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111.
在线消解流动注射分光光度法测定废水中总氮   总被引:2,自引:0,他引:2  
为了克服传统分析法消解条件苛刻,工作效率低的缺点,采用微波在线消解水样,并将流动注射分析技术与N-(1-萘基)乙二胺光度法相结合,建立了一种测定水中总氮的分析方法。通过优化试剂浓度等实验条件,总氮的检出限为0.03mg/L,线性范围为0.03~3.5mg/L。对TN-203214的标准样品进行测定的结果与推荐值基本一致。应用于废水样的测定,加标回收率为96.8%~97.3%。  相似文献   
112.
  总被引:1,自引:0,他引:1  
The effect of free ammonia on volatile fatty acid(VFA)accumulation and process instability was studied using a lab-scale anaerobic digester fed by two typical bio-wastes:fruit and vegetable waste(FVW)and food waste(FW)at 35°C with an organic loading rate(OLR)of 3.0 kg VS/(m~3·day). The inhibitory effects of free ammonia on methanogenesis were observed due to the low C/N ratio of each substrate(15.6 and 17.2,respectively). A high concentration of free ammonia inhibited methanogenesis resulting in the accumulation of VFAs and a low methane yield. In the inhibited state,acetate accumulated more quickly than propionate and was the main type of accumulated VFA. The co-accumulation of ammonia and VFAs led to an \"inhibited steady state\" and the ammonia was the main inhibitory substance that triggered the process perturbation. By statistical significance test and VFA fluctuation ratio analysis,the free ammonia inhibition threshold was identified as 45 mg/L. