Yin Dong-Min, Mahboubi Amir, Wainaina Steven, Qiao Wei, Taherzadeh Mohammad J
Biomass Engineering Center, College of Engineering, China Agricultural University, Beijing 100083, China; Swedish Centre for Resource Recovery, University of Borås, Borås, Sweden.
Swedish Centre for Resource Recovery, University of Borås, Borås, Sweden.
Bioresour Technol. 2021 Jun;330:124992. doi: 10.1016/j.biortech.2021.124992. Epub 2021 Mar 13.
Although the high nitrogen content of chicken manure (CM) poses major challenges for methane production through anaerobic digestion, on the bright side, it has a great potential for production of value-added intermediate products, such as volatile fatty acids (VFAs). However, in order to enhance VFAs yield, methane formation should be substantially suppressed. In the current research, individual and multiple effects of initial pH, heat-shock pretreatment, chemical methanogens inhibitor and the inoculum to substrate ratio (ISR) on optimization VFAs fermentation from CM were evaluated via batch assays. In this regard, the highest net VFAs yield, 0.53 g-VFA/g-VS, was achieved at conditions with heat-shocked inoculum and CM at ISR 1:6 and pH uncontrolled. Acetate dominated the VFAs mixture, accounting for up to 75% of total. Increased inoculum content enhanced the bioconversion efficiency to 78% at ISR 1:3. The study results suggest that alkalinity is a key promoter of VFAs production from CM.
尽管鸡粪(CM)的高氮含量给通过厌氧消化生产甲烷带来了重大挑战,但从好的方面来看,它在生产挥发性脂肪酸(VFAs)等增值中间产品方面具有巨大潜力。然而,为了提高VFAs产量,应大幅抑制甲烷生成。在当前研究中,通过批次试验评估了初始pH值、热休克预处理、化学产甲烷菌抑制剂以及接种物与底物比例(ISR)对优化鸡粪VFAs发酵的单一和多重影响。在这方面,在接种物热休克、ISR为1:6且pH值未控制的条件下,实现了最高的净VFAs产量,即0.53 g-VFA/g-VS。乙酸在VFAs混合物中占主导地位,占总量的75%。接种物含量的增加将ISR为1:3时的生物转化效率提高到了78%。研究结果表明,碱度是鸡粪生产VFAs的关键促进因素。