[1] |
YUAN H, ZHU N.Progress in inhibition mechanisms and process control of intermediates and by-products in sewage sludge anaerobic digestion[J].Renewable & Sustainable Energy Reviews,2016,58:429-438
|
[2] |
孙志岩, 张君枝, 刘翌晨, 等. 牛粪和玉米秸秆厌氧消化产甲烷潜力及动力学[J]. 环境工程学报,2016, 10(3):1468-1474
|
[3] |
YENIGüN O, DEMIREL B.Ammonia inhibition in anaerobic digestion: A review[J].Process Biochemistry,2013,48(5/6):901-911 10.1016/j.procbio.2013.04.012
|
[4] |
FUJISHIMA S, MIYAHARA T, NOIKE T.Effect of moisture content on anaerobic digestion of dewatered sludge: Ammonia inhibition to carbohydrate removal and methane production[J].Water Science & Technology,2000,41(3):119-127
|
[5] |
郭建斌, 董仁杰, 程辉彩, 等. 温度与有机负荷对猪粪厌氧发酵过程的影响[J]. 农业工程学报,2011,27(12):217-222 10.3969/j.issn.1002-6819.2011.12.041
|
[6] |
梅凯, 董红敏, 陶秀萍, 等. 水泡粪物料中固体和氨氮含量对厌氧消化产气特性的影响[J]. 中国农业气象, 2014, 35(6):622-627 10.3969/j.issn.1000-6362.2014.06.003
|
[7] |
ZHENG H, LI D, STANISLAUS M S, et al.Development of a bio-zeolite fixed-bed bioreactor for mitigating ammonia inhibition of anaerobic digestion with extremely high ammonium concentration livestock waste[J].Chemical Engineering Journal,2015, 280:106-114 10.1016/j.cej.2015.06.024
|
[8] |
HUANG W, ZHAO Z, YUAN T, et al.Effective ammonia recovery from swine excreta through dry anaerobic digestion followed by ammonia stripping at high total solids content[J].Biomass & Bioenergy,2016,90:139-147
|
[9] |
DENG L, CHEN C, ZHENG D, et al.Effect of temperature on continuous dry fermentation of swine manure[J].Journal of Environmental Management,2016,177:247-252 10.1016/j.jenvman.2016.04.029
|
[10] |
丁福贵, 李欣, 张炳宏, 等. 进料浓度对猪粪批式和连续厌氧发酵产沼气的影响[J]. 中国沼气,2014,32(5):36-39 10.3969/j.issn.1000-1166.2014.05.008
|
[11] |
ZHAI N, ZHANG T, YIN D, et al.Effect of initial pH on anaerobic co-digestion of kitchen waste and cow manure[J].Waste Management,2015,38(1):126-131 10.1016/j.wasman.2014.12.027
|
[12] |
WANG X, YANG G, FENG Y, et al.Optimizing feeding composition and carbon-nitrogen ratios for improved methane yield during anaerobic co-digestion of dairy, chicken manure and wheat straw[J].Bioresource Technology,2012,120(8):78-83 10.1016/j.biortech.2012.06.058
|
[13] |
KAFLE G K, CHEN L.Comparison on batch anaerobic digestion of five different livestock manures and prediction of biochemical methane potential (BMP) using different statistical models[J].Waste Management,2016,48(1):492-502 10.1016/j.wasman.2015.10.021
|
[14] |
王桂珍, 李兆君, 张树清, 等. 碳氮比对鸡粪堆肥中土霉素降解和堆肥参数的影响[J]. 中国农业科学,2013, 46(7):1399-1407 10.3864/j.issn.0578-1752.2013.07.010
|
[15] |
RICHARDS B K, CUMMINGS R J, WHITE T E, et al.Methods for kinetic analysis of methane fermentation in high solids biomass digesters[J].Biomass & Bioenergy,1991,1(2):65-73
|
[16] |
KAYHANIAN M.Ammonia inhibition in high-solids biogasification: An overview and practical solutions[J].Environmental Technology,1999,20(4):355-365 10.1080/09593332008616828
|
[17] |
SUNG S, LIU T.Ammonia inhibition on thermophilic anaerobic digestion[J].Chemosphere,2003,53(1):43-52 10.1016/S0045-6535(03)00434-X
|
[18] |
PROCHAZKA J, DOLEJS P, MACA J, et al.Stability and inhibition of anaerobic processes caused by insufficiency or excess of ammonia nitrogen[J].Applied Microbiology & Biotechnology,2012,93(1):439-447
