Life cycle assessment and synergistic effects of sustainable strategies to improve environmental sustainability in arid climates

被引:0
|
作者
Keikha, Mahdi [1 ]
Darzi-Naftchali, Abdullah [1 ,2 ]
Motevali, Ali [3 ]
Valipour, Mohammad [4 ]
机构
[1] Sari Agr Sci & Nat Resources Univ, Water Engn Dept, Sari, Iran
[2] Univ Twente, Fac Engn Technol, Multidisciplinary Water Management Grp, Enschede, Netherlands
[3] Sari Agr Sci & Nat Resources Univ, Dept Mech Biosyst Engn, Sari, Iran
[4] Metropolitan State Univ Denver, Dept Engn & Engn Technol, Denver, CO 80217 USA
关键词
AquaCrop; Barley; Ecosystems; Global warming; Triticale; Water productivity; AQUACROP MODEL; NITROGEN-FERTILIZER; WATER FOOTPRINT; SPRING BARLEY; GRAIN-YIELD; WHEAT; CROP; TRITICALE; MALT; TEMPERATURE;
D O I
10.1016/j.rineng.2024.103352
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Adapting sowing date (SD) based on environmental sustainability and increasing productivity is crucial for creating flexibility in agriculture and maintaining food security. This study aimed to optimize SD and nitrogen (N) management using environmental indices in an arid climate. Yield, N use efficiency (NUE), water productivity (WP), and total environmental impact (EI) were assessed for five SDs for barley and triticale crops, along with three levels of N fertilizer application. The AquaCrop model was used for crop yield prediction, and EI was evaluated using Life Cycle Assessment (LCA). Delayed SD led to a shorter growing period (10.6-12.8 %), decreased WP (76.4-87.5 %), and decreased yield (58.3-87.6 %) for both crops compared to conventional SD. In contrast, earlier SD resulted in an extended growing period (1.7-3.6 %), increased WP (14.8-20.4 %), and increased yield (8.3-10.2 %). NUE showed an inverse relationship with increasing fertilizer levels. The most significant EIs were due to N consumption (33.4 %), followed by diesel (28.5 %) and potassium fertilizer (13.7 %) for both crops. Early SD could reduce EI by an average of 12.5 %. Combining early SD with moderate N levels was the most sustainable approach to maximize yield, minimize water use, and reduce EI, thereby informing sustainable practices for cereal cultivation in similar climates.
引用
收藏
页数:15
相关论文
共 50 条
  • [31] Life cycle environmental and energy impact assessment of sustainable urban municipal solid waste collection and transportation strategies
    Taskin, Akif
    Demir, Nesrin
    SUSTAINABLE CITIES AND SOCIETY, 2020, 61
  • [32] Environmental sustainability assessment of buildings in hot climates: the case of the UAE
    Aboulnaga, MM
    Elsheshtawy, YH
    RENEWABLE ENERGY, 2001, 24 (3-4) : 553 - 563
  • [33] Life cycle assessment of agricultural waste recycling for sustainable environmental impact
    Sumiyati, S.
    Samadikun, B. P.
    Widiyanti, A.
    Budihardjo, M. A.
    Al Qadar, S.
    Puspita, A. S.
    GLOBAL JOURNAL OF ENVIRONMENTAL SCIENCE AND MANAGEMENT-GJESM, 2024, 10 (02): : 907 - 938
  • [34] Life cycle engineering and sustainable manufacturing for net-zero targets and environmental sustainability
    Chen, Wei-Qiang
    Hauschild, Michael Zwicky
    Huang, Bei-jia
    Kara, Sami
    Sutherland, John W.
    Umeda, Yasushi
    RESOURCES CONSERVATION AND RECYCLING, 2022, 186
  • [35] Life cycle engineering and sustainable manufacturing for net-zero targets and environmental sustainability
    Zuo, Lulu
    Huang, Beijia
    Chen, Nanxizi
    Wang, Qinyu
    Sutherland, W.
    Chen, Wei-Qiang
    RESOURCES CONSERVATION AND RECYCLING, 2025, 215
  • [36] Improve Environmental and Economic Performance with Streamlined Life Cycle Assessment (SLCA)
    Shatkin, J.
    Larsen, W.
    NANOTECHNOLOGY 2011: ADVANCED MATERIALS, CNTS, PARTICLES, FILMS AND COMPOSITES, NSTI-NANOTECH 2011, VOL 1, 2011, : 828 - 831
  • [37] Environmental and Economic Sustainability of Electric Vehicles: Life Cycle Assessment and Life Cycle Costing Evaluation of Electricity Sources
    Rapa, Mattia
    Gobbi, Laura
    Ruggieri, Roberto
    ENERGIES, 2020, 13 (23)
  • [38] Study on Life Cycle Assessment and Life Cycle Sustainability Assessment of Buildings: A Review
    Basu, Manali
    Kaja, Nagaraju
    Rao, Prashanti
    Journal of The Institution of Engineers (India): Series A, 2024, 105 (03) : 749 - 766
  • [39] Evaluation of the Environmental Sustainability of Hemp as a Building Material, through Life Cycle Assessment
    Di Capua, Salvatore Emanuele
    Paolotti, Luisa
    Moretti, Elisa
    Rocchi, Lucia
    Boggia, Antonio
    ENVIRONMENTAL AND CLIMATE TECHNOLOGIES, 2021, 25 (01) : 1215 - 1228
  • [40] Environmental sustainability assessment of organic vineyard practices from a life cycle perspective
    Volanti, Mirco
    Cubillas Martinez, C.
    Cespi, D.
    Lopez-Baeza, E.
    Vassura, I
    Passarini, F.
    INTERNATIONAL JOURNAL OF ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 2022, 19 (06) : 4645 - 4658