School of Resource & Civil Engineering, Northeastern University, Shenyang 110819, PR China.
Department of Soil and Environment, Shenyang Agricultural University, Shenyang 110866, PR China.
Bioresour Technol. 2019 May;280:502-504. doi: 10.1016/j.biortech.2018.12.121. Epub 2019 Feb 5.
For bio-H fermentation, the progress and H yield were significantly affected by culture pH. Our previous research found peanut shell powder (PSP, as supplementary substrate) having a buffer effect on the fermentative time prolongation and H2 yield enhancement. The acid buffer action (ABA), cation exchange capacity (CEC), scanning electron microscope (SEM) and X-ray powder diffraction (XRD) were employed to explore the mechanism and structure changes of PSP. The superior ABA (57.44 ± 0.65 mmol/pH-kg) and CEC (112 ± 2.0 cmol/kg) of PSP, which provided high specific surface area and amorphous content, prolonged the fermentative time. The acidification of volatile fatty acids on PSP was effective to release reducing sugar and enhance hydrogen yield through breaking hemicellulose and amorphous components of cellulose, and enlarging specific surface area. The results indicated that buffer effect and acidification on PSP made positive effects on prolonging fermentation time and enhancing hydrogen yield.
对于生物-H 发酵,培养 pH 值显著影响了进展和 H 产量。我们之前的研究发现,花生壳粉(PSP,作为补充底物)对发酵时间延长和 H2 产量提高具有缓冲作用。采用酸缓冲作用(ABA)、阳离子交换容量(CEC)、扫描电子显微镜(SEM)和 X 射线粉末衍射(XRD)来探究 PSP 的作用机制和结构变化。PSP 具有优异的 ABA(57.44±0.65mmol/pH-kg)和 CEC(112±2.0cmol/kg),提供了高比表面积和无定形含量,延长了发酵时间。PSP 上挥发性脂肪酸的酸化作用通过破坏半纤维素和纤维素的无定形成分以及增大比表面积,有效释放还原糖并提高了氢气产量。结果表明,PSP 的缓冲作用和酸化作用对延长发酵时间和提高氢气产量具有积极影响。