Sun Haoran, Wang Hua, Zhang Xinmin, Cheng Weihua, Li Xuyang
School of Mechanical and Power Engineering, Henan Polytechnic University, 2001 Century Avenue, Jiaozuo, Henan 454003, China.
School of Mechanical and Power Engineering, Henan Polytechnic University, 2001 Century Avenue, Jiaozuo, Henan 454003, China E-mail:
Water Sci Technol. 2024 Dec;90(11):3041-3051. doi: 10.2166/wst.2024.388. Epub 2024 Nov 28.
Fruit waste is one of the main components of municipal waste. To study its potential and characteristics in anaerobic digestion, this study took fruit waste and its waste liquid as raw materials, investigate the influence of thermal pretreatment on the anaerobic digestion characteristics under 35 ± 17 °C. The anaerobic digestion materials were fruit waste liquid (group A1), fruit waste liquid after thermal pretreatment (group A2), fruit slurry (group A3), and the material of A2 and A3 mixed with municipal sludge (groups A4 and A5) has also been involved. The results showed that the thermal pretreatment is in favor of increasing the total gas production rate, which the waste liquid after thermal pretreatment (A2) was the highest one with 767.09 mL/gVS which 6.51% higher than A1; while it has not obviously influence on the total hydrogen production rate of waste liquid; the addition of municipal sludge increased the total methane production rate of fruit waste or its liquid. After thermal pretreatment, the pH of fruit waste was 0.37 lower than initial pH; VFAs and SCOD content were both increased, which are benefit for anaerobic digestion. In addition, the experimental data were verified by the modified Gompertz model.
水果废弃物是城市垃圾的主要组成部分之一。为研究其在厌氧消化中的潜力和特性,本研究以水果废弃物及其废液为原料,考察了在35±1℃条件下热预处理对厌氧消化特性的影响。厌氧消化物料包括水果废液(A1组)、热预处理后的水果废液(A2组)、水果浆(A3组),还涉及A2和A3与城市污泥混合的物料(A4和A5组)。结果表明,热预处理有利于提高总产气率,热预处理后的废液(A2)最高,为767.09 mL/gVS,比A1高6.51%;而对废液的总产氢率没有明显影响;添加城市污泥提高了水果废弃物或其废液的总产甲烷率。热预处理后,水果废弃物的pH值比初始pH值低0.37;挥发性脂肪酸(VFAs)和溶解性化学需氧量(SCOD)含量均增加,有利于厌氧消化。此外,实验数据通过修正的Gompertz模型进行了验证。