Source Journal of CSCD
Source Journal for Chinese Scientific and Technical Papers
Core Journal of RCCSE
Included in JST China
Volume 41 Issue 7
Jul.  2023
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DONG Wenyi, DU Hong, ZENG Yuanxin, HUANG Xiao, WANG Hongjie, DAI Zhongyi. REVIEW OF PRETREATMENT PROCESS FOR MUNICIPAL SLUDGE FERMENTATION FOR PRODUCING VOLATILE FATTY ACIDS[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(7): 241-251. doi: 10.13205/j.hjgc.202307033
Citation: DONG Wenyi, DU Hong, ZENG Yuanxin, HUANG Xiao, WANG Hongjie, DAI Zhongyi. REVIEW OF PRETREATMENT PROCESS FOR MUNICIPAL SLUDGE FERMENTATION FOR PRODUCING VOLATILE FATTY ACIDS[J]. ENVIRONMENTAL ENGINEERING , 2023, 41(7): 241-251. doi: 10.13205/j.hjgc.202307033

REVIEW OF PRETREATMENT PROCESS FOR MUNICIPAL SLUDGE FERMENTATION FOR PRODUCING VOLATILE FATTY ACIDS

doi: 10.13205/j.hjgc.202307033
  • Received Date: 2022-09-06
  • Producing volatile fatty acids (VFAs) by anaerobic fermentation from municipal sludge to strengthen nitrogen and phosphorus removal of urban sewage, is one of the most effective sludge treatment and disposal methods to realize the purpose of treating waste with waste. However, hydrolysis is the limiting step of VFAs production from sludge. Improving sludge hydrolysis efficiency by pretreatment is an efficient way to increase VFAs yield significantly. Many pretreatment strategies have been reported, and the mechanism and impact of enhancing the VFAs production process are different. Therefore, this review summarized and compared the commonly used pre-treatment processes for promoting sludge fermentation to produce VFAs, elaborated on the principles, characteristics, and application effect of each pre-treatment process, compared and analyzed their economic costs, comprehensively analyzed their existing problems, and looked forward to future development directions, in order to provide literature reference for the design and optimization of sludge fermentation acid production engineering schemes.
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  • [1]
    宋盈盈.中国环保产业发展阶段及企业竞争力评价方法研究与应用[D].北京:清华大学, 2018.
    [2]
    HUANG X, DONG W Y, WANG H J, et al.Enhance primary sludge acidogenic fermentation with CaO2 addition:investigation on soluble substrate generation, sludge dewaterability, and molecular biological characteristics[J].Journal of Cleaner Production, 2019, 228(8/9/10):1526-1536.
    [3]
    FANG W, ZHANG X D, ZHANG P Y, et al.Overview of key operation factors and strategies for improving fermentative volatile fatty acid production and products regulation from sewage sludge[J].Journal of Environmental Sciences, 2020, 87:93-111.
    [4]
    万琼, 贺亮, 裴立影, 等.接种初沉污泥快速启动活性污泥系统[J].水处理技术, 2011, 37(9):47-50.
    [5]
    苏高强.剩余污泥碱性发酵产酸性能与优化[D].北京:北京工业大学, 2013.
    [6]
    BATSTONE D, KELLER J, ANGELIDAKE R, et al.The IWA anaerobic digestion model No.1(ADM1)[J].Water Science and Technology, 2002, 45(10):65-73.
    [7]
    BOUGRIER C, CARRōRE H, DELGENōS J P.Solubilisation of waste-activated sludge by ultrasonic treatment[J].Chemical Engineering Journal, 2005, 106(2):163-169.
    [8]
    ZHANG X D, YE P, WU Y J, et al.Research on dewatering ability of municipal sludge under the treatment of coupled acid and microwave[J].Geofluids, 2021, 2021.
    [9]
    Ultrasonic sludge disintegration is a "Bubbly" solution for an anaerobic digestion or BNR process[EB/OL].[2022-05-17].https://docplayer.net/55320687-Ultrasonic-sludge-disintegration-is-a-bubbly-solution-for-an-anaerobic-digestion-or-bnr-process.htmL.
    [10]
    BOZKURT Y C, APUL O G.Critical review for microwave pretreatment of waste-activated sludge prior to anaerobic digestion[J].Current Opinion in Environmental Science & Health, 2020, 14:1-9.
