1 | 王欣, 苏小红, 郭广亮, 等. 秸秆厌氧消化预处理技术研究进展[J]. 黑龙江科学, 2015, 6(1): 7-9. | 1 | WANG Xin, SU Xiaohong, GUO Guangliang, et al. Progress straw pretreatment technology of anaerobic digestion[J]. Heilongjiang Science, 2015, 6(1): 7-9. | 2 | 朱颢, 胡启春, 汤晓玉, 等. 我国农作物秸秆资源燃料化利用开发进展[J]. 中国沼气, 2017, 35(2): 115-120. | 2 | ZHU Hao, HU Qichun, TANG Xiaoyu, et al. Current development and progress of fuelization of agricultural straw in China[J]. China Biogas, 2017, 35(2): 115-120. | 3 | 杨茜, 鞠美庭, 李维尊. 秸秆厌氧消化产甲烷的研究进展[J]. 农业工程学报, 2016, 32(14): 232-242. | 3 | YANG Qian, JU Meiting, LI Weizun. Review of methane production from straws anaerobic digestion[J]. Transactions of the Chinese Society of Agricultural Engineering, 2016, 32(14): 232-242. | 4 | 邓小莉, 常景玲, 洪详. 不同预处理方法对玉米秸秆纤维素结构及降解的影响[J]. 云南农业大学学报(自然科学), 2013, 28(4): 545-550. | 4 | DENG Xiaoli, CHANG Jingling, HONG Xiang. Effect of different pretreatment methods on the cellulose structure and degradation of corn straw[J]. Journal of Yunnan Agricultural University(Natural Science), 2013, 28(4): 545-550. | 5 | 陶朴良, 张无敌, 宋洪川, 等. 沼气发酵综合利用的现状与发展趋势[J]. 能源工程, 2001(5): 9-11. | 5 | TAO Puliang, ZHANG Wudi, SONG Hongchuan, et al. Status & development tendency of comprehensive utilization of biogas & fermentative residues[J]. Energy Engineering, 2001(5): 9-11. | 6 | BENABDALLAH E H T, ASTALS S, GALI A, et al. Ammonia influence in anaerobic digestion of OFMSW [J]. Water Science & Technology A: Journal of the International Association on Water Pollution Research, 2009, 59(6): 1153-1161. | 7 | 张存胜. 厌氧发酵技术处理餐厨垃圾产沼气的研究[D]. 北京: 北京化工大学, 2013. | 7 | ZHANG Cunsheng. Biogas production from anaerobic digestion of food waste[D]. Beijing: Beijing University of Chemical Technology, 2013. | 8 | 郜晋楠. 玉米干秸秆氨化过程机理及厌氧消化研究[D]. 郑州: 郑州大学, 2016. | 8 | GAO Jinnan. Process and mechanism of soaking aqueous ammonia pretreatment for dry corn stover and its anaerobic digestion[D]. Zhengzhou: Zhengzhou University, 2016. | 9 | 王海鹏. 猪粪和玉米秸秆混合厌氧发酵产气特性及微生物多样性分析[D].大庆: 黑龙江八一农垦大学, 2019. | 9 | WANG Haipeng. Anaerobic co-digestion of swine manure with corn stover and microbial diversity analysis[D]. Daqing: Heilongjiang Bayi Agricultural University, 2019. | 10 | 庞震鹏, 李永平, 朱教宁, 等. 猪粪玉米秸秆不同干物质比厌氧发酵产气及稳定性研究[J].安全与环境学报, 2019, 19(5): 1767-1775. | 10 | PANG Zhenpeng, LI Yongping, ZHU Jiaoning, et al. On effect of dry matter mixing ratio on gas production and stability of anaerobic fermentation by pig manure and corn straw[J]. Journal of Safety and Environment, 2019, 19(5): 1767-1775. | 11 | 李轶, 刘雨秋, 张镇, 等.玉米秸秆与猪粪混合厌氧发酵产沼气工艺优化[J].农业工程学报, 2014, 30(5): 185-192. | 11 | LI Yi, LIU Yuqiu, ZHANG Zhen, et al. Optimization of anaerobic fermentation with mixed materials of corn straw and pig manure[J]. Transactions of the Chinese Society of Agricultural Engineering, 2014, 30(5): 185-192. | 12 | 柳杨青. 水稻秸秆与猪粪干法厌氧发酵特性研究[D].上海: 华东理工大学, 2014. | 12 | LIU Yangqing. Study on the performance of dry anaerobic digestion of rice straw and swine manure[D]. Shanghai: East China University of Science and Technology, 2014. | 13 | 齐利格娃. 机械搅拌对猪粪与稻草联合厌氧干发酵性能的影响[D].北京: 中国农业科学院, 2019. | 13 | QI Ligewa. Effect of mechanical mixing on dry anaerobic co-digestion of pig manure with rice straw[D].Beijing: Chinese Academy of Agricultural Sciences Dissertation, 2019. | 14 | 江皓, 沈怡, 聂红, 等.鸡粪与玉米秸秆的干式厌氧发酵实验研究[J].可再生能源, 2018, 36(5): 639-643. | 14 | JIANG Hao, SHEN Yi, NIE Hong, et al. Study on dry anaerobic fermentation of chicken manure and corn straw[J]. Renewable Energy Resources, 2018, 36(5): 639-643. | 15 | 李瑞华. 渗滤液再循环对有机垃圾与玉米秸秆车库式共发酵产酸及产气的影响研究[D].北京: 中国石油大学(北京), 2017. | 15 | LI Ruihua. Effects of leachate recirculation on VFA and biogas production of anaerobic co-digestion of organic waste and corn straw by garage-type dry fermentation[D]. Beijing: China University of Petroleum(Beijing), 2017. | 16 | 杜静, 朱德文, 钱玉婷, 等.导气措施与渗滤液回流方式对干发酵产沼气影响中试[J].