|
[19] |
HASHIMOTO A G.Ammonia inhibition of methanogenesis from cattle wastes[J].Agricultural Wastes,1986,17(4):241-261 10.1016/0141-4607(86)90133-2
|
[20] |
WEBB A R, HAWKES F R.The anaerobic digestion of poultry manure: Variation of gas yield with influent concentration and ammonium-nitrogen levels[J].Agricultural Wastes,1985,14(2):135-156 10.1016/S0141-4607(85)80025-1
|
[21] |
陈闯,邓良伟,信欣,等. 上推流厌氧反应器连续干发酵猪粪产沼气试验研究[J]. 环境科学, 2012, 33(3):1033-1040
|
[22] |
HANSEN K H, ANGELIDAKI I, AHRING B K.Anaerobic digestion of swine manure: Inhibition by ammonia [J].Water Research,1998,32(1):5-12 10.1016/S0043-1354(97)00201-7
|
[23] |
MAHDY A, FOTIDIS I A, MANCINI E, et al.Ammonia tolerant inocula provide a good base for anaerobic digestion of microalgae in third generation biogas process[J].Bioresource Technology,2017,225:272-278 10.1016/j.biortech.2016.11.086
|
[24] |
HEJNFELT A, ANGELIDAKI I.Anaerobic digestion of slaughterhouse by-products[J].Biomass & Bioenergy,2009,33(8): 1046-1054
|
[25] |
CHEN Y, CHENG J J, CREAMER K S.Inhibition of anaerobic digestion process: A review[J].Bioresource Technology, 2008,99(10):4044-4064 10.1016/j.biortech.2007.01.057
|
[26] |
LISSENS G, VANDEVIVERE P, DE B L, et al.Solid waste digestors: Process performance and practice for municipal solid waste digestion[J].Water Science & Technology,2001,44(8):91-102
|
[27] |
ANGELIDAKI I, AHRING B K.Thermophilic anaerobic digestion of livestock waste:The effect of ammonia[J].Applied Microbiology & Biotechnology,1993,38(4):560-564
|
[28] |
WANG H, FOTIDIS I A, ANGELIDAKI I.Ammonia-LCFA synergetic co-inhibition effect in manure-based continuous biomethanation process[J].Bioresource Technology,2016,209:282-289 10.1016/j.biortech.2016.03.003
|
[29] |
NIELSEN H B, AHRING B K.Effect of tryptone and ammonia on the biogas process in continuously stirred tank reactors treating cattle manure[J].Environmental Technology,2007,28(8):905-914 10.1080/095933328086188485
|
[30] |
ANGELIDAKI I, AHRING B K.Anaerobic thermophilic digestion of manure at different ammonia loads: Effect of temperature[J].Water Research,1994,28(3):727-731 10.1016/0043-1354(94)90153-8
|
[31] |
高文萱, 张克强, 梁军锋, 等. 氨胁迫对猪粪厌氧消化性能的影响[J]. 农业环境科学学报,2015,34(10):1997-2003 10.11654/jaes.2015.10.023
|
[32] |
NAKAKUBO R, M?LLER H B, NIELSEN A M, et al.Ammonia inhibition of methanogenesis and identification of process indicators during anaerobic digestion[J].Environmental Engineering Science,2008,25(10):1487-1496 10.1089/ees.2007.0282
|
[33] |
GARCIA M L, ANGENENT L T.Interaction between temperature and ammonia in mesophilic digesters for animal waste treatment[J].Water Research,2009,43(9):2373-2382 10.1016/j.watres.2009.02.036
|
[34] |
CHEN S, CAO W, BANKS C J, et al.Biogas production from undiluted chicken manure and maize silage: A study of ammonia inhibition in high solids anaerobic digestion[J].Bioresource Technology,2016,218:1215-1223
|
[35] |
HONG N, H FABIAN J, KATRIN S, et al.Mono-fermentation of chicken manure: Ammonia inhibition and recirculation of the digestate[J].Bioresource Technology,2015,178:238-246.
|
[36] |
NIU Q, TAKEMURA Y, KUBOTA K, et al.Comparing mesophilic and thermophilic anaerobic digestion of chicken manure: Microbial community dynamics and process resilience[J].Waste Management,2015,43:114-122 10.1016/j.wasman.2015.05.012
|
[37] |
BUJOCZEK G, OLESZKIEWICZ J, SPARLING R, et al.High solid anaerobic digestion of chicken manure[J].Journal of Agricultural Engineering Research,2000,76(1):51-60 10.1006/jaer.2000.0529
|
[38] |
DALKILIC K, UGURLU A.Biogas production from chicken manure at different organic loading rates in a mesophilic-thermopilic two stage anaerobic system[J].Journal of Bioscience & Bioengineering,2015,120(3):315-322
|
[39] |
YAP S D, ASTALS S, JENSEN P D, et al.Indigenous microbial capability in solid manure residues to start-up solid-phase anaerobic digesters[J].Waste Management,2017,64:79-87
|
[40] |
SPROTT G D, PATEL G B.Ammonia toxicity in pure cultures of methanogenic bacteria[J].Systematic & Applied Microbiology, 1986,7(2):358-363
|
[41] |
GALLERT C, BAUER S, WINTER J.Effect of ammonia on the anaerobic degradation of protein by a mesophilic and thermophilic biowaste population[J].Applied Microbiology & Biotechnology,1998,50(4):495-501
|
[42] |
ELHADJ T B, ASTALS S, GALí A, et al.Ammonia influence in anaerobic digestion of OFMSW[J].Water Science & Technology, 2009,59(6):1153-1158
|
[43] |
LAY J J, LI Y Y, NOIKE T.The influence of pH and ammonia concentration on the methane production in high-solids digestion processes[J].Water Environment Research,1998,70(5):1075-1082 10.2175/106143098X123426
|
[44] |
LAY J J, LI Y Y, NOIKE T, et al.Analysis of environmental factors affecting methane production from high-solids organic waste[J].Water Science & Technology,1997,36(6/7):493-500
|
[45] |
WIEGANT W M, ZEEMAN G.The mechanism of ammonia inhibition in the thermophilic digestion of livestock wastes[J].Agricultural Wastes,1986,16(4):243-253 10.1016/0141-4607(86)90056-9
|
[46] |
KAYHANIAN M.Performance of a high-solids anaerobic digestion process under various ammonia concentrations[J].Journal of Chemical Technology & Biotechnology,2010,59(4):349-352
|
[47] |
KARAKASHEV D, BATSTONE D J, ANGELIDAKI I.Influence of environmental conditions on methanogenic compositions in anaerobic biogas reactors[J].Applied Environmental Microbiology,2005,71(1):331-338 10.1128/AEM.71.1.331-338.2005
|
[48] |
ZEEMAN G, WIEGANT W M, KOSTER-TREFFERS M E, et al.The influence of the total-ammonia concentration on the thermophilic digestion of cow manure[J].Agricultural Wastes,1985,14(1):19-35. 10.1016/S0141-4607(85)80014-7
|
[49] |
ANGENENT L T, SUNG S, RASKIN L.Methanogenic population dynamics during startup of a full-scale anaerobic sequencing batch reactor treating swine waste[J].Water Research,2002,36(18):4648-4654 10.1016/S0043-1354(02)00199-9
|
[50] |
NIU Q, KUBOTA K, QIAO W, et al.Effect of ammonia inhibition on microbial community dynamic and process functional resilience in mesophilic methane fermentation of chicken manure[J].Journal of Chemical Technology & Biotechnology,2015,90(12):2161-2169
|
[51] |
NIU Q, QIAO W, QIANG H, et al.Microbial community shifts and biogas conversion computation during steady, inhibited and recovered stages of thermophilic methane fermentation on chicken manure with a wide variation of ammonia[J].Bioresource Technology,2013,146(10):223-233 10.1016/j.biortech.2013.07.038
|
[52] |
ALSOULEMAN K, LINKE B, KLANG J, et al.Reorganisation of a mesophilic biogas microbiome as response to a stepwise increase of ammonium nitrogen induced by poultry manure supply[J].Bioresource Technology,2016,208:200-204 10.1016/j.biortech.2016.02.104
|
[53] |