    [11]
    赵晶, 陈津, 张猛, 等.微波低温加热过程中的非热效应[J].材料导报, 2007,11(增刊2):4-6.
    [12]
    ZN E, ERDINLER A.Effects of microwave, H2O2/MW and H2O2/heat pre-treatments on the methane production from wastewater sludges:experimental and modeling approach[J].Environmental Science and Pollution Research, 2019, 26(1):1-11.
    [13]
    APPELS L, HOUTMEYERS S, DEGRōVE J, et al.Influence of microwave pre-treatment on sludge solubilization and pilot scale semi-continuous anaerobic digestion[J].Bioresource Technology, 2013, 128:598-603.
    [14]
    YU Q, LEI H Y, YU G W, et al.Influence of microwave irradiation on sludge dewaterability[J].Chemical Engineering Journal, 2009, 155(1/2):88-93.
    [15]
    ESKICIOGLU C, KENNEDY K J, DROSTE R L.Enhanced disinfection and methane production from sewage sludge by microwave irradiation[J].Desalination, 2009, 248(1/2/3):279-285.
    [16]
    AHN J H, SHIN S G, HWANG S.Effect of microwave irradiation on the disintegration and acidogenesis of municipal secondary sludge[J].Chemical Engineering Journal, 2009, 153(1/2/3):145-150.
    [17]
    王艳杰, 严媛媛, 郭迎庆.微波强化预处理促进低有机质污泥厌氧消化[J].环境工程, 2014, 32(3):92-95.
    [18]
    李海兵, 刘志英, 林承顺, 等.微波预处理对剩余污泥生化处理的影响[J].环境工程学报, 2018, 12(4):1254-1260.
    [19]
    ZHANG J Y, LV C, TONG J, et al.Optimization and microbial community analysis of anaerobic co-digestion of food waste and sewage sludge based on microwave pretreatment[J].Bioresource Technology, 2016, 200:253-261.
    [20]
    TORECI I, KENNEDY K J, DROSTE R L.Evaluation of continuous mesophilic anaerobic sludge sigestion after high temperature microwave pretreatment[J].Water Research, 2009, 43(5):1273-1284.
    [21]
    李娟娟, 宋秀兰.微波预处理污泥水解产酸特性研究[J].环境工程, 2013,31(5):91-94.
    [22]
    GIL A, SILES J A, MARTÍN M A, et al.Effect of microwave pretreatment on semi-continuous anaerobic digestion of sewage sludge[J].Renewable Energy, 2018, 115:917-925.
    [23]
    SERRANO A, SILES J A, MARTÍN M A, et al.Improvement of anaerobic digestion of sewage sludge through microwave pre-treatment[J].Journal of Environmental Management, 2016, 177:231-239.
    [24]
    房平, 唐安平, 付兴民, 等.污泥性质对微波预处理-厌氧消化的影响及古菌群落结构分析[J].环境科学, 2018, 39(11):5108-5115.
    [25]
    薛飞, 陈钦, 许士洪, 等.超声与溶菌酶协同强化印染污泥溶胞效果研究[J].应用化工, 2020,49(8):1933-1937.
    [26]
    YAN Y Y, FENG L Y, ZHANG C J, et al.Ultrasonic enhancement of waste activated sludge hydrolysis and volatile fatty acids accumulation at pH 10.0[J].Water Research, 2010, 44(11):3329-3336.
    [27]
    陈传政.超声破解剩余活性污泥的实验与理论研究[D].沈阳:东北大学, 2013.
    [28]
    容明知, 何国富, 徐慧敏.超声预处理对剩余污泥酶活性的影响[J].环境工程学报, 2017, 11(7):4320-4324.
    [29]
    LIU Y L, LI X, KANG X R, et al.Effect of extracellular polymeric substances disintegration by ultrasonic pretreatment on waste activated sludge acidification[J].International Biodeterioration & Biodegradation, 2015, 102:131-136.
    [30]
    LI X Y, GUO S Y, PENG Y Z, et al.Anaerobic digestion using ultrasound as pretreatment approach:Changes in waste activated sludge, anaerobic digestion performances and digestive microbial populations[J].Biochemical Engineering Journal, 2018, 139:139-145.
    [31]
    NIU Q Q, XU Q X, WANG Y L, et al.Enhanced hydrogen accumulation from waste activated sludge by combining ultrasonic and free nitrous acid pretreatment:performance, mechanism, and implication[J].Bioresource Technology, 2019, 285:121363.