农业机械学报, 2013, 44(S2): 143-148. | 16 | DU Jing, ZHU Dewen, QIAN Yuting, et al. Effect of gas guide measurement and leachate-recirculation on gas production from dry fermentation[J]. Transactions of the Chinese Society for Agricultural Machinery, 2013, 44(S2): 143-148. | 17 | LI Y, PARK S Y, ZHU J. Solid-state anaerobic digestion for methane production from organic waste [J]. Renewable and Sustainable Energy Reviews, 2011, 15(1): 821-826. | 18 | MUSTAFA A M, POULSEN T G, SHENG K. Fungal pretreatment of rice straw with Pleurotus ostreatus and Trichoderma reesei to enhance methane production under solid-state anaerobic digestion[J]. Applied Energy, 2016, 180: 661-671. | 19 | QIAN Mingyu, ZHANG Yixin, LI Ruihua, et al. Effects of Percolate recirculation on dry anaerobic co-digestion of organic fraction of municipal solid waste and corn straw[J]. Energy & Fuels, 2017, 31(11): 12183-12191. | 20 | BROWN D, SHI Jian, LI Yebo. Comparison of solid-state to liquid anaerobic digestion of lignocellulosic feedstocks for biogas production[J]. Bioresource Technology, 2012, 124(11): 379-386. | 21 | LI Yeqing, YAN Fang, LI Tao, et al. High-solid anaerobic digestion of corn straw for methane production and pretreatment of bio-briquette[J]. Bioresource Technology, 2018, 250: 741-749. | 22 | PU Chengjun, LIU Hang, DING Guochun, et al. Impact of direct application of biogas slurry and residue in fields: in situ analysis of antibiotic resistance genes from pig manure to fields[J]. Journal of Hazardous Materials, 2017, 344: 441-449. | 23 | DENNIS K L, WANG Yunwei, BLATNER N R, et al. Adenomatous polyps are driven by microbe-instigated focal inflammation and are controlled by IL-10-producing T cells[J]. Cancer Research, 2013, 73(19): 5905-5913. | 24 | LIEW L N, SHI Jian, LI Yebo. Methane production from solid-state anaerobic digestion of lignocellulosic biomass[J]. Biomass and Bioenergy, 2012, 46: 125-132. | 25 | CUI Zhifang, SHI Jian, LI Yebo. Solid-state anaerobic digestion of spent wheat straw from horse stall[J]. Bioresource Technology, 2011, 102(20): 9432-9437. | 26 | ABBASSI-GUENDOUZ A, BROCKMANN D, TRABLY E, et al. Total solids content drives high solid anaerobic digestion via mass transfer limitation[J]. Bioresource Technology, 2012, 111: 55-61. | 27 | 宋香育, 张克强, 房芳, 等. 工艺措施对猪粪秸秆混合厌氧干发酵产气性能的影响[J].农业工程学报, 2017, 33(11): 233-239. | 27 | SONG Xiangyu, ZHANG Keqiang, FANG Fang, et al. Influences of different technological strategies on performance of anaerobic co-digestion of pig manure with straw in solid-state[J]. Transactions of the Chinese Society of Agricultural Engineering, 2017, 33(11): 233-239. | 28 | 吴云. 餐厨垃圾厌氧消化影响因素及动力学研究[D]. 重庆: 重庆大学, 2009. | 28 | WU Yun. Study on influence factors and kinetics in anaerobic digestion of kitchen wastes[D]. Chongqing: Chongqing University, 2009. | 29 | DUBE C D, GUIOT S R. Direct interspecies electron transfer in anaerobic digestion: a review [J]. Advances in Biochemical Engineering/biotechnology, 2015, 113: 101-115 | 30 | LIN Richen, CHENG Jun, ZHANG Jiabei. et al. Murphy, boosting biomethane yield and production rate with graphene: the potential of direct interspecies electron transfer in anaerobic digestion[J]. Bioresource Technology, 2017, 239: 345-352. | 31 | ROMANO R T, ZHANG Ruihong. Co-digestion of onion juice and wastewater sludge using an anaerobic mixed biofilm reactor [J]. Bioresource Technology, 2008, 99(3): 631-637. | 32 | ZHU Junwei, LI Yebo. Experimental study on solid state anaerobic digestion of organic waste for methane production[C]//2009 Annual ASABE Meeting, Reno, Nevada, 2009. | 33 | 陈思思,戴晓虎,薛勇刚,等. 影响高含固厌氧消化性能的主要因素研究进展[J].化工进展, 2015,34 (3): 831-839. | 33 | CHEN Sisi, DAI Xiaohu, XUE Yonggang, et al. Research progress of the main factors influencing properties of high-solid anaerobic digestion[J]. Chemical Industry and Engineering Progress, 2015,34(3): 831-839. | 34 | RIPLEY L E, BOYLE W C, CONVERSE J C. Improved alkalimetric monitoring for anaerobic digestion of high-strength wastes[J]. Journal (Water Pollution Control Federation), 1986,58(5): 406-411. | 35 | LI Yeqing, ZHANG Ruihong, LIU Guangqing, et al. Comparison of methane production potential, biodegradability, and kinetics of different organic substrates[J]. Bioresource Technology, 2013,149: 565-569. | 36 | BOUANANE D A, FARDEAU M L,OLLIVIER B. The prokaryotes[M].Berlin Heidelberg: Springer, 2014: 13-17. | 37 | ROTARU A E, SHRESTHA P M, LIU Fanghua, et al. Direct interspecies electron transfer between geobacter metallireducens and methanosarcina barkeri[J]. Applied and Environmental Microbiology, 2014, 80(15): 4599-4605. |
|