Optimum soil frost depth to alleviate climate change effects in cold region agriculture

被引:0
|
作者
Yosuke Yanai
Yukiyoshi Iwata
Tomoyoshi Hirota
机构
[1] Hokkaido Agricultural Research Center,
[2] NARO,undefined
[3] Memuro,undefined
[4] Hokkaido,undefined
[5] 082-0081,undefined
[6] Japan ,undefined
[7] Hokkaido Agricultural Research Center,undefined
[8] NARO,undefined
[9] Present address: Office of Strategic Management,undefined
[10] Headquarters,undefined
[11] National Agricultural and Food Research Organization (NARO),undefined
[12] Tsukuba,undefined
[13] Ibaraki 305-8517,undefined
[14] Japan.,undefined
[15] Present address: Institute for Rural Engineering,undefined
[16] NARO,undefined
[17] Tsukuba,undefined
[18] Ibaraki 305-8609,undefined
[19] Japan.,undefined
来源
关键词
D O I
暂无
中图分类号
学科分类号
摘要
On-farm soil frost control has been used for the management of volunteer potatoes (Solanum tuberosum L.), a serious weed problem caused by climate change, in northern Japan. Deep soil frost penetration is necessary for the effective eradication of unharvested small potato tubers; however, this process can delay soil thaw and increase soil wetting in spring, thereby delaying agricultural activity initiation and increasing nitrous oxide emissions from soil. Conversely, shallow soil frost development helps over-wintering of unharvested potato tubers and nitrate leaching from surface soil owing to the periodic infiltration of snowmelt water. In this study, we synthesised on-farm snow cover manipulation experiments to determine the optimum soil frost depth that can eradicate unharvested potato tubers without affecting agricultural activity initiation while minimising N pollution from agricultural soil. The optimum soil frost depth was estimated to be 0.28–0.33 m on the basis of the annual maximum soil frost depth. Soil frost control is a promising practice to alleviate climate change effects on agriculture in cold regions, which was initiated by local farmers and further promoted by national and local research institutes.
引用
收藏
相关论文
共 50 条
  • [1] Optimum soil frost depth to alleviate climate change effects in cold region agriculture
    Yanai, Yosuke
    Iwata, Yukiyoshi
    Hirota, Tomoyoshi
    SCIENTIFIC REPORTS, 2017, 7
  • [2] Soil frost control: agricultural adaptation to climate variability in a cold region of Japan
    Tomoyoshi Hirota
    Kazuei Usuki
    Masaki Hayashi
    Manabu Nemoto
    Yukiyoshi Iwata
    Yosuke Yanai
    Tomotsugu Yazaki
    Satoshi Inoue
    Mitigation and Adaptation Strategies for Global Change, 2011, 16 : 791 - 802
  • [3] Soil frost control: agricultural adaptation to climate variability in a cold region of Japan
    Hirota, Tomoyoshi
    Usuki, Kazuei
    Hayashi, Masaki
    Nemoto, Manabu
    Iwata, Yukiyoshi
    Yanai, Yosuke
    Yazaki, Tomotsugu
    Inoue, Satoshi
    MITIGATION AND ADAPTATION STRATEGIES FOR GLOBAL CHANGE, 2011, 16 (07) : 791 - 802
  • [4] Assessment of US Frost Depth Maps Considering Climate Change Effects
    Daneshian, Behrooz
    Abdelaziz, Sherif L.
    GEO-CONGRESS 2023: GEOTECHNICAL CHARACTERIZATION, 2023, 340 : 523 - 532
  • [5] Decreasing soil-frost depth and its relation to climate change in Tokachi, Hokkaido, Japan
    Hirota, Tomoyoshi
    Iwata, Yukiyoshi
    Hayashi, Masaki
    Suzuki, Shinji
    Hamasaki, Takahiro
    Sameshima, Ryoji
    Takayabu, Izuru
    JOURNAL OF THE METEOROLOGICAL SOCIETY OF JAPAN, 2006, 84 (04) : 821 - 833
  • [6] Climate service driven adaptation may alleviate the impacts of climate change in agriculture
    Toreti, Andrea
    Bassu, Simona
    Asseng, Senthold
    Zampieri, Matteo
    Ceglar, Andrej
    Royo, Conxita
    COMMUNICATIONS BIOLOGY, 2022, 5 (01)
  • [7] Climate service driven adaptation may alleviate the impacts of climate change in agriculture
    Andrea Toreti
    Simona Bassu
    Senthold Asseng
    Matteo Zampieri
    Andrej Ceglar
    Conxita Royo
    Communications Biology, 5
  • [8] Effects of Soil Moisture on the Responses of Soil Temperatures to Climate Change in Cold Regions
    Subin, Zachary M.
    Koven, Charles D.
    Riley, William J.
    Torn, Margaret S.
    Lawrence, David M.
    Swenson, Sean C.
    JOURNAL OF CLIMATE, 2013, 26 (10) : 3139 - 3158
  • [9] Effects of climate change: A look to Agriculture
    Enrique Arteaga, Luis N.
    Efren Burbano, Jairo N.
    REVISTA DE CIENCIAS AGRICOLAS, 2018, 35 (02): : 79 - 91
  • [10] Effects on agriculture from climate change
    Bariana, Shelby-Marie
    Foy, Gregory
    Peterman, Keith
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2015, 249