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玉米秸秆粒径和 C/N 比对奶牛粪便固态厌氧共消化反应器性能的影响。

Impact of corn stover particle size and C/N ratio on reactor performance in solid-state anaerobic co-digestion with dairy manure.

机构信息

Department of Agricultural and Biosystems Engineering, North Dakota State University, Fargo, ND, USA.

出版信息

J Air Waste Manag Assoc. 2020 Apr;70(4):436-454. doi: 10.1080/10962247.2020.1729277. Epub 2020 Mar 9.

Abstract

Green energy generation from agricultural waste has the potential to minimize dependency on fossil and reduce the resultant environmental impact of this fuel provided anaerobic reactor performance is optimized. Hence, the interactive impact of carbon to nitrogen (C/N) ratio, particle size, and co-digestion of dairy manure (DM) and corn stover (CS) on solid-state anaerobic digester (SSAD) performance was investigated with four treatments (DMCS24S, DMCS24L, DMCS28L, and DMCS32L) in this solid-state study. Novel scanning electron microscope (SEM) image analysis utilized to describe the corn stover using ImageJ indicated that corn stover of particle size 0.18-0.42 mm had lower rough surface texture relative to the 0.42-0.84 mm size. This observation not only influenced the ingestate degradation, the bioconversion rate was negatively affected by 0.18-0.42 mm particle size of corn stover. Notably, increase in C/N ratio led to decrease in total ammonia nitrogen (TAN) and alkalinity concentration (Alk), hence, treatments with the lowest C/N ratio had better reactor performance in terms of suitable process parameters such as Alk, pH, ORP, and TAN. Furthermore, DMCS24L treatment had the highest methane yield (106 mL/g VS) and net methane energy (2.92 MJ/kg). Interestingly, modified Gompertz model gave the best kinetic description of the methane production. This SSAD mesophilic study suggests that corn stover, with particle size of 0.42-0.84 mm, co-digested with dairy manure under a C/N ratio of 24 has the potential to enhance methane yield and optimize reactor performance.: The utilization of agricultural waste for bioenergy generation through solid-state anaerobic digestion could be enhanced through the interactive impact of substrate particle size, carbon-to-nitrogen (C/N) ratio and co-digestion, which has not been previously studied. These ternary factors significantly improved reactor performance and enhanced methane yield when corn stover of 0.42-0.84 mm particle size was co-digested with dairy manure to achieve a C/N ratio of 24.

摘要

从农业废弃物中产生绿色能源有可能减少对化石燃料的依赖,并降低这种燃料产生的环境影响,前提是优化厌氧反应器的性能。因此,在这项固态研究中,用四种处理方法(DMCS24S、DMCS24L、DMCS28L 和 DMCS32L)研究了碳氮(C/N)比、粒径和奶牛粪便(DM)与玉米秸秆(CS)共消化对固态厌氧消化器(SSAD)性能的相互影响。利用新型扫描电子显微镜(SEM)图像分析对玉米秸秆进行了描述,利用 ImageJ 对图像进行了分析,结果表明粒径为 0.18-0.42mm 的玉米秸秆表面粗糙度较低。这一观察结果不仅影响了进料的降解,还对生物转化率产生了负面影响,粒径为 0.18-0.42mm 的玉米秸秆的生物转化率降低。值得注意的是,C/N 比的增加导致总氨氮(TAN)和碱度浓度(Alk)降低,因此,C/N 比最低的处理方法在 Alk、pH、ORP 和 TAN 等合适的工艺参数方面具有更好的反应器性能。此外,DMCS24L 处理方法的甲烷产量最高(106mL/gVS),净甲烷能量(2.92MJ/kg)最高。有趣的是,修正的 Gompertz 模型对甲烷生成的动力学描述最好。这项 SSAD 常温研究表明,粒径为 0.42-0.84mm 的玉米秸秆与奶牛粪便在 24 的 C/N 比下共消化,有可能提高甲烷产量并优化反应器性能。:通过固态厌氧消化利用农业废弃物生产生物能源,可以通过底物粒径、碳氮(C/N)比和共消化的相互影响来增强,这在以前的研究中尚未涉及。当粒径为 0.42-0.84mm 的玉米秸秆与奶牛粪便共消化,达到 24 的 C/N 比时,这三个因素显著提高了反应器性能和甲烷产量。

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