
O Okubo T., et al. Elevated atmospheric CO2 levels affect community structure of rice root-associated bacteria Frontiers in Microbiology 6: 2-33
Y Yamashita T.,et al. Mitigation of nitrous oxide (N2O) emission from swine wastewater treatment in an aerobic bioreactor packed with carbon fibers Animal Science Journal 86(3): 358-368

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2014年

  執筆者 課題名 発表 Vol.:ページ
B Bellingrath-Kimura S.D., et al. Differences in the spatial variability among CO2, CH4 and N2O gas fluxes from an urban forest soil in Japan. AMBIO, A journal of the Human Environment (AMBI) DOI: 10.1007/s13280-014-0521-z.
F 藤田裕ら 黒ボク土ナシ園における豚糞堆肥の窒素肥効を考慮した施肥法の窒素収支改善効果 日本土壌肥料学雑誌 85: 175-184
H Hayashi K., et al. Trace gas and particle emissions from open burning of three cereal crop residues: Increase in residue moistness enhances emissions of carbon monoxide, methane, and particulate organic carbon Atmospheric Environment 95: 36-44
H Hirono Y., et al. Effects of application of lime nitrogen and dicyandiamide on nitrous oxide emissions from green tea fields Soil Science and Plant Nutrition 60(2): 276-285
K 河原弘文ら 脱窒反応におけるN2O生成特性. 日本水処理生物学会第51回大会. 日本水処理生物学会誌. 別巻 第34号: 45.
K 北川巌ら 暗渠整備による炭素貯留技術の温暖化緩和ポテンシャル 農業農村工学会誌 82(8): 641-644
M Matsuura S.,
et al.
Seasonal carbon dynamics and the effects of manure application on carbon budget of a managed grassland in a temperate, humid region in Japan. Grassland Science doi:10.1111/grs.12042
M Mitsumori M.,
et al.
Effect of cashew nut shell liquid on metabolic hydrogen flow on bovine rumen fermentation Animal Science Journal 85(3): 227-22
N 長嶋協ら カシューナッツ殻液 飼料特性を理解して上手に設計に活かす、デーリィジャパン社 第9章、pp. 408-414
O Okada H.,
et al.
Elevated temperature has stronger effects on the soil food web of a flooded paddy than does CO2. Soil Biology and Biochemistry doi:10.1016/j.soilbio.
2013.12.029
O Okubo T., et al. Effects of elevated carbon dioxide, elevated temperature, and rice growth stage on the community structure of rice root-associated bacteria. Microbes Environ. 29: 184-190.
O 大谷文博ら 飼料タンパク質の給与水準と 第一胃分解性の違いが泌乳牛の尿量に及ぼす効果. 畜産草地研究所報告 4号: 23-35.
S Shimizu M.,
et al.
Farmyard manure application mitigates greenhouse gases emissions from managed grasslands in Japan Oelberman M (ed.), Sustainable Agroecosystems in Climate Change Mitigation, Wageningen Academic Publisher 115-132,
doi:10.3920/978-90
-8686-788-2_7
S Shimizu M.,
et al.
Mitigation effect of farmyard manure application on greenhouse gas emissions from managed grasslands in Japan A.E. Hartemink and K. McSweeney (eds.), Soil Carbon, Progress in Soil Science, Springer International Publishing Switzerland 313-323,
doi:10.1007/978-3-319
-04084-4_33
S 真貝拓三ら カシューナッツ殻液を利用した乳用牛からのメタン低減技術 栄養生理研究会会報 58: 45-51
S 下田星児ら 畑地における温室効果ガス排出削減および吸収源機能向上の最新技術 北海道の農業気象 66: 17-22
S 白戸康人 農業からの温室効果ガス発生のメカニズムと軽減策 農耕と園藝 69(8): 62-65
S 杉浦裕義 果樹園の土壌炭素の長期変動 中国・四国の農業気象 27: 20-21
T 瀧本裕士ら マイクロ水力発電用螺旋水車の動力特性と効率化に関する研究 農業農村工学会論文集 290: 1-8
T 瀧本裕士ら フィリピンにおける灌漑施設を利用したマイクロ水力発電 国際農林業協力 36(3): 20-27
  Tokida T. et al. Fully automated, high-throughput instrumentation for measuring the δ13C value of methane and application of the instrumentation to rice paddy samples. Rapid Commun Mass Spectrom. 28: 2315-2324. doi:10.1002/rcm.7016
T 土屋いづみ 鶏糞乾燥処理施設における温室効果ガス発生量の測定 日本畜産学会報 85(1): 61-69
T 塚本康貴ら 水田への疎水材暗渠の整備による温室効果ガス排出抑制の効果 農業農村工学会誌 82(8): 629-632
W Wickland K.P. et al. Chapter 5. Inland wetland mineral soils, 2013 supplement to the 2006 IPCC guidelines for national greenhouse gas inventories: Wetlands. 2013 Supplement to the 2006 IPCC guidelines for national greenhouse gas inventories: Wetland, IPCC-Task Force on National Greenhouse Gas Inventories.  
Y Yagasaki Y. et al. Assessment on the rates and potentials of soil organic carbon sequestration in agricultural lands in Japan using a process-based model and spatially explicit land-use change inventories – Part 1: Historical trend and validation based on nation-wide soil monitoring Biogeosciences 11: 4429-4442, doi: 10.5194/bg-11-4429-2014
Y Yagasaki Y. et al. Assessment on the rates and potentials of soil organic carbon sequestration in agricultural lands in Japan using a process-based model and spatially explicit land-use change inventories – Part 2: Future potentials Biogeosciences 11: 4443-4457, doi: 10.5194/bg-11-4443-2014
Y Yano M.,
et al.
Isotopomer analysis of production, consumption and soil-to-atmosphere emission processes of N2O at the beginning of paddy field irrigation. Soil Biology and Biochemistry 70: 66-78
Y 安田知子ら 養豚農家の密閉縦型堆肥化施設および木材チップ脱臭施設からの環境負荷ガス発生 日本畜産学会報 85(4): 553-563
Y Yonemura S.,
et al.
Soil respiration, N2O, and CH4 emissions from an Andisol under conventional-tillage and no-tillage cultivation for 4 years Biology and Fertility of Soils 50: 63-74

