磷
肥料
堆肥
化学计量学
营养物
牲畜
化学
生态系统
氮气
生态化学计量学
环境化学
农业
农学
生态学
生物
有机化学
作者
Lei Song,Xiaoyu Zhang,Chang Qu,Xuesong Luo,Yonghui Xing,Shuxin Tan,Yi Jiang,Qiaoyun Huang,Wenli Chen
标识
DOI:10.1016/j.envres.2023.117904
摘要
Deciphering the pivotal components of nutrient metabolism in compost is of paramount importance. To this end, ecoenzymatic stoichiometry, enzyme vector modeling, and statistical analysis were employed to explore the impact of exogenous ore improver on nutrient changes throughout the livestock composting process. The total phosphorus increased from 12.86 to 18.72 g kg−1, accompanied by a marked neutralized pH with ore improver, resulting in the Carbon-, nitrogen-, and phosphorus-related enzyme activities decreases. However, the potential C:P and N:P acquisition activities represented by ln(βG + CB): ln(ALP) and ln(NAG): ln(ALP), were increased with ore improver addition. Based on the ecoenzymatic stoiometry theory, these changes reflect a decreasing trend in the relative P/N limitation, with pH and total phosphorus as the decisive factors. Our study showed that the practical employment of eco stoichiometry could benefit the manure composting process. Moreover, we should also consider the ecological effects from pH for the waste material utilization in sustainable agriculture.
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