木质素
腐殖质
放线菌门
堆肥
化学
降级(电信)
还原糖
食品科学
糖
核化学
生物化学
有机化学
农学
生物
基因
土壤水分
电信
16S核糖体RNA
计算机科学
生态学
作者
Liangcai Ma,Ru Sun,Hongxiang Yang,Jixuan Li,Xiaoli Wen,Ziyi Cao,Yucheng Zhou,Mengxin Fu,Qunliang Li
标识
DOI:10.1016/j.biortech.2022.127949
摘要
This study was the first to explore the effect of shell powder (SP) on lignin degradation and humus (HS) formation during composting. The results showed that the treatment group (T) with SP consumed more polyphenols, reducing sugar and amino acids than the control group (CK), especially the rate of reducing sugar consumption in T (50.61 %) was significantly higher than CK (28.40 %). SP greatly enhanced the efficiency of lignin degradation (T:45.47 %; CK:24.63 %) and HS formation (T:34.93 %; CK:20.16 %). The content of HA in T was 12.94 mg/g while CK was 12.06 mg/g. SP maintained a continuous increase in the relative abundance of AA1, AA3 after cooling phase. Meanwhile, T (48.98 %) significantly increased the abundance of Actinobacteria compared with CK (37.19 %). Actinobacteria, AA1 and AA3 were identified as the main factors promoting lignin degradation and HS formation by correlation analysis. Therefore, adding SP could be a novel strategy to improve compost quality.
科研通智能强力驱动
Strongly Powered by AbleSci AI