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2013年

  執筆者 課題名 発表 Vol.:ページ
A Asada K.,
et al.
Modifying the LEACHM model for process-based prediction of nitrate leaching from cropped Andosols. Plant and Soil 373: 609-625
E Eguchi S. et al. Wellbore-wall compression effects on monitored groundwater levels and qualities. Groundwater 51(3): 452–460
F Freibauer A.,
et al.
Methods for estimation, measurement, monitoring and reporting of LULUCF activities under articles 3.3 and 3.4 (Section 2.9, 2.10, 2.11, and 2.12) 2013 Revised Supplementary Methods and Good Practice Guidance Arising from the Kyoto Protocol 132-167
F 福本泰之 家畜排せつ物の堆肥化で生ずる一酸化二窒素ガスの発生と微生物制御法 JATAFFジャーナル 1(2): 12-15
F Fumoto T.,
et al.
Application of a process-based biogeochemistry model, DNDC-Rice, on a rice field under free-air CO2 enrichment (FACE). Journal of Agricultural Meteorology 69(3): 173-190
H Hayano M.,
et al.
National-scale estimation of methane emission from paddy fields in Japan: Database construction and upscaling using a process-based biogeochemistry model. Soil Science and Plant Nutrition 59: 812-823
H 林健太郎ら 気候変動は稲作と水田生態系にどのような影響を及ぼすか 新潟アグノロミー,
新潟県土壌肥料懇話会
49: 11-21
H Hayashi K.,
et al.
Amelioration of the reactive nitrogen flux calculation by a day/night separation in weekly mean air concentration measurements. Atmospheric Environment 79: 462-471
H Hayashi K.,
et al.
Free-air CO2 enrichment (FACE) net nitrogen fixation experiment at a paddy soil surface under submerged conditions. Nutrient Cycling in Agroecosystems doi:10.1007/s10705
-013-9595-4
H Hirata R.
et al.
Carbon dioxide exchange at four intensively managed grassland sites across different climate zones of Japan and the influence of manure application on ecosystem carbon and greenhouse gas budgets. Agricultural and Forest Meteorology 177: 57-68
doi: 10.1016/j.agrformet
.2013.04.007
I Iwata H.,
et al.
Cross-validation of open-path and closed-path eddy covariance techniques for observing methane fluxes. Boundary-Layer Meteorology 151: 95-118,
doi: 10.1007/s10546-013-9890-2
K Katayanagi N.,
et al.
Validation of the DNDC-Rice model to discover problems in evaluating the nitrogen balance at a paddy-field scale for single-cropping of rice. Nutrient Cycling in Agroecosystems doi:10.1007/s10705-013-9561-1
K Kitagawa I. et al. Evaluation of technologies for sequestering carbon in agricultural land by using organic filter underdrains Paddy and Water Environment 12: 287-294, doi: 10.1007/s10333-013-0410-2
K 北川巌 有機質資材を活用した低コスト土層改良技術 最新農業技術 5、農山漁村文化協会、東京. 89-98
K 北川巌 農地の排水性を改良する低コストな補助暗渠工法 ARIC情報 112: 16-22
K Koga N. Nitrous oxide emissions under a four-year crop rotation system in northern Japan: impacts of reduced tillage, composted cattle manure application and increased plant residue input Soil Science and Plant Nutrition 59: 56-68,
doi: 10.1080/00380768
.2012.733870
M Maeda K.,
et al.
Mitigation of greenhouse gas emission from the cattle manure composting process by use of a bulking agent Soil Science and Plant Nutrition 59: 96-106,
doi: 10.1080/00380768