    [32]
    LEE I S, RITTMANN B E.Effect of low solids retention time and focused pulsed pre-treatment on anaerobic digestion of waste activated sludge[J].Bioresource Technology, 2011, 102(3):2542-2548.
    [33]
    朱涛, 康梦远, 王晓磊, 等.高压脉冲电场技术在污泥资源化利用的试验[J].净水技术, 2020, 39(2):114-117

    ,139.
    [34]
    甘永平, 饶祎, 姚兵, 等.高压脉冲电解-压滤联合实现城市污泥深度脱水[J].环境工程, 2019, 37(3):13-16.
    [35]
    安少锋, 吴江渤, 押玉荣,等.高压脉冲电场处理污泥的试验研究[J].中国给水排水, 2016,32(19):120-123.
    [36]
    代勤, 张文哲, 于潘芬, 等.热、热碱处理对污泥溶胞和溶解性有机物的影响[J].环境科学, 2018, 39(5):2283-2288.
    [37]
    JOSE M A, SARA I P, JEZABEL S, et al.Enhancement of methane production in mesophilic anaerobic digestion of secondary sewage sludge by advanced thermal hydrolysis pretreatment[J].Water Research, 2015, 71:330-340.
    [38]
    ZHANG D D, JIANG H L, SUN J, et al.Effect of thermal hydrolysis pretreatment on volatile fatty acids production in sludge acidification and subsequent polyhydroxyalkanoates production[J].Bioresource Technology, 2019, 279:92-100.
    [39]
    WILSON C, TANNERU C T, BANJADE S, et al.Anaerobic digestion of raw and thermally hydrolyzed wastewater solids under various operational conditions.[J].Water Environment Research A Research Publication of the Water Environment Federation, 2011, 83(9):815-25.
    [40]
    FERRER I, PONSA S, VAZQUEZ F, et al.Increasing biogas production by thermal (70℃) sludge pre-treatment prior to thermophilic anaerobic digestion[J].Biochemical Engineering Journal, 2008, 42(2):186-192.
    [41]
    XUE Y G, LIU H J, CHEN S S, et al.Effects of thermal hydrolysis on organic matter solubilization and anaerobic digestion of high-solid sludge[J].Chemical Engineering Journal, 2015, 264:174-180.
    [42]
    DWYER J, STARRENBURG D, TAIT S, et al.Decreasing activated sludge thermal hydrolysis temperature reduces product colour, without decreasing degradability[J].Water Research, 2008, 42(18):4699-4709.
    [43]
    陈乙平, 赵阳国, 郭亮.加热和鼠李糖脂预处理促进剩余污泥厌氧发酵积累短链脂肪酸[J].环境科学学报, 2020, 40(3):1004-1010.
    [44]
    刘阳, 曾薇, 韩玉伟, 等.热水解预处理对剩余污泥可生物降解性的影响[J].环境工程学报, 2016,10(8):4445-4450.
    [45]
    高源, 韩芸, 韩露, 等.不同温度水热处理对高含固污泥有机物转化及组分的影响[J].环境工程学报, 2020,14(10):2823-2830.
    [46]
    查湘义, 韩春威, 宫磊.水热预处理对剩余污泥有机物释放的影响[J].工业水处理, 2017, 37(10):35-38.
    [47]
    王在钊, 贾通通, 王蛟秦, 等.水热+厌氧消化对污泥碳、氮、磷溶出的影响[J].环境工程技术学报, 2017, 7(3):300-305.
    [48]
    BISWAL B K, HUANG H, DAI J, et al.Impact of low-thermal pretreatment on physicochemical properties of saline waste activated sludge, hydrolysis of organics and methane yield in anaerobic digestion[J].Bioresource Technology, 2019, 297:122423.
    [49]
    YANG C X, HE Z W, GUO Z C, et al.Effects of temperature on hydrolysis performance and short-chain fatty acids production during thermophilic micro-aerobic fermentation of waste activated sludge[J].Desalination and Water Treatment, 2016, 57(28):13183-13189.
    [50]
    韩鹏, 刘和, 丁春华, 等.蒸汽爆破对城市污泥预处理和厌氧发酵产酸的影响[J].中国环境科学, 2017, 37(1):238-244.