FOTIDIS I A, KARAKASHEV D, KOTSOPOULOS T A, et al.Effect of ammonium and acetate on methanogenic pathway and methanogenic community composition[J].FEMS Microbiology Ecology,2013,83(1):38-48 10.1111/j.1574-6941.2012.01456.x
|
[54] |
CALLI B, MERTOGLU B, INANC B, et al.Methanogenic diversity in anaerobic bioreactors under extremely high ammonia levels[J].Enzyme & Microbial Technology,2005,37(4):448-455 10.1016/j.enzmictec.2005.03.013
|
[55] |
POIRIER S, DESMOND-LE Q E, MADIGOU C, et al.Anaerobic digestion of biowaste under extreme ammonia concentration: Identification of key microbial phylotypes[J].Bioresource Technology,2016,207:92-101 10.1016/j.biortech.2016.01.124
|
[56] |
MOESTEDT J, M¨ULLER B, WESTERHOLM M, et al.Ammonia threshold for inhibition of anaerobic digestion of thin stillage and the importance of organic loading rate[J].Microbial Biotechnology,2015,9(2):180-194 10.1111/1751-7915.12330
|
[57] |
WANG H, FOTIDIS I A, ANGELIDAKI I.Ammonia effect on hydrogenotrophic methanogens and syntrophic acetate oxidizing bacteria[J].FEMS Microbiology Ecology,2015,91(11):1-8 10.1093/femsec/fiv130
|
[58] |
LIU L, ZHANG T, WAN H, et al.Anaerobic co-digestion of animal manure and wheat straw for optimized biogas production by the addition of magnetite and zeolite[J].Energy Conversion & Management,2015,97:132-139
|
[59] |
LINDORFER H, WALTENBERGER R, K?LLNER K, et al.New data on temperature optimum and temperature changes in energy crop digesters[J].Bioresource Technology,2008,99(15):7011-7019 10.1016/j.biortech.2008.01.034
|
[60] |
SHANMUGAM P, HORAN N J.Optimising the biogas production from leather fleshing waste by co-digestion with MSW[J].Bioresource Technology,2009,100(18):4117-4120 10.1016/j.biortech.2009.03.052
|
[61] |
WANG Y Y, ZHANG Y L, WANG J B, et al.Effects of volatile fatty acid concentrations on methane yield and methanogenic bacteria[J].Biomass & Bioenergy,2009,33(5):848-853
|
[62] |
GAO S, ZHAO M, CHEN Y, et al.Tolerance response to in situ ammonia stress in a pilot-scale anaerobic digestion reactor for alleviating ammonia inhibition[J].Bioresource Technology,2015,198:372-379 10.1016/j.biortech.2015.09.044
|
[63] |
金仁村, 黄冠男, 马春, 等. 厌氧消化工艺的氨抑制现象[J]. 工业水处理,2010,30(4):9-12 10.3969/j.issn.1005-829X.2010.04.003
|
[64] |
KELLEHER B P, LEAHY J J, HENIHAN A M, et al.Advances in poultry litter disposal technology: A review[J].Bioresource Technology,2002,83(1):27-36 10.1016/S0960-8524(01)00133-X
|
[65] |
CALLAGHAN F J, WASE D A J, THAYANITHY K, et al.Co-digestion of waste organic solids: Batch studies[J].Bioresource Technology,1999,67(2):117-122 10.1016/S0960-8524(98)00108-4
|
[66] |
ZESHAN, KARTHIKEYAN O P, VISVANATHAN C.Effect of C/N ratio and ammonia-N accumulation in a pilot-scale thermophilic dry anaerobic digester[J].Bioresource Technology,2012,113(2):294-302 10.1016/j.biortech.2012.02.028
|
[67] |
EBNER J H, LABATUT R A, LODGE J S, et al.Anaerobic co-digestion of commercial food waste and dairy manure: Characterizing biochemical parameters and synergistic effects[J].Waste Management,2016,52:286-294 10.1016/j.wasman.2016.03.046
|
[68] |
YANGINGOMEC C, OZTURK I.Effect of maize silage addition on biomethane recovery from mesophilic co-digestion of chicken and cattle manure to suppress ammonia inhibition[J].Energy Conversion & Management,2013,71(1):92-100
|
[69] |
张彬, 蒋滔, 高立洪, 等. 猪粪与玉米秸秆混合中温发酵产气效果[J]. 环境工程学报,2014,8(11):4991-4997
|
[70] |
冯亚君, 袁海荣, 张良, 等. 玉米秸与鸡粪混合厌氧消化产气性能与协同作用[J]. 环境工程学报,2013,7(4):1489-1494
|
[71] |
DAHUNSI S O, ORANUSI S, OWOLABI J B, et al.Mesophilic anaerobic co-digestion of poultry dropping and Carica papaya peels: Modelling and process parameter optimization study[J].Bioresource Technology,2016,216:587-600 10.1016/j.biortech.2016.05.118
