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Featured researches published by Yangyang Li.


Bioresource Technology | 2017

Effects of organic composition on mesophilic anaerobic digestion of food waste

Yangyang Li; Yiying Jin; Aiduan Li Borrion; Hailong Li; Jinhui Li

Anaerobic digestion of food waste (FW) has been widely investigated, however, little is known about the influence of organic composition on the FW digestion process. This study aims to identify the optimum composition ratios of carbohydrate (CA), protein (CP) and lipid (EE) for maintaining high methane yield and process stability. The results show that the CA-CP-EE ratio was significantly correlated with performance and degradability parameters. Controlling the CA-CP-EE ratio higher than 1.89 (CA higher than 8.3%, CP lower than 5.0%, and EE lower than 5.6%) could be an effective way to maintain stable digestion and achieve higher methane production (385-627mL/gVS) and shorter digestion retention (196-409h). The CA-CP-EE ratio could be used as an important indicator for digestion performance. To effectively evaluate organic reduction, the concentration and removal efficiency of organic compositions in both solid phases and total FW should be considered.


Bioresource Technology | 2017

Effects of organic composition on the anaerobic biodegradability of food waste

Yangyang Li; Yiying Jin; Aiduan Li Borrion; Hailong Li; Jinhui Li

This work investigated the influence of carbohydrates, proteins and lipids on the anaerobic digestion of food waste (FW) and the relationship between the parameters characterising digestion. Increasing the concentrations of proteins and lipids, and decreasing carbohydrate content in FW, led to high buffering capacity, reduction of proteins (52.7-65.0%) and lipids (57.4-88.2%), and methane production (385-627 mLCH4/g volatile solid), while achieving a short retention time. There were no significant correlations between the reduction of organics, hydrolysis rate constant (0.25-0.66d-1) and composition of organics. Principal Component Analysis revealed that lipid, C, and N contents as well as the C/N ratio were the principal components for digestion. In addition, methane yield, the final concentrations of total ammonia nitrogen and free ammonia nitrogen, final pH values, and the reduction of proteins and lipids could be predicted by a second-order polynomial model, in terms of the protein and lipid weight fraction.


Waste Management | 2018

Influence of feed/inoculum ratios and waste cooking oil content on the mesophilic anaerobic digestion of food waste

Yangyang Li; Yiying Jin; Aiduan Li Borrion; Jinhui Li

Information on the anaerobic digestion (AD) of food waste (FW) with different waste cooking oil contents is limited in terms of the effect of the initial substrate concentrations. In this work, batch tests were performed to evaluate the combined effects of waste cooking oil content (33-53%) and feed/inoculum (F/I) ratios (0.5-1.2) on biogas/methane yield, process stability parameters and organics reduction during the FW AD. Both waste cooking oil and the inoculation ratios were found to affect digestion parameters during the AD process start-up and the F/I ratio was the predominant factor affecting AD after the start-up phase. The possible inhibition due to acidification caused by volatile fatty acids accumulation, low pH values and long-chain fatty acids was reversible. The characteristics of the final digestate indicated a stable anaerobic system, whereas samples with F/I ratios ranging from 0.8 to 1.2 display higher propionic and valeric acid contents and high amounts of total ammonia nitrogen and free ammonia nitrogen. Overall, F/I ratios higher than 0.70 caused inhibition and resulted in low biogas/methane yields from the FW.


Bioresource Technology | 2018

Corrigendum to “Effects of organic composition on mesophilic anaerobic digestion of food waste” [Bioresour. Technol. 244 (2017) 213–224]

Yangyang Li; Yiying Jin; Aiduan Li Borrion; Hailong Li; Jinhui Li

Yangyang Li, Yiying Jin, Aiduan Borrion, Hailong Li, Jinhui Li (2017) Effects of organic composition on mesophilic anaerobic digestion of food waste, Bioresource Technology, Volume 244, Part 1, November 2017, Pages 213-224 (https://doi.org/10.1016/j.biortech.2017.07.006)


Applied Energy | 2016

Effects of thermal pretreatment on the biomethane yield and hydrolysis rate of kitchen waste

Yangyang Li; Yiying Jin; Jinhui Li; Hailong Li; Zhixin Yu


Journal of Environmental Management | 2016

Influence of thermal pretreatment on physical and chemical properties of kitchen waste and the efficiency of anaerobic digestion.

Yiying Jin; Yangyang Li; Jinhui Li


Energy | 2017

Effects of thermal pretreatment on degradation kinetics of organics during kitchen waste anaerobic digestion

Yangyang Li; Yiying Jin; Jinhui Li; Hailong Li; Zhixin Yu; Yongfeng Nie


Energy | 2016

Enhanced split-phase resource utilization of kitchen waste by thermal pre-treatment.

Yangyang Li; Yiying Jin; Jinhui Li


Applied Energy | 2016

Effects of pungency degree on mesophilic anaerobic digestion of kitchen waste

Yangyang Li; Yiying Jin; Jinhui Li; Hailong Li; Zhixin Yu


Renewable Energy | 2016

Enhanced nitrogen distribution and biomethanation of kitchen waste by thermal pre-treatment

Yangyang Li; Yiying Jin; Jinhui Li; Yongfeng Nie

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Hailong Li

Mälardalen University College

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Zhixin Yu

University of Stavanger

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