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21.
为了研究餐厨垃圾固态发酵过程中挥发性脂肪酸(VFAs)与产气的变化关系,采用中温(37.0±0.2)℃连续式发酵,在完全混合CSTR反应器中连续运行100 d,分析餐厨垃圾固态发酵过程的启动、运行、失衡、失衡后恢复及实现固态发酵全过程各参数的变化趋势,重点研究VFAs各成分与产气、pH等的关系.结果表明,餐厨垃圾固态发酵实验过程可划分为4个时期:适应期(0~13 d)、启动期(14~30 d)、抑制期(31~50d)、恢复及稳定期(51~100 d).不同时期的容积产气率、VFAs及各参数均表现出不同的阶段性变化.在餐厨垃圾固态发酵全过程中,pH保持在5~7之间,正丁酸比例一直处于较高水平;VFAs与pH和容积产气率在初期基本保持反比关系,最终在稳定期达到平衡,均稳定在一定范围内波动.在恢复及稳定阶段以NaOH稀碱液调节当日回流渗滤液的pH值,在第63 d时pH值上升至6.76,VFAs含量稳定在20~22 g·L~(-1)之间,产气量明显提高;在81 d时TS达到20%以上,系统容积产气量和生物降解率均保持相对稳定.  相似文献   
22.
● We have provided an activated method to remove the toxicity of antibiotic residue. ● PFRB can greatly improve the salt adsorption capacity of MCDI. ● The hierarchical porous and abundant O/N-doped played the key role for the high-capacity desalination. ● A new field of reuse of penicillin fermentation residue has been developed. Membrane capacitive deionization (MCDI) is an efficient desalination technology for brine. Penicillin fermentation residue biochar (PFRB) possesses a hierarchical porous and O/N-doped structure which could serve as a high-capacity desalination electrode in the MCDI system. Under optimal conditions (electrode weight, voltage, and concentration) and a carbonization temperature of 700 °C, the maximum salt adsorption capacity of the electrode can reach 26.4 mg/g, which is higher than that of most carbon electrodes. Furthermore, the electrochemical properties of the PFRB electrode were characterized through cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) with a maximum specific capacitance of 212.18 F/g. Finally, biotoxicity tests have showed that PFRB was non-biotoxin against luminescent bacteria and the MCDI system with the PFRB electrode remained stable even after 27 adsorption–desorption cycles. This study provides a novel way to recycle penicillin residue and an electrode that can achieve excellent desalination.  相似文献   
23.
Shortage in phosphorus (P) resources and P wastewater pollution is considered as a serious problem worldwide. The application of modified biochar for P recovery from wastewater and reuse of recovered P as agricultural fertilizer is a preferred process. This work aims to develop a calcium and magnesium loaded biochar (Ca–Mg/biochar) application for P recovery from biogas fermentation liquid. The physico-chemical characterization, adsorption efficiency, adsorption selectivity, and postsorption availability of Ca-Mg/biochar were investigated. The synthesized Ca–Mg/biochar was rich in organic functional groups and in CaO and MgO nanoparticles. With the increase in synthesis temperature, the yield decreased, C content increased, H content decreased, N content remained the same basically, and BET surface area increased. The P adsorption of Ca–Mg/biochar could be accelerated by nano-CaO and nano-MgO particles and reached equilibrium after 360 min. The process was endothermic, spontaneous, and showed an increase in the disorder of the solid–liquid interface. Moreover, it could be fitted by the Freundlich model. The maximum P adsorption amounts were 294.22, 315.33, and 326.63 mg/g. The P adsorption selectivity of Ca–Mg/biochar could not be significantly influenced by the typical pH level of biogas fermentation liquid. The nano-CaO and nano-MgO particles of Ca–Mg/biochar could reduce the negative interaction effects of coexisting ions. The P releasing amounts of postsorption Ca–Mg/biochar were in the order of Ca–Mg/B600 > Ca–Mg/B450 > Ca–Mg/B300. Results revealed that postsorption Ca–Mg/biochar can continually release P and is more suitable for an acid environment.  相似文献   
24.
主要研究了不同类废弃有机物厌氧产酸过程中产生的挥发性脂肪酸的产量和组成比例。研究发现,废糖蜜溶液、蛋白废液和淀粉废液在达到最高产酸量时,超过50%的VFAs是乙酸,其次是丙酸,还含有少量的丁酸和戊酸。废甘油溶液在达到最高产酸量时,产生的VFAs的主要成分是丙酸。4种有机废液中,相同初始COD浓度条件下,淀粉废液产生的VFAs产量最多,初始COD为5000mg/L时最高产量为2.321g/L,其次是废甘油溶液,最高产量是2.244g/L。  相似文献   
25.
秸秆是世界上数量最大的可再生资源,但是秸秆内木质纤维素的复杂结构和难降解性限制了秸秆的应用,因此秸秆预处理成为秸秆发酵产气的重要一环。本文介绍了木质纤维素预处理物理技术、化学技术、生物技术、联合处理技术和秸秆厌氧发酵研究进展,并对秸秆预处理技术前景进行展望。  相似文献   
26.
