Life cycle climate performance of urban plant factory versus rural greenhouse under China’s power-grid decarbonization: considering short-lived methane and nitrous oxide emissions
Yunlai Cheng , Guobao Song , Xiaoyang Liu , Laura Batlle-Bayer , Pere Fullana-i-Palmer
Carbon Footprints ›› 2024, Vol. 3 ›› Issue (2) : 10
Life cycle climate performance of urban plant factory versus rural greenhouse under China’s power-grid decarbonization: considering short-lived methane and nitrous oxide emissions
Plant factories can potentially enhance the climate resilience of urban vegetable production by reducing the losses from climate hazards but generate high climate burdens - due to consuming carbon-intensive power generated by coal combustion with upstream methane emissions - unlike rural traditional sunlight greenhouses with nitrous oxide emissions. Here, we compared the life cycle Global Warming Potential (GWP) and Technical Warming Potential (TWP) metrics of lettuce production by plant factory and greenhouse, and explored the effect of power grid decarbonization on the climate performance of the cultivations. Results show that in the baseline scenario using the southern Chinese grid, the 100-year GWP of plant factory cultivation (14.9 kgCO2e kg-1) is over 50 times higher than that of the greenhouse
Climate resilience / plant factory / crystallinity of COF / sunlight greenhouse / global warming potential / methane / nitrous oxide
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