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Enhancement of solubilization rate of cellulose in anaerobic digestion and its drawbacks

机译:厌氧消化中纤维素增溶速率的提高及其缺点

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摘要

Hydrolysis is widely acknowledged as the rate-limiting step in anaerobic digestion of solid cellulose to biogas (methane), and pretreatment is generally considered to facilitate the process. However, few studies have investigated how such pretreatment may affect the rest of this complex process. The present study compared the solubilization rate in anaerobic digestion of cotton linter (high crystalline cellulose), with that of regenerated cellulose (amorphous cellulose), using pretreatment with NMMO. Batch digestions were performed, with the initial cellulose concentrations ranging between 5 and 40g/l, and during 30 days of incubation, biogas and VFAs production as well as pH and COD changes were measured. The lag time before digestion started was longer for the high crystalline cellulose than for the amorphous one. The maximum solubilization rates of treated cellulose were 842 and 517mg sCOD/g cCOD/day at the initial cellulose concentration of 5 and 30g/l, respectively, while the solubilization rate of untreated cellulose never exceeded 417 mg sCOD/g cCOD/day. The difference between the two cellulose types was a direct result of the high rate of hydrolysis inhibiting the acetogenesis/methanogenesis microorganisms, a drawback to the rest of the process.
机译:水解被广泛认为是固体纤维素厌氧消化为沼气(甲烷)的限速步骤,通常认为进行预处理可促进该过程。但是,很少有研究调查这种预处理如何影响此复杂过程的其余部分。本研究比较了棉绒(高结晶纤维素)和再生纤维素(无定形纤维素)在厌氧消化中的溶解率,采用NMMO预处理。进行分批消化,初始纤维素浓度在5至40g / l之间,在孵育30天期间,测量了沼气和VFA的产生以及pH和COD的变化。高结晶度纤维素的消化开始之前的滞后时间比无定形的更长。在初始纤维素浓度为5和30g / l时,处理过的纤维素的最大增溶速率分别为842和517mg sCOD / g cCOD /天,而未处理的纤维素的增溶速率从未超过417 mg sCOD / g cCOD / day。两种纤维素之间的差异是水解率高抑制产乙酸/产甲烷微生物的直接结果,这是其余过程的缺点。

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