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  • Microbial nutrient limitation and carbon use efficiency in saline . . .
    This study examines how biochar amendments influence microbial stoichiometry, nutrient limitations, and carbon use efficiency in saline-alkali soils We compared two types of biochar—acid-modified biochar (pH 2 3) and alkaline biochar (pH 8 8)—at application rates of 1%, 2%, and 5% in soils planted with Medicago sativa L
  • Ecoenzymatic stoichiometry reveals widespread soil phosphorus . . .
    Here we used ecoenzymatic stoichiometry methods to investigate the patterns of microbial nutrient limitations within soil profiles (organic, eluvial and parent material horizons) across
  • Alkaline Biochar Increases Carbon Use Efficiency in Saline Soil . . .
    Research shows that alkaline biochar enhances carbon use efficiency in saline-alkali soil and alters microbial nutrient limitation Specifically, alkaline biochar shifted microbial metabolism from nitrogen to phosphorus limitation, while acid-modified biochar alleviated nitrogen limitation at higher application rates
  • Enzymatic Stoichiometry and Microbial Resource Limitation in a Saline . . .
    We studied how five years (2018–2023) of applying 10 t biochar ha −1 yr −1 influences soil’s chemical and microbial properties, microbial element utilization efficiency, and resource limitations in the Tarim River basin
  • Ecoenzymatic stoichiometry reveals stronger microbial carbon and . . .
    In this study, through ecoenzymatic stoichiometry, a meta-analysis was conducted to evaluate responses of microbial metabolic limitation to biochar amendment by collecting data of ecoenzymatic activities (EEAs) of the C, N and P acquisition from peer-reviewed papers
  • Stoichiometry of microbial carbon use efficiency in soils
    Alternatively, CUE can be estimated indirectly from the elemental stoichiometry of organic matter and microbial biomass, and the ratios of C to nutrient-acquiring ecoenzymatic activities We used this approach to estimate and compare microbial CUE in >2000 soils from a broad range of ecosystems
  • Biochar - journal. hep. com. cn
    This study examines how biochar amendments influence microbial stoichiometry, nutrient limitations, and carbon use efficiency in saline-alkali soils We compared two types of biochar—acid-modified biochar (pH 2 3) and alkaline biochar (pH 8 8)—at application rates of 1%, 2%, and 5% in soils planted with Medicago sativa L
  • Nitrogen addition aggravates microbial carbon limitation: Evidence from . . .
    There were two main findings Firstly, we found that N addition aggravated microbial C limitation, which was partly due to the reduced recalcitrant C decomposition Secondly, we found that N addition did not affect soil microbial P-limitation, which may be due to the accelerated P cycling rate


















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