|
[72] |
HASSAN M, DING W, SHI Z, et al.Methane enhancement through co-digestion of chicken manure and thermo-oxidative cleaved wheat straw with waste activated sludge: A C/N optimization case[J].Bioresource Technology,2016,211:534-541 10.1016/j.biortech.2016.03.148
|
[73] |
杨安逸, 晏磊, 王彦杰, 等. 马铃薯渣与鸡粪混合原料厌氧发酵条件优化[J]. 可再生能源,2015,33(3):442-447
|
[74] |
WU S, NI P, LI J, et al.Integrated approach to sustain biogas production in anaerobic digestion of chicken manure under recycled utilization of liquid digestate: Dynamics of ammonium accumulation and mitigation control[J].Bioresource Technology,2016,205(1):75-81 10.1016/j.biortech.2016.01.021
|
[75] |
ABOUELENIEN F, FUJIWARA W, NAMBA Y, et al.Improved methane fermentation of chicken manure via ammonia removal by biogas recycle[J].Bioresource Technology,2010,101(16):6368-6373 10.1016/j.biortech.2010.03.071
|
[76] |
ROMERO-GüIZA M S, ASTALS S, CHIMENOS J M, et al.Improving anaerobic digestion of pig manure by adding in the same reactor a stabilizing agent formulated with low-grade magnesium oxide[J].Biomass & Bioenergy,2014,67(5):243-251
|
[77] |
HUANG H, HE L, LEI Z, et al.Contribution of precipitates formed in fermentation liquor to the enhanced biogasification of ammonia-rich swine manure by wheat-rice-stone addition[J].Bioresource Technology,2015,175:486-493 10.1016/j.biortech.2014.10.142
|
[78] |
MUMME J, SROCKE F, HEEG K, et al.Use of biochars in anaerobic digestion[J].Bioresource Technology,2014,164(7):189-197 10.1016/j.biortech.2014.05.008
|
[79] |
TIAN H, FOTIDIS I A, MANCINI E, et al.Different cultivation methods to acclimatise ammonia-tolerant methanogenic consortia[J].Bioresource Technology,2017,232:1-9 10.1016/j.biortech.2017.02.034
|
[80] |
KOSTER I W, LETTINGA G.Anaerobic digestion at extreme ammonia concentrations[J].Biological Wastes,1988,25(1):51-59 10.1016/0269-7483(88)90127-9
|
[81] |
CALLI B, MERTOGLU B, INANC B, et al.Effects of high free ammonia concentrations on the performances of anaerobic bioreactors[J].Process Biochemistry,2005,40(3):1285-1292 10.1016/j.procbio.2004.05.008
|
[82] |
Lü F, HAO L, GUAN D, et al.Synergetic stress of acids and ammonium on the shift in the methanogenic pathways during thermophilic anaerobic digestion of organics[J].Water Research,2013,47(7):2297-2306
|
[83] |
VRIEZE J D, HENNEBEL T, BOON N, et al.Methanosarcina: The rediscovered methanogen for heavy duty biomethanation[J].Bioresource Technology,2012,112(5):1-9 10.1016/j.biortech.2012.02.079
|
[84] |
WESTERHOLM M, LEVéEN L, SCHNüRER A.Bioaugmentation of syntrophic acetate-oxidizing culture in biogas reactors exposed to increasing levels of ammonia[J].Applied & Environmental Microbiology,2012,78(21):7619-7625
|
[85] |
LI Y, ZHANG Y, SUN Y, et al.The performance efficiency of bioaugmentation to prevent anaerobic digestion failure from ammonia and propionate inhibition[J].Bioresource Technology,2017,231:94-100 10.1016/j.biortech.2017.01.068
|
[86] |
TSAPEKOS P, KOUGIAS P G, VASILEIOU S A, et al.Bioaugmentation with hydrolytic microbes to improve the anaerobic biodegradability of lignocellulosic agricultural residues[J].Bioresource Technology,2017,234:350-359 10.1016/j.biortech.2017.03.043
|
[87] |
万钦, 吴树彪, 郎乾乾, 等. 微量元素对沼气厌氧发酵的影响[J]. 农业工程学报,2013,29(10):1-11
|
[88] |
B?CK A.Selenium Proteins Containing Selenocysteine[M].Manhattan:John Wiley & Sons Inc.,2006:1930
|
[89] |
BANKS C J, YUE Z, YING J, et al.Trace element requirements for stable food waste digestion at elevated ammonia concentrations[J].Bioresource Technology,2012,104(1):127-135 10.1016/j.biortech.2011.10.068
|
[90] |
李亚新, 董春娟, 徐明德. 厌氧消化过程中Fe、Co、Ni 对NH4+-N 的拮抗作用[J]. 城市环境与城市生态,2000,13(4):11-12
|