    [51]
    宁欣强, 潘倩, 黄燕, 等.剩余污泥蒸汽爆破处理工艺优化[J].工业水处理, 2019, 39(6):18-21.
    [52]
    LUO K, PANG Y, YANG Q, et al.A critical review of volatile fatty acids produced from waste activated sludge:enhanced strategies and its applications[J].Environmental Science and Pollution Research, 2019:13984-13998.
    [53]
    肖本益, 刘俊新.污水处理系统剩余污泥碱处理融胞效果研究[J].环境科学, 2006, 27(2):319-323.
    [54]
    HE Z W, YANG C X, WANG L, et al.Feasibility of short-term fermentation for short-chain fatty acids production from waste activated sludge at initial pH10:role and significance of rhamnolipid[J].Chemical Engineering Journal, 2016, 290:125-135.
    [55]
    彭永臻, 邢立群, 金宝丹, 等.强碱预处理和碱性强度对剩余污泥发酵的影响[J].北京工业大学学报, 2016, 42(2):123-130.
    [56]
    KIM J, PARK C, KIM T H, et al.Effects of various pretreatments for enhanced anaerobic digestion with waste activated sludge[J].Journal of Bioscience & Bioengineering, 2003, 95(3):271-275.
    [57]
    张闻多, 余雷, 刘和, 等.工程规模下碱类型对污泥预处理效果及发酵产酸的影响[J].环境工程学报, 2018, 12(5):245-255.
    [58]
    STUCKEY D C, MCCARTY P L.The effect of thermal pretreatment on the anaerobic biodegradability and toxicity of waste activated sludge[J].Water Research, 1984, 11(18):1343-1353.
    [59]
    PING Q, ZHENG M, DAI X X, et al.Metagenomic characterization of the enhanced performance of anaerobic fermentation of waste activated sludge with CaO2 addition at ambient temperature:fatty acid biosynthesis metabolic pathway and CAZymes[J].Water Research, 2020, 170:115309.
    [60]
    ZHEN G Y, LU X Q, WANG B Y, et al.Synergetic pretreatment of waste activated sludge by Fe(Ⅱ)-activated persulfate oxidation under mild temperature for enhanced dewaterability[J].Bioresource Technology, 2012, 124:29-36.
    [61]
    WU Y X, LIU X R, WANG D B, et al.Iron electrodes activating persulfate enhances acetic acid production from waste activated sludge[J].Chemical Engineering Journal, 2020, 390:124580.
    [62]
    LI H, WANG Y, ZHENG H.Variations of moisture and organics in activated sludge during Fe0/S2O82- conditioning-horizontal electro-dewatering process.[J].Water Research, 2017, 129:83-93.
    [63]
    YANG J N, LIU X R, WANG D B, et al.Mechanisms of peroxymonosulfate pretreatment enhancing production of short-chain fatty acids from waste activated sludge[J].Water Research, 2019,148:239-249.
    [64]
    JIN B D, NIU J T, DAI J W, et al.New insights into the enhancement of biochemical degradation potential from waste activated sludge with low organic content by Potassium Monopersulfate treatment[J].Bioresource Technology, 2018, 265:8-16.
    [65]
    WU Y Q, SONG K.Effect of thermal activated peroxydisulfate pretreatment on short-chain fatty acids production from waste activated sludge anaerobic fermentation[J].Bioresource Technology, 2019, 292:121977.
    [66]
    LUO J Y, ZHU Y, ZHANG Q, et al.Promotion of short-chain fatty acids production and fermented sludge properties via persulfate treatments with different activators:Performance and mechanisms[J].Bioresource Technology, 2020, 295:122278.
    [67]
    金宝丹, 王淑莹, 邢立群, 等.单过硫酸氢钾复合盐对剩余污泥厌氧发酵的影响[J].东南大学学报(自然科学版), 2016, 46(2):434-443.
    [68]
    樊雅欣, 刘红燕, 潘凌峰, 等.活化方式对过硫酸盐强化剩余污泥发酵的影响[J].中国环境科学, 2019, 39(6):2460-2466.
    [69]
    YANG Q, LUO K, LI X M, et al.Enhanced efficiency of biological excess sludge hydrolysis under anaerobic digestion by additional enzymes[J].Bioresource Technology, 2010, 101(9):2924-2930.
