• Journal of Natural Resources
  • Vol. 35, Issue 1, 26 (2020)
Jun WANG1、*, Ling-xiao YING1, and Li-na ZHONG2
Author Affiliations
  • 1Key Laboratory of Land Consolidation and Rehabilitation, Land Consolidation and Rehabilitation Center, Ministry of Natural Resources, Beijing 100035, China
  • 2Business School, Tianjin University of Finance and Economics, Tianjin 300222, China
  • show less
    DOI: 10.31497/zrzyxb.20200104 Cite this Article
    Jun WANG, Ling-xiao YING, Li-na ZHONG. Thinking for the transformation of land consolidation and ecological restoration in the new era[J]. Journal of Natural Resources, 2020, 35(1): 26 Copy Citation Text show less
    References

    [1] HUANG Y, CIAIS P, PIAO S et al. The impacts of climate change on water resources and agriculture in China[D]. Nature, 467, 43-51(2010).

    [2] NIU S, ZHANG Z, XING X et al. Water-use efficiency in response to climate change: From leaf to ecosystem in a temperate steppe[D]. Global Change Biology, 17, 1073-1082(2011).

    [3] DIELEMAN C M, BRANFIREUN B A, MCLAUGHLIN J W et al. Climate change drives a shift in peatland ecosystem plant community: Implications for ecosystem function and stability[D]. Global Change Biology, 21, 388-395(2015).

    [4] DOMINIK T, KATHARINA A, WERNER R et al. Trade-offs between temporal stability and level of forest ecosystem services provisioning under climate change[D]. Ecological Applications, 28, 1884-1896(2018).

    [5] HIGGS E, HARRIS J A, HOBBS R J et al. Ecological restoration and global climate change[D]. Restoration Ecology, 14, 170-176(2006).

    [6] PEREIRA H M, NAVARRO L M, PERINO A et al. Rewilding complex ecosystems[D]. Science, 364, eaav5570(2019).

    [7] KOZULIN A, ZUYONOK S, RAKOVICH V. Local and global impacts of mire drainage: An impetus for hydrology restoration: Yelnia Mire, Belarus. In: EISELTOVÁ M (eds). Restoration of Lakes, Streams, Floodplains, and Bogs in Europe(2010).

    [10] ZHENG H, OUYANG Z, XIAO Y et al. Improvements in ecosystem services from investments in natural capital[D]. Science, 352, 1455-1459(2016).

    [11] YE Y, BRYAN B A, GAO L et al. China's response to a national land-system sustainability emergency[D]. Nature, 559, 193-204(2018).

    [12] PARK T, CHEN C, WANG X et al. China and India lead in greening of the world through land-use management[D]. Nature Sustainability, 2, 122-129(2019).

    [35] ZHANG M M, FU B J, WANG S et al. Ecological effects and potential risks of the water diversion project in the Heihe River Basin[D]. Science of the Total Environment, 619-620, 794-803(2017).

    [38] FAN H B, WEI X H, LIU W F et al. Response of flow regimes to deforestation and reforestation in a rain-dominated large watershed of subtropical China[D]. Hydrological Processes, 29, 5003-5015(2015).

    [43] Summary for Policymakers of the Global Assessment Report on Biodiversity and Ecosystem Services of the Intergovernmental Science-policy Platform on Biodiversity and Ecosystem Services[D]. Bonn: IPBES Secretariat, 12(2019).

    [65] SIDA T S, KIM H, BAUDRON F et al. Climate-smart agroforestry: Faidherbia albida trees buffer wheat against climatic extremes in the Central Rift Valley of Ethiopia[D]. Agricultural and Forest Meteorology, 248, 339-347(2018).

    [66] PASCUAL U, SIDIBÉ Y, SÉBASTIEN F et al. Adaptation to climate change in rainfed agriculture in the global south: Soil biodiversity as natural insurance[D]. Ecological Economics, 146, 588-596(2018).

    [67] CALLIARI E, STACCIONE A, MYSIAK J. An assessment framework for climate-proof nature-based solutions[D]. Science of the Total Environment, 656, 691-700(2019).

    Jun WANG, Ling-xiao YING, Li-na ZHONG. Thinking for the transformation of land consolidation and ecological restoration in the new era[J]. Journal of Natural Resources, 2020, 35(1): 26
    Download Citation