.2012.733868
M Mishima S.,
et al.
Changes in soil available-nutrient stores and relationships with nutrient balance and crop productivity in Japan. Soil Science and Plant Nutrition 59(3): 371-379
M Mishima S.,
et al.
Phosphorus conventional use, reduction potential, and possibility of self-sufficiency during food and feed production in Japan Food and Environment II, WIT Press, Southampton, Boston 170: 185-194
M Mitsumori M. et al. Effect of cashew nut shell liquid on metabolic hydryogen flow on bovine rumen fermentation. Animal Science Journal 85(3): 227-232. doi: 10.1111/asj.12133.
O 荻野暁史 アミノ酸添加低蛋白質飼料給与技術による養豚排せつ物管理からの温室効果ガス排出削減 畜産技術 699: 12-15
O 荻野暁史 アミノ酸添加低タンパク質飼料による地球温暖化緩和−栄養管理で排泄物管理からの温室効果ガスを減らす− 養豚の友 537: 23-26
O Ogino A.,
et al.
Life cycle assessment of Japanese pig farming using low-protein diet supplemented with amino acids Soil Science and Plant Nutrition 59: 107-118,
doi: 10.1080/00380768
.2012.730476
O Ogino A.,
et al.
LCA/CFP as tools for cattle productivity and environmental impact assessment. International training program on greenhouse gas measurement for carbon footprint of products assessment in ruminant livestock. Khon Kaen, Thailand.  
O Ono K., et al. Environmental controls on fallow carbon dioxide flux in a single-crop rice paddy, Japan Land Degradation & Development doi: 10.1002/ldr.2211
O Osada T. GHG measurement and regulation measures concerning the manure management in dairy farming. World Dairy Summit 2013  
S Shimizu M.
et al.
The effect of fertilizer and manure application on CH4 and N2O emissions from managed grasslands in Japan. Soil Science and Plant Nutrition 59: 69-86
doi:10.1080/00380768
.2012.733926
S Shimoda S.,
Koga N.
Rapid change in soil C storage associated with vegetation recovery after cessation of cultivation Soil Science and Plant Nutrition 59: 27-34,
doi: 10.1080/00380768
.2012.736342
S Shimoda S.,
Sakurai Y.
Effect of flooding management on carbon content of soil and plant after cessation of paddy rice cultivation Applied Ecology and Environmental Research 11: 513-524
T 瀧本裕士 地域資源を生かしたマイクロ水力発電の普及に向けて 農村振興 765: 6-7
T 瀧本裕士 農業用水を利用したマイクロ水力発電 油空圧技術 52(11): 38-42
T 瀧本裕士 農業用水を利用したマイクロ水力発電 応用水文(報告編) 25: 71-80
T 瀧本裕士 農業用小水力発電の現状と課題 畑地農業 650: 5-9
T Tokida T.,
et al.
The contribution of entrapped gas bubbles to the soil methane pool and their role in methane emission from rice paddy soil in free-air [CO2] enrichment and soil warming experiments.  Plant and Soil 364(1-2): 131-143,
doi: 10.1007/s11104-
012-1356-7
T Tsujimoto S.,
et al.
Greenhouse gas reduction and improved sustainability of animal husbandry using amino acids in swine, poultry feeds Anim. Sci. J. 84: 409-415
W Wagai R., et Linking temperature sensitivity of soil organic matter decomposition to its molecular structure, accessibility, and microbial physiology Global Change Biology 19-4: 1114-1125
Y Yamane T. Denitrifying bacterial community in manure compost pellets applied to an Andosol upland field Soil Science and Plant Nutritiony 59: 572-579
doi: 10.1080/00380768
.2013.813832