    [70]
    SELVAKUMAR P, SIVASHANMUGAM P.Multi-hydrolytic biocatalyst from organic solid waste and its application in municipal waste activated sludge pre-treatment towards energy recovery[J].Process Safety & Environmental Protection, 2018, 117:1-10.
    [71]
    陈伟, 贾原媛, 郑伟, 等.胞外多聚物对酶催化污泥厌氧水解的影响研究[J].环境科学, 2011, 32(8):2334-2339.
    [72]
    YU S Y, ZHANG G M, ZHAO Z W.Effect of endogenous amylase on characterization and anaerobic digestibility of sludge[J].Harbin Gongye Daxue Xuebao/Journal of Harbin Institute of Technology, 2013, 45(4):48-52.
    [73]
    潘维, 莫创荣李小明, 等.外加淀粉酶预处理污泥厌氧发酵产氢研究[J] 环境科学学报, 2011, 31(4):785-790.
    [74]
    YU S Y, ZHANG G M, LI J Z, et al.Effect of endogenous hydrolytic enzymes pretreatment on the anaerobic digestion of sludge[J].Bioresource Technology, 2013, 146:758-761.
    [75]
    LIU H, SHI J S, ZHAN X M, et al.Selective acetate production with CO2 sequestration through acetogen-enriched sludge inoculums in anaerobic digestion[J].Biochemical Engineering Journal, 2017, 121:163-170.
    [76]
    LIU H B, WANG L, YIN B, et al.Deep exploitation of refractory organics in anaerobic dynamic membrane bioreactor for volatile fatty acids production from sludge fermentation:performance and effect of protease catalysis.[J].Journal of Environmental Management, 2018, 217:478-485.
    [77]
    徐慧敏, 何国富, 戴晓虎, 等.超声联合碱解预处理对剩余污泥破解和厌氧消化的影响[J].环境工程学报, 2017, 11(5):3073-3078.
    [78]
    LU D, XIAO K K, CHEN Y, et al.Transformation of dissolved organic matters produced from alkaline-ultrasonic sludge pretreatment in anaerobic digestion:from macro to micro[J].Water research, 2018, 142:138-146.
    [79]
    ZOU X M, YANG R J, ZHOU X, et al.Effects of mixed alkali-thermal pretreatment on anaerobic digestion performance of waste activated sludge[J].Journal of Cleaner Production, 2020:120940.
    [80]
    TRZCINSKI A P, TIAN X, WANG C, et al.Combined ultrasonication and thermal pre-treatment of sewage sludge for increasing methane production[J].Journal of Environmental Science and Health, Part A, 2015, 50(2):213-223.
    [81]
    YENENEH A M, KAYAALP A, SEN T K, et al.Effect of microwave and combined microwave-ultrasonic pretreatment on anaerobic digestion of mixed real sludge[J].Journal of Environmental Chemical Engineering, 2015, 3(4):2514-2521.
    [82]
    GOKCE K, EMINE U, CIGDEM E.Comparative analysis of bacterial and archaeal community structure in microwave pretreated thermophilic and mesophilic anaerobic digesters utilizing mixed sludge under organic overloading[J].Water, 2020, 12(3).
    [83]
    毛秋燕, 赵栩宁, 苏宇傲, 等.不同预处理方式对剩余污泥中活菌菌群及ARGs的影响[J].中国环境科学, 2020, 40(6):2537-2545.
    [84]
    刘长青, 张峰, 张雪, 等.热水解对污泥高温厌氧消化产气及群落结构的影响[J].中国给水排水, 2017, 33(9):26-30.
    [85]
    YANG C X, ZHAO S, GUO Z C, et al.Alkaline aided thermophiles pretreatment of waste activated sludge to increase short chain fatty acids production:microbial community evolution by alkaline on hydrolysis and fermentation[J].Environmental Research, 2020, 186:109503.
    [86]
    SUN R, XING D F, JIA J N, et al.Methane production and microbial community structure for alkaline pretreated waste activated sludge[J].Bioresource Technology, 2014, 169:496-501.
    [87]
    樊雅欣.过硫酸盐预处理协同硫酸盐还原菌强化剩余污泥厌氧发酵产酸研究[D].太原:太原理工大学, 2019.
    [88]
    罗琨.外加水解酶强化剩余污泥水解和酸化的研究[D].长沙:湖南大学, 2013.
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