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表面活性剂辅助分散器预处理对网藻液化及通过非线性回归建模评估用于生产能源有效生物燃料的生物降解性。

Surfactant assisted disperser pretreatment on the liquefaction of Ulva reticulata and evaluation of biodegradability for energy efficient biofuel production through nonlinear regression modelling.

机构信息

Department of Civil Engineering, Anna University Regional campus, Tirunelveli, India.

Institute of Remote Sensing, College of Engineering, Guindy, Anna University, Chennai, India.

出版信息

Bioresour Technol. 2018 May;255:116-122. doi: 10.1016/j.biortech.2018.01.116. Epub 2018 Jan 31.

Abstract

The present study aimed to increase the disintegration potential of marine macroalgae, (Ulva reticulata) through chemo mechanical pretreatment (CMP) in an energy efficient manner. By combining surfactant with disperser, the specific energy input was considerably reduced from 437.1 kJ/kg TS to 264.9 kJ/kg TS to achieve 10.7% liquefaction. A disperser rpm (10,000), pretreatment time (30 min) and tween 80 dosage (21.6 mg/L) were considered as an optimum for effective liquefaction of algal biomass. CMP was designated as an appropriate pretreatment resulting in a higher soluble organic release 1250 mg/L, respectively. Anaerobic fermentation results revealed that the volatile fatty acid (VFA) concentration was doubled (782 mg/L) in CMP when compared to mechanical pretreatment (MP) (345 mg/L). CMP pretreated algal biomass was considered as the suitable for biohydrogen production with highest H yield of about 63 mL H/g COD than (MP) (45 mL H/g COD) and control (10 mL H/g COD).

摘要

本研究旨在通过化学机械预处理(CMP)以节能的方式提高海洋大型藻类(Ulvareticulata)的崩解潜力。通过将表面活性剂与分散剂结合,特定的能量输入从 437.1 kJ/kg TS 大幅降低至 264.9 kJ/kg TS,以实现 10.7%的液化。分散器转速(10,000 rpm)、预处理时间(30 分钟)和吐温 80 用量(21.6 mg/L)被认为是有效液化藻类生物质的最佳条件。CMP 被指定为一种合适的预处理方法,可分别释放出更高的可溶性有机物质 1250 mg/L。厌氧发酵结果表明,与机械预处理(MP)相比,CMP 可使挥发性脂肪酸(VFA)浓度增加一倍(782 mg/L)(345 mg/L)。CMP 预处理的藻类生物质被认为适合生产生物氢气,其产氢量最高约为 63 mL H/g COD,高于 MP(45 mL H/g COD)和对照(10 mL H/g COD)。

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