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2012年

  執筆者 課題名 発表 Vol.:ページ
E 江口定夫 水田および浅層地下水中の脱窒による環境浄化 土壌の物理性 120: 29-38
E 江口定夫 水文土壌学に関する第2回国際会議(7月ドイツ)参加報告 農業と環境 151
E Eguchi S.,
et al.
Wellbore-wall compression effects on monitored groundwater levels and qualities. Ground Water 51(3): 452-60,
doi: 10.1111/j.1745-6584.2012.00979.x
H Hirono Y.,
Nonaka K.
Nitrous oxide emissions from green tea fields in Japan: contribution of emissions from soil between rows and soil under the canopy of tea plants Soil Science and Plant Nutrition 58: 384-392,
doi: 10.1080/00380768
.2012.686434
I 井上博道ら 有機物長期連用ブドウ園地の土壌中全炭素濃度と全窒素濃度の経年変化 日本土壌肥料学雑誌 83: 687-690
K Katayanagi N.,
et al.
Validation of the DNDC-Rice model by using CH4 and N2O flux data from rice cultivated in pots under alternate wetting and drying irrigation management. Soil Science and Plant Nutrition 72: 360-372
K 北川巌 簡単・低コストな土層改良「カッティングソイラ工法」 農業農村工学会誌 81-1: 48
K 北川巌 農地の排水機能を強化する低コスト土層・排水改良技術 農林水産技術研究ジャーナル 35(9): 17-21
L Liu G. C.,
et al. 
Microbial community composition controls the effects of climate change on methane emission from rice paddies Environmental Microbiology Reports 4(6): 648-654,
doi: 10.1111/j.1758-2229
.2012.00391.x.
M Matsuura S.,
et al
Organic carbon stocks in grassland soils and their spatial distribution in Japan. Grassland Science 58: 79-93
doi:10.1111/j.1744-697X
.2012.00245.x
M Minato K.,
et al.
Determinatioin of GHG and ammonia emissions from stored dairy cattle slurry by using a floating dynamic chamber. Ani. Sci. J. 84(2): 165-177
doi: 10.1111/j.1740-0929
.2012.01053.x
M Mishima S.,
et al.
Estimation of the amounts of livestock manure, rice straw, and raice straw compost applied to crops in Japan: a bottom-up analysis based on national survey data and comparison with the results from a top-down approach. Soil Science and Plant Nutrition 58(1): 83-90
doi:10.1080/00380768.
2012.658581
M 宮田明ら メタン(CH4)と一酸化二窒素(N2O)に関するFLUXNETワークショップの報告 生物と気象 12:D2: 10-17
M Mori A.,
Hojito M.
Effect of combined application of manure and fertilizer on N2O fluxes from a grassland soil in Nasu, Japan. Agriculture Ecosystems & Environment 160: 40-50
doi:10.1016/j.agee.2011
.07.018
M 森塚直樹ら 根域からの窒素溶脱に及ぼす有機質肥料の併用効果:土壌環境基礎調査で行われたライシメーター試験結果のモデル解析. 日本土壌肥料学雑誌 83(1): 24-35
T 瀧本裕士 手取川流域の明日をめざして−人々の生活を支える水循環− 石川県立大学出版会 pp.121-125
T 瀧本裕士 農業用水を核とした健全な水循環 石川県立大学出版会 pp.191-197
T Tokida T. et al. The contribution of entrapped gas bubbles to the soil methane pool and their role in methane emission from rice paddy soil in free-air [CO2] enrichment and soil warming experiments Plant and Soil 364: 131-143, doi: 10.1007/s11104-012-1356-7

 

