College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, PR China.
College of Natural Resources and Environment, Northwest A&F University, Yangling 712100, PR China.
Bioresour Technol. 2023 Jan;367:128191. doi: 10.1016/j.biortech.2022.128191. Epub 2022 Oct 27.
For purpose of clarifying the impact on particle size of bulking agents on humification and relevant mechanisms, different length (<2 cm, 2 cm, 5 cm, 10 cm) of branch and straw were blended with swine manure individually for 100 days aerobic composting. Results demonstrated that, 2 cm and 5 cm of branch and straw promoted the highest degradation of DOC by 41.49 % and 58.42 %, and increased the humic substances by 23.81 % and 55.82 % in maturity stage, respectively, compared with other treatments. As shown in microbial consequence, the maximum relative abundance of humus funguses increased by 99.55 % and 99.92 % at phylum, and 98.95 % and 99.24 % at genus in 2 cm and 5 cm of branch and straw treatment, thus verifying the result in variation of humus content. In a word, particle size could result in obvious impact on humification, and the optimized size were about 2 cm and 5 cm of branch and straw.
为了阐明膨化剂对腐殖化和相关机制的粒径影响,将不同长度(<2cm、2cm、5cm、10cm)的树枝和秸秆分别与猪粪混合进行 100 天好氧堆肥。结果表明,与其他处理相比,2cm 和 5cm 的树枝和秸秆分别促进了 DOC 的最高降解,降解率为 41.49%和 58.42%,在成熟阶段分别增加了 23.81%和 55.82%的腐殖质。如图微生物结果所示,腐殖真菌的相对丰度在门和属水平分别增加了 99.55%和 99.92%,在 2cm 和 5cm 的树枝和秸秆处理中增加了 98.95%和 99.24%,从而验证了腐殖质含量变化的结果。总之,粒径会对腐殖化产生明显的影响,最佳粒径约为 2cm 和 5cm 的树枝和秸秆。