旨在通过生物酶调节(碱性蛋白酶、中性蛋白酶和α-淀粉酶)提高初沉污泥的厌氧发酵效率,并通过微生物群落结构解析,SCFAs (short-chain fatty acids,SCFAs)组分分析等揭示其调控机理.结果表明,3种生物酶均可增强初沉污泥水解和产酸作用,碱性蛋白酶调控系统对初沉污泥厌氧发酵的促进效果最为明显,发酵第4d SCFAs的产量和产率分别达到1508mg COD/L和0.174g COD/g VSS.对比控制组,SCFAs的产量和产率分别增加了1129mg COD/L和0.13g COD/g VSS.微生物群落结构分析表明,在碱性蛋白酶调控发酵系统中,LentimicrobiumProteiniphilumBacteroides等发酵相关菌群的相对丰度得到了改善,MethanosaetaMethanospirillum等产甲烷古菌的活性受到了抑制.同时,生物酶调控对促进发酵过程乙酸占比也有促进作用.  相似文献   
27.
During the acidogenic fermentation converting waste activated sludge (WAS) into short-chain fatty acids (SCFA), hydrolysis of complex organic polymers is a limiting step and the transformation of harmful substances (such as antibiotics) during acidogenic fermentation is unknown. In this study, potassium ferrate (K2FeO4) oxidation was used as a pretreatment strategy for WAS acidogenic fermentation to increase the hydrolysis of sludge and destruct the harmful antibiotics. Pretreatment with K2FeO4 can effectively increase the SCFA production during acidogenic fermentation and change the distribution of SCFA components. With the dosage of 0.2 g/g TS, the maximum SCFA yield was 4823 mg COD/L, which is 28.3 times that of the control group; acetic acid accounts for more than 90% of the total SCFA. The higher dosage (0.5 g/g TS) can further increase the proportion of acetic acid, but inhibit the overall performance of SCFA production. Apart from the promotion of hydrolysis and acidogenesis, K2FeO4 pretreatment can also simultaneously oxidizes and degrades part of the antibiotics in the sludge. When the dosage is 0.5 g/g TS, the degradation efficacy of antibiotics is the most significant, and the contents of ofloxacin, azithromycin, and tetracycline in the sludge are reduced by 69%, 42%, and 50%, respectively. In addition, K2FeO4 pretreatment can also promote the release of antibiotics from sludge flocs, which is conducive to the simultaneous degradation of antibiotics in the subsequent biological treatment process.  相似文献   
28.
研究利用纤维素分解菌F2对玉米秸秆进行堆沤预处理,将经不同堆沤预处理时间后的秸秆与猪粪混合进行厌氧发酵产沼气试验。结果发现,堆沤15 d后秸秆的总有机碳含量降低了10.06%,VS去除率和纤维素降解率比未加菌堆沤预处理分别提高了10.74%、10.60%;加菌堆沤预处理后的秸秆厌氧发酵甲烷产气率、干物质产气率、发酵前后VS去除率均高于未加菌堆沤预处理后的秸秆,且产气效率也有明显的提高;加菌堆沤预处理10 d的秸秆比未加菌堆沤预处理15 d的秸秆提前了2 d达到产气高峰,累计产气量达到21 957 mL,比未加菌堆沤预处理15 d的秸秆增加了1 629 mL。实验结果表明:该纤维素分解菌对玉米秸秆纤维素有较强的降解能力,并在一定程度上促进了有机碳的矿化;有效地提高了秸秆的生物降解性能,缩短了预处理所需时间;同时提高了玉米秸秆的利用率和产气潜力。  相似文献   
29.
餐厨垃圾综合资源化处理技术实例研究   总被引:1,自引:0,他引:1  
舒淼  刘阳  卢海威  李娟  肖娟 《环境工程》2012,(Z2):321-322,423
在目前餐厨垃圾处理现状基础上,介绍了一种餐厨垃圾处理工艺,采用机械生物处理技术,包括收运系统、粉碎分选预处理、厌氧发酵生物处理、沼气热电联供、有机堆肥、废水处理、除臭系统多个环节,分离出油脂进行回收,垃圾厌氧发酵产生沼气发电,沼渣进行堆肥,以期实现餐厨垃圾减量化、无害化、资源化,解决"垃圾猪"、"地沟油"问题。  相似文献   
30.
卢建宏  李卓  孙驰贺  付乾  李俊  张亮  廖强  朱恂 《中国环境科学》2019,39(10):4157-4163
区别于传统的稀释或加缓冲剂调节pH值的方法,本文提出采用微生物电解池(MEC)电调控暗发酵尾液pH值,并进一步采用微生物电合成系统(MES)降解废液产甲烷.结果表明,在MEC处理产氢暗发酵尾液过程中,伴随着阴极侧氢气的产生,暗发酵尾液中大量H+被消耗,溶液pH值从4.5升高到8.7;随后在MES中,产氢发酵尾液中有机物被进一步降解产生甲烷,其平均产甲烷速率达到4.5mmol/(L·d),且在21d内化学需氧量(COD)去除率达到89%,远优于没有经过pH调控的产氢发酵尾液MES中的产甲烷性能.  相似文献   
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