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2011年

  執筆者 課題名 発表 Vol.:ページ
D Deng M.,
et al.
Denitrification on Andosols in an Intensive Dairy Farming Region of Central Japan. Agriculture Ecosystems & Environment 144: 330-337
D Diba F.,
et al.
Effects of soil aggregate size, moisture content and fertilizer management on nitrous oxide production in a volcanic ash soil. Soil Science and Plant Nutrition 57(5): 733-747
doi:10.1080/00380768
.2011.604767
F Fukumoto Y. Nitratation promotion process for reducing nitrogen losses by N2O/NO emissions in the composting of livestock manure Soil Health and Land Use Management ISBN: 9789533076140
I 井上吉雄 食糧-環境インテリジェンスのための生態系リモートセンシング−問題解決に向けた信号データ利用法− 日本リモートセンシング学会誌 31: 2-26
K Kimura S.D.
et al.
Carbon resources of residue and manure in Japanese farmland soils Nutrient Cycling in Agroecosystems  89: 291-302
doi: 10.1007/s10705-010-9394-0accepted
K 北川巌 有機質資材を活用して生産性向上に寄与する低コスト土層改良工法 農村振興 744: 32-33
M Maeda K.,
et al.
Microbiology of nitrogen cycle in animal manure compost Microbial Biotechnology 4(6): 700-709,
doi: 10.1111/j.1751-7915.2010.00236.x
M Matsuura S.,
et al
Evaluation of a protable chamber system for soil CO2 efflux measurement and the potential errors caused by internal compensation and water vapor dilution. Journal of Agricultural Meteorology 67(3): 127-137
M Mitsumori M.,
et al.
Responses in digestion, rumen fermentation and microbial populations to inhibition of methane formation by a halogenated methane analogue. Br J Nutr. 8: 1-10
M Mori A.,
Hojito M.
N2O and CH4 emissions from grassland treated with bark- or sawdust -containing manure at different rates Soil Science and Plant Nutrition  57: 138-149,
doi: 10.1080/00380768
.2010.548310
O Osada T.,
et al.
Potential reduction of greenhouse gas emission from swine manure by using a low-protein diet supplemented with synthetic amino acids Animal Feed Science and Technology 166(67): 562-574
S 澤本卓治  家畜ふん尿の処理と利用に由来する大気・土壌への環境負荷低減をめざして 酪農ジャーナル 64(1): 24-26
S 柴田昇平 斜面風、湧水及び天水などの活用によるハウス内の暑熱緩和 農業技術大系花卉編第3巻 追録13号、
本体+486の22頁
S Shirato Y.,
et al.
Using different versions of the Rothamsted Carbon Model to simulate soil carbon in long-term experimental plots subjected to paddy–upland rotation in Japan Soil Science and Plant Nutrition 57: 597-606
T Takata Y.,
et al
Phosphate adsorption coefficient can improve the validity of RothC model for Andosols Soil Science and Plant Nutrition 57: 421-428
T Tokida T.
et al.
Methane and soil CO2 production from current-season photosynthates in a rice paddy exposed to elevated CO2 concentration and soil temperature. Global Change Biology 17(11): 3327-3337,
doi: 10.1111/j.1365-2486.2011.02475.x.
T 常田大輔ら 低コスト排水改良工法−カッティングドレーン工法とカッティングソイラ工法 特産種苗 12: 58-60
Y 山根剛ら 牛ふん窒素添加ペレット堆肥の黒ボク土への施用に伴う亜酸化窒素発生. 日本土壌肥料学雑誌 82(3): 234-238

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2010年

  執筆者 課題名 発表 Vol.:ページ
E 江口定夫ら 第19回世界土壌科学会議(ブリスベン)参加報告 農業と環境 128 
J Jin T. et al. Effect of chemical fertilizer and manure application on N2O emission from reed canary grassland in Hokkaido, Japan Soil Science and Plant Nutrition 56(1): 53-65
doi: 10.1111/j.1747
-0765.2010.00447.x
K Kimura S.D. et al. Carbon resources of residue and manure in Japanese farmland soils. Nutrient Cycling in Agroecosystems Volume 89, Issue 2, pp 291-302
doi: 10.1007/s10705-010-9394-0
K 木村園子ドロテア  GISを用いた窒素循環の広域評価 北海道農業と土壌肥料2010, 北農会  北農研究シリーズ]V, 231-234
K 木村園子ドロテア,
福田晋 
循環型酪農へのアプローチ 都府県編 第1章 第3節 物質循環を破たんさせた要因  酪農ジャーナル(臨時増刊号)  177-184
  北川巌 簡便で効果的な低コスト排水改良法. カッティングドレーン工法とカッティングソイラ工法 農家の友 2: 24-26
  北川巌 長期土壌炭素貯留に貢献する農地基盤整備の確立 ARDEC 42: 28-32
  北川巌ら 地球温暖化緩和策となる農地整備による炭素の長期貯留技術 ARIC情報 98: 14-19
K 北川巌ら  高生産性農地の段階的整備を実現する低コスト排水改良技術 農業農村工学会誌 78(11): 899-902
M Maeda K., et al. Characterization and spatial distribution of bacterial communities within passively aerated cattle manure composting piles Bioresource Technology 101: 9631-9637 
M 松本武彦  土壌診断に基づく施肥対応 北海道農業と土壌肥料2010 136-139
M 松本武彦  家畜ふん尿利用に基づく施肥対応 北海道農業と土壌肥料2011 139-142
S Shimizu M. et al. Nitrous oxide emissions and nitrogen cycling in managed grassland in Southern Hokkaido, Japan Soil Science and Plant Nutrition 56(4): 676-688
doi: 10.1111/j.1747
-0765.2010.00496.x
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