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分散辅助表面活性剂对互叶省藤(Syringodium isoetifolium)的崩解:迈向生物甲烷化、动力学、能量探索与评估。

Dispersion aided tenside disintegration of seagrass Syringodium isoetifolium: Towards biomethanation, kinetics, energy exploration and evaluation.

机构信息

Department of Civil Engineering, Anna University Regional Campus, Tirunelveli, Tamilnadu, India.

Department of Civil Engineering, Ponjesly College of Engineering, Nagercoil, Tamilnadu, India.

出版信息

Bioresour Technol. 2019 Apr;277:62-67. doi: 10.1016/j.biortech.2019.01.026. Epub 2019 Jan 9.

Abstract

In this study, an attempt was made to enhance the biomethanation potential of seagrass (Syringodium isoetifolium) by the aid of disperser-tenside (polysorbate 80) disintegration for the first time in literature. A disperser rpm of 10,000 for 20 min and PS 80 dose of 0.000864 g/g TS were selected as ideal parameters for effectual seagrass biomass disintegration. Dispersion aided tenside disintegration (DTD) with a disperser energy consumption of 349 kJ/kg TS, was observed to be efficacious with a biomass lysis rate of 25.6%. The impact of DTD on bioacidification and biomethanation assay with respect to volatile fatty acids concentration (1100 mg/L) and methane generation (0.256 g/g COD), was greater than dispersion disintegration (DD) (800 mg/L; 0.198 g/g COD). Thus, S. isoetifolium is considered as a promising substrate to attain the third generation biofuel goals in the near future.

摘要

本研究首次尝试利用分散剂-表面活性剂(聚山梨酯 80)的分散作用来提高海草(Syringodium isoetifolium)的生物甲烷潜力。选择分散器转速为 10000rpm 持续 20min 以及 PS 80 剂量为 0.000864g/g TS 作为有效海草生物质分解的理想参数。观察到分散辅助表面活性剂分解(DTD)在 349kJ/kg TS 的分散器能量消耗下是有效的,生物质裂解率达到 25.6%。与分散分解(DD)相比(1100mg/L;0.198g/g COD),DTD 对生物酸化和生物甲烷化试验的影响更大,其挥发性脂肪酸浓度(1100mg/L)和甲烷生成量(0.256g/g COD)更高。因此,S. isoetifolium 被认为是一种很有前途的底物,可以在不久的将来实现第三代生物燃料的目标。

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