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[1]胡佩佩,侯鋒,范瑩,等.深度脫水污泥好氧發(fā)酵工藝研究[J].中國給水排水,2021,37(17):74-77.
HU Pei-pei,HOU Feng,FAN Ying,et al.Aerobic Fermentation Process of Deep Dewatering Sludge[J].China Water & Wastewater,2021,37(17):74-77.點(diǎn)擊復(fù)制
深度脫水污泥好氧發(fā)酵工藝研究
中國給水排水[ISSN:1000-4062/CN:12-1073/TU] 卷: 第37卷 期數(shù): 2021年第17期 頁碼: 74-77 欄目: 出版日期: 2021-09-01
Title:Aerobic Fermentation Process of Deep Dewatering Sludge
作者:胡佩佩1,侯鋒2,范瑩1,劉成軍1,陳力子1,盧先春2,周曉2(1.四川蓉信開工程設(shè)計(jì)有限公司,四川成都610041;2.國投信開水環(huán)境投資有限公司,北京101101)
Author(s):HU Pei-pei1,HOU Feng2,FAN Ying1,LIU Cheng-jun1,CHEN Li-zi1,LU Xian-chun2,ZHOU Xiao2(1. Sichuan Rongxinkai Engineering Design Co. Ltd., Chengdu 610041, China; 2. SDIC Xinkai Water Environment Investment Co. Ltd., Beijing 101101, China)
關(guān)鍵詞:污泥; 好氧發(fā)酵; 深度脫水; 含水率
Keywords:sludge; aerobic fermentation; deep dewatering; water content
摘要:好氧發(fā)酵是市政污泥處理處置的重要工藝。常規(guī)污泥好氧發(fā)酵工藝以機(jī)械脫水的濕污泥(含水率約為80%)為原料,為調(diào)節(jié)含水率,需添加大量輔料和返混料,存在物料成本高、占地大、發(fā)酵效率低等弊端。為此,以深度脫水后的污泥為原料,采用好氧發(fā)酵處理工藝,通過優(yōu)化物料配比進(jìn)行中試。以貴陽市新莊一期污水處理廠含水率在60%左右的低溫干化污泥為主要原料,添加總量約13%的輔料和返混料。發(fā)酵過程中記錄溫度和產(chǎn)品主要指標(biāo),結(jié)果表明,工藝改良后深度脫水污泥在大幅減少物料添加量、減小占地的情況下,可進(jìn)行正常的好氧發(fā)酵,同時(shí)達(dá)到加速升溫、縮短發(fā)酵周期的效果。
Abstract:Aerobic fermentation is an important process for municipal sludge treatment and disposal. The traditional aerobic fermentation process utilizes the mechanical dewatered sludge (water content is about 80%) as the raw material, and needs to add a large number of auxiliary materials and returned mixture to regulate the water content, which leads to the problems of high reagent cost, large footprint and low efficiency. In the present work, the aerobic fermentation of the deep dewatering sludge was carried out in a pilot-scale device by optimizing the ratio of different materials. The raw material was the mixture of low-temperature dry sludge with water content of about 60% from the first phase of Xinzhuang Sewage Treatment Plant in Guiyang and auxiliary materials and returned mixture with a proportion of about 13% of the total materials. The temperature and the main product indexes were recorded during the fermentation. The aerobic fermentation was carried out normally even if significantly reducing the dosage of the auxiliary materials to the deep dewatering sludge and footprint after modification of the process, and the modified process also accelerated the temperature rise and shortened the fermentation period.
相似文獻(xiàn)/References:
[1]劉常青,陳琬,曾藝芳,等.SARD與CSTR反應(yīng)器半連續(xù)發(fā)酵產(chǎn)氫能力對(duì)比[J].中國給水排水,2018,34(21):7.
LIU Chang qing,CHEN Wan,ZENG Yi fang,et al.Hydrogen Production Capacity of Semi continuous Fermentation of SARD and CSTR Bio hydrogen Production Reactor[J].China Water & Wastewater,2018,34(17):7.
[2]顏瑩瑩,梁遠(yuǎn),沙雪華,等.新冠肺炎疫情下關(guān)于減少污泥中病原體的思考[J].中國給水排水,2020,36(6):22.
[3]郭波,田瑜,范晨,等.綠色納米鐵/H2O2聯(lián)用兩性脫水劑調(diào)理污泥研究[J].中國給水排水,2020,36(13):62.
GUO Bo,TIAN Yu,FAN Chen,et al. Sludge Conditioning by Green Iron Nanoparticles/H2O2 Combined with Amphoteric Dewatering Agent [J].China Water & Wastewater,2020,36(17):62.
[4]王首都,黃申斌,魏小玲,等.立式移動(dòng)地板發(fā)酵倉技術(shù)在崇明某污水廠的應(yīng)用[J].中國給水排水,2020,36(14):138.
WANG Shou-du,HUANG Shen-bin,WEI Xiao-ling,et al.Application of Vertical Mobile Floor Fermentation Bin in a Sewage Treatment Plant in Chongming District[J].China Water & Wastewater,2020,36(17):138.
[5]許勁,范準(zhǔn),呂秋穎,等.山地城市污泥水熱炭化產(chǎn)物特性研究[J].中國給水排水,2020,36(21):21.
XU Jin,FAN Zhun,L Qiu-ying,et al.Characteristics of Hydrothermal Carbonization Products of Municipal Sludge in Mountainous Cities[J].China Water & Wastewater,2020,36(17):21.
[6]李金河,張波濤,劉寶玉,等.污泥中溫厭氧消化最佳溫度及改善機(jī)理分析[J].中國給水排水,2021,37(3):9.
LI Jin-he,ZHANG Bo-tao,LIU Bao-yu,et al.Optimal Reaction Temperature in Mesophilic Anaerobic Digestion of Waste Activated Sludge and Its Promotion Mechanism[J].China Water & Wastewater,2021,37(17):9.
[7]王麗花,呂國鈞,王飛,等.污泥干化焚燒系統(tǒng)的節(jié)能降耗研究[J].中國給水排水,2021,37(4):29.
WANG Li-hua,Lü Guo-jun,WANG Fei,et al.Research on Energy Saving and Consumption Reduction of Sludge Drying and Incineration System[J].China Water & Wastewater,2021,37(17):29.
[8]紀(jì)莎莎,黃瑾.污泥焚燒工程中的磷形態(tài)分布與磷遷移研究[J].中國給水排水,2021,37(5):26.
JI Sha-sha,HUANG Jin.Phosphorus Forms Distribution and Migration in Sludge Incineration Project[J].China Water & Wastewater,2021,37(17):26.
[9]馬彩霞,劉蕾,李碧清,等.強(qiáng)化化學(xué)淋濾對(duì)污泥重金屬溶出及磷釋放的影響[J].中國給水排水,2021,37(5):66.
MA Cai-xia,LIU Lei,LI Bi-qing,et al.Effect of Enhanced Chemical Leaching on Heavy Metal Dissolution and Phosphorus Release from Sludge[J].China Water & Wastewater,2021,37(17):66.
[10]李偉,常菁,王佳偉,等.熱水解高級(jí)厭氧消化系統(tǒng)的污泥消毒、減量與能量回收[J].中國給水排水,2021,37(16):19.
LI Wei,CHANG Jing,WANG Jia-wei,et al.Sludge Disinfection, Reduction and Energy Recovery by Anaerobic Digestion with Thermal Hydrolysis Pretreatment[J].China Water & Wastewater,2021,37(17):19.
更新日期/Last Update: 2021-09-01
[1]胡佩佩,侯鋒,范瑩,等.深度脫水污泥好氧發(fā)酵工藝研究[J].中國給水排水,2021,37(17):74-77.
HU Pei-pei,HOU Feng,FAN Ying,et al.Aerobic Fermentation Process of Deep Dewatering Sludge[J].China Water & Wastewater,2021,37(17):74-77.
點(diǎn)擊復(fù)制
深度脫水污泥好氧發(fā)酵工藝研究
中國給水排水[ISSN:1000-4062/CN:12-1073/TU] 卷: 第37卷 期數(shù): 2021年第17期 頁碼: 74-77 欄目: 出版日期: 2021-09-01
- Title:
- Aerobic Fermentation Process of Deep Dewatering Sludge
- 作者:
- 胡佩佩1,侯鋒2,范瑩1,劉成軍1,陳力子1,盧先春2,周曉2
- (1.四川蓉信開工程設(shè)計(jì)有限公司,四川成都610041;2.國投信開水環(huán)境投資有限公司,北京101101)
- Author(s):
- HU Pei-pei1,HOU Feng2,FAN Ying1,LIU Cheng-jun1,CHEN Li-zi1,LU Xian-chun2,ZHOU Xiao2
- (1. Sichuan Rongxinkai Engineering Design Co. Ltd., Chengdu 610041, China; 2. SDIC Xinkai Water Environment Investment Co. Ltd., Beijing 101101, China)
- 關(guān)鍵詞:
- 污泥; 好氧發(fā)酵; 深度脫水; 含水率
- Keywords:
- sludge; aerobic fermentation; deep dewatering; water content
- 摘要:
- 好氧發(fā)酵是市政污泥處理處置的重要工藝。常規(guī)污泥好氧發(fā)酵工藝以機(jī)械脫水的濕污泥(含水率約為80%)為原料,為調(diào)節(jié)含水率,
需添加大量輔料和返混料,存在物料成本高、占地大、發(fā)酵效率低等弊端。為此,以深度脫水后的污泥為原料,采用好氧發(fā)酵處理工藝,通過優(yōu)化物料配比進(jìn)行中試。以貴陽市新莊一期污水處理廠含水率在60%左右的低溫干化污泥為主要原料,添加總量約13%的輔料和返混料。發(fā)酵過程中記錄溫度和產(chǎn)品主要指標(biāo),結(jié)果表明,工藝改良后深度脫水污泥在大幅減少物料添加量、減小占地的情況下,可進(jìn)行正常的好氧發(fā)酵,同時(shí)達(dá)到加速升溫、縮短發(fā)酵周期的效果。
Abstract:- Aerobic fermentation is an important process for municipal sludge treatment and disposal. The traditional aerobic fermentation process utilizes the mechanical dewatered sludge (water content is about 80%) as the raw material, and needs to add a large number of auxiliary materials and returned mixture to regulate the water content, which leads to the problems of high reagent cost, large footprint and low efficiency. In the present work, the aerobic fermentation of the deep dewatering sludge was carried out in a pilot-scale device by optimizing the ratio of different materials. The raw material was the mixture of low-temperature dry sludge with water content of about 60% from the first phase of Xinzhuang Sewage Treatment Plant in Guiyang and auxiliary materials and returned mixture with a proportion of about 13% of the total materials. The temperature and the main product indexes were recorded during the fermentation. The aerobic fermentation was carried out normally even if significantly reducing the dosage of the auxiliary materials to the deep dewatering sludge and footprint after modification of the process, and the modified process also accelerated the temperature rise and shortened the fermentation period.
相似文獻(xiàn)/References:
[1]劉常青,陳琬,曾藝芳,等.SARD與CSTR反應(yīng)器半連續(xù)發(fā)酵產(chǎn)氫能力對(duì)比[J].中國給水排水,2018,34(21):7.
LIU Chang qing,CHEN Wan,ZENG Yi fang,et al.Hydrogen Production Capacity of Semi continuous Fermentation of SARD and CSTR Bio hydrogen Production Reactor[J].China Water & Wastewater,2018,34(17):7.
[2]顏瑩瑩,梁遠(yuǎn),沙雪華,等.新冠肺炎疫情下關(guān)于減少污泥中病原體的思考[J].中國給水排水,2020,36(6):22.
[3]郭波,田瑜,范晨,等.綠色納米鐵/H2O2聯(lián)用兩性脫水劑調(diào)理污泥研究[J].中國給水排水,2020,36(13):62.
GUO Bo,TIAN Yu,FAN Chen,et al. Sludge Conditioning by Green Iron Nanoparticles/H2O2 Combined with Amphoteric Dewatering Agent [J].China Water & Wastewater,2020,36(17):62.
[4]王首都,黃申斌,魏小玲,等.立式移動(dòng)地板發(fā)酵倉技術(shù)在崇明某污水廠的應(yīng)用[J].中國給水排水,2020,36(14):138.
WANG Shou-du,HUANG Shen-bin,WEI Xiao-ling,et al.Application of Vertical Mobile Floor Fermentation Bin in a Sewage Treatment Plant in Chongming District[J].China Water & Wastewater,2020,36(17):138.
[5]許勁,范準(zhǔn),呂秋穎,等.山地城市污泥水熱炭化產(chǎn)物特性研究[J].中國給水排水,2020,36(21):21.
XU Jin,FAN Zhun,L Qiu-ying,et al.Characteristics of Hydrothermal Carbonization Products of Municipal Sludge in Mountainous Cities[J].China Water & Wastewater,2020,36(17):21.
[6]李金河,張波濤,劉寶玉,等.污泥中溫厭氧消化最佳溫度及改善機(jī)理分析[J].中國給水排水,2021,37(3):9.
LI Jin-he,ZHANG Bo-tao,LIU Bao-yu,et al.Optimal Reaction Temperature in Mesophilic Anaerobic Digestion of Waste Activated Sludge and Its Promotion Mechanism[J].China Water & Wastewater,2021,37(17):9.
[7]王麗花,呂國鈞,王飛,等.污泥干化焚燒系統(tǒng)的節(jié)能降耗研究[J].中國給水排水,2021,37(4):29.
WANG Li-hua,Lü Guo-jun,WANG Fei,et al.Research on Energy Saving and Consumption Reduction of Sludge Drying and Incineration System[J].China Water & Wastewater,2021,37(17):29.
[8]紀(jì)莎莎,黃瑾.污泥焚燒工程中的磷形態(tài)分布與磷遷移研究[J].中國給水排水,2021,37(5):26.
JI Sha-sha,HUANG Jin.Phosphorus Forms Distribution and Migration in Sludge Incineration Project[J].China Water & Wastewater,2021,37(17):26.
[9]馬彩霞,劉蕾,李碧清,等.強(qiáng)化化學(xué)淋濾對(duì)污泥重金屬溶出及磷釋放的影響[J].中國給水排水,2021,37(5):66.
MA Cai-xia,LIU Lei,LI Bi-qing,et al.Effect of Enhanced Chemical Leaching on Heavy Metal Dissolution and Phosphorus Release from Sludge[J].China Water & Wastewater,2021,37(17):66.
[10]李偉,常菁,王佳偉,等.熱水解高級(jí)厭氧消化系統(tǒng)的污泥消毒、減量與能量回收[J].中國給水排水,2021,37(16):19.
LI Wei,CHANG Jing,WANG Jia-wei,et al.Sludge Disinfection, Reduction and Energy Recovery by Anaerobic Digestion with Thermal Hydrolysis Pretreatment[J].China Water & Wastewater,2021,37(17):19.
更新日期/Last Update: 2021-09-01