[1]Bilitewski B,Werner P,Dornack C,et al. Trockenfermentation in der Landwirtschaft-Welche Substrate and Technikenfinden Anwendung. Anaerobe biologische Abfallbehandlung[D]. Dresden:Dresden University of Technology,2008:235-245.
[2]高磊. 玉米深加工过程废水处理及回用模式研究[D]. 哈尔滨:哈尔滨工业大学,2011.
[3]Audrey Favache,Denis Dochain. Power-Shaping control of an exothermic continuous stirred tank reactor (CSTR)[J]. IFAC Proceedings Volumes,2009,42(11):99-108.
[4]龙良俊. 污泥厌氧消化工艺设计探讨[J]. 重庆工商大学学报(自然科学版),2006,23(3):256-258.
[5]高海. 消化池结构分析与应用研究[D]. 天津:天津大学,2009.
[6]黑爱卿. 螺旋挡板激流式生物反应器的流场仿真分析[D]. 哈尔滨:哈尔滨工业大学,2013.
[7]郭淑卿. 圆柱形预应力混凝土污泥消化池的受力分析[J]. 中国给水排水,2007,23(5):93-96.
[8]刘传卿,李守才,郑岩,等. 圆柱形消化池多工况数值模拟分析[J]. 建筑构型,2016,46(增刊1):702-706.
[9]Sutter G,Hanskat C S. Words largest egg-shaped digesters[J]. Water Environment and Technology,1990,29(40):52-55.
[10]Hurd M K,Hanskat C S. Prestressed concrete sludge digesters:words largest egg-shaped tanks built in Germany[J]. Concrete Construction,1990,35(1):19-21.
[11]Zingoni A. Parametric stress distribution in shell-of-revolution sludge digesters of parabolic ogival form[J]. Thin Walled Struetures,2002,40(7/8):691-702.
[12]Li Y Y,Noike T,Katsumata K,et al. Performance analysis of the full scale egg-shaped digester in treating sewage sludge of high concentration[J]. Water Science and Technology,1996,34(3/4):483-491.
[13]Pavlovic M N,Zingoni A,Geckeler J W,et al. Edge disturbances in spherical shells with varying geometric parameters and support types,with particular reference to the thickness on the peak stress[J]. Proceedings of the Institution of Civil Engineers,1991,91(3):495-516.
[14]姜忻良,白玉平,高海. 无粘结预应力卵形消化池的受力分析及设计[J]. 特种结构,2005,22(2):19-22.
[15]宋红玉. 卵形反应池结构优化分析[C]//中国土木工程学会水工业分会结构专业委员会.中国市政工程华北设计研究院.中国土木工程学会水工业分会结构专业委员会四届四次会议论文集,2007:8.
[16]陈华明,范苏榕,姜雷钢. 预应力蛋形消化池流固耦合有限元分析[J]. 地震工程与工程振动,2009,29(2):184-190.
[17]苏婕,吴胜举,胡淑芳,等. 圆柱形反应器声场分布研究[J]. 陕西师范大学学报(自然科学版),2009,37(6):35-38.
[18]薛晓荣. 卵形消化池结构设计[J]. 特种结构,2001,18(2):12-15.
[19]费新东,冉奇严. 厌氧发酵沼气工程的工艺及存在的问题[J]. 中国环保产业,2009(12):30-34.
[20]代璐. 高含固污泥厌氧消化特性及硫控制技术研究[D]. 西安:西安建筑科技大学,2016.
[21]李梦洁. 玫瑰秸秆厌氧发酵产沼气特性试验研究[D]. 上海:东华大学,2017.
[22]饶彤彤. 好氧颗粒污泥现场中试系统设计建造和运行[D]. 杭州:浙江工业大学,2011.
[23]Meironke H. Thermo fluidynamics of the multiphase flow inside Cylindroconical fermenters with different scales[C]// MATEC Web of Conferences. EDP Sciences,2014,18:5.
[24]黄英超,王丽丽,王忠江. 不同高径比反应器对牛粪高浓度水解酸化特性的影响[J]. 农机化研究,2008(9):125-127.
[25]芦汉超. 机械搅拌厌氧反应池流态研究[D]. 北京:清华大学,2015.
[26]樊晓宇. 大型发酵罐设计中值得注意的问题[J]. 医药工程设计,2011,32(5):1-4.
[27]陈余. 浅谈发酵罐的选型设计[J]. 化学工程与装备,2011(10):86-89.
[28]田小峰,张建成,刘献玲,等. CFD在气升式环流反应器结构优化上的应用[J]. 现代化工,2013,33(7):121-124.
[29]Zhao Y C,Li X Y,Cheng J C,et al. Experimental study on liquid-liquid macromixing in a stirred tank[J]. Industrial & Engineering Chemistry Research,2011,75(10):5952-5958.
[30]Luo J,Lv J M,Shen R C. Effects of baffle on the mixing effectiveness of a crossflowjet mixer[J]. Chemical Reaction Engineering and Technology,2006,22(3):199-205.
[31]蒋展志,刘雪东,李岩,等. 底部对数螺线挡板对搅拌釜流场特性影响的数值模拟[J]. 常州大学学报(自然科学版),2013,25(2):67-71.
[32]Saeed T,Al-Muyeed A,Afrin R,et al. Pollutant removal from municipal wastewater employing baffled subsurface flow and integrated surface flow-floating treatment wetlands[J]. Journal of Environmental Sciences,2014,26(4):726-736.
[33]季浪宇. 大颗粒固液两相流碰撞反弹规律及磨损特性研究[D]. 杭州:浙江理工大学,2017.
[34]刘志炎,王星星,刘雪东. 椭圆底封头异形挡板搅拌釜的混合性能分析[J]. 化工机械,2017,44(6):619-625.
[35]许卓,赵恒文,郑建坤. 立式搅拌槽中挡板结构对搅拌能耗影响的数值模拟[J]. 水电能源科学,2013,31(5):162-165,197.
[36]Gu D Y,Liu Z H,Li J,et al. Intensification of chaotic mixing in a stirred tank with a punched rigid-flexible impeller and a chaotic motor[J]. Chemical Engineering and Processing:Process Intensification,2017,122:1-9.
[37]季立仁,李布青,葛昕. 鸡场沼气工程设计若干问题的探讨[J]. 中国沼气,2016,43(1):68-71.
[38]蔡雅婷. 多相搅拌反应器内桨型对传质的影响[D]. 北京:北京化工大学,2016.
[39]Evans W T,Cox C,Gibson B T,et al. Two-sided friction stir riveting by extrusion:a process for joining dissimilar materials[J]. Journal of Manufacturing Processes,2016,23:115-121.
[40]李永纲,黄雄斌. 立式圆槽内多轴搅拌器固-液悬浮性能[J]. 过程工程学报,2012,12(2):181-186.
[41]Thibault F,Tanguy P A. Power draw analysis of coaxial mixer with Newtonian and non-Newtonian fluids in the laminarregime[J]. Chemical Engineering Science,2002,18(57):3861-3872.
[42]李永纲,黄雄斌. 立式圆槽内多轴搅拌器固-液悬浮性能[J]. 过程工程学报,2012,12(2):181-186.
[43]Wesselingh J A. Mixing of liquids in cylindrical storage tanks with side-entering propellers[J]. Chemical Engineering Science,1975,30(8):973-981.
[44]梁家勇,周勇军,卢源,等. 双层侧进式搅拌槽固液流动研究[J]. 轻工机械,2015,33(4):35-38.
[45]陈佳,肖文德. 大型侧进式搅拌釜内湍流流场的数值模拟[J]. 化学工程,2013,41(8):38-42,70.
[46]傅国志. 搅拌和沼液回流对麦秸序批式厌氧消化性能影响的试验研究[D]. 北京:北京化工大学,2010.
[47]Du J W,Li H J,Wang L G. Cooperative effect of surfactant addition and gas-inducing agitation on methane hydrate formation rate[J]. Fuel,2018,230:134-137.
[48]Goshika B K,Majumder S K. Entrainment and holdup of gas-liquid-liquid dispersion in a downflow gas-liquid-liquid contactor[J]. Chemical Engineering and Processing:Process Intensification,2018,125:112-123.
[49]杨安逸. 沼气搅拌式固定床的工艺及其生物膜特性[D]. 大庆:黑龙江八一农垦大学,2015.
[50]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.
[51]Michelea P,Giulianaab D,Carloc M,et al. Optimization ofsolid state anaerobic digestion of the OFMSW by digestate recirculation:a new approach[J]. Waste Management,2015,35:111-118.
[52]张成,黄天寅,冯延申,等. 回流比对剩余污泥厌氧发酵产酸的影响[J]. 环境工程学报,2016,10(8):4529-4533.
[53]邓玉营,黄振兴,阮文权,等. 沼液回流比与有机负荷对秸秆厌氧发酵特性的影响[J]. 农业机械学报,2016,47(11):198-206,133.
[54]Hu Y,Shen F,Yuan H,et al.Influence of recirculation of liquid fraction of the digestate(LFD) on maizest over anaerobic digestion[J]. Biosystems Engineering,2014,127:189-196.
[55]刘刈. 高浓度物料沼气发酵过程混合搅拌及其影响因素的研究[D]. 北京:中国农业科学院,2009.
[56]Weglowski M S,Pietras A. Friction stir processing analysis of the process[J]. Archives of Metallurgy and Materials,2011,56(3):779-788.
[57]Stroot P G,McMahon K D,Mackie R I,et al. Anaerobic codigestion of municipal solid waste and biosolids under various mixing conditions——Ⅰ. Digester performance[J]. Water Research,2001,35(7):1804-1816.
[58]Kaparaju P,Buendia I,Ellegagrd L,et al. Effectsof mixing on methane production during thermophilic anaerobic digestion of manure:lab-scale and pilot-scale studies[J]. Bioresource Technology,2008,99(11):4919-4928.
[59]余亚琴,吴义锋. 蓝藻厌氧发酵产沼气机械搅拌工艺优化及中试验证[J]. 农业工程学报,2014,30(22):253-259.
[60]苏宜虎,陈晓东,马洪儒. 搅拌对沼气发酵的影响[J]. 安徽农业科学,2007,35(28):8961-8962,9004.
[61]Cubas A,Foresti E,Rodrigues J D,et al. Influence of liquid-phase mass transfer on theperformance of a stirred anaerobic sequencing batch reactor containing immobilized biomass[J]. Biochemical Engineering Journal,2004,17(2):99-105.
[62]Rodrigues A D,Ratusznei S M,Camargo E M,et al. Influence of agitation rate on the performance of an anaerobic sequencing batch reactor containing granulated biomass treating low-strength wastewater[J]. Advances in Environmental Research,2003,7(2):405-410.
[63]张庆华. 纤维质高效水解关键技术及其在木薯燃料乙醇产业中的应用[D]. 无锡:江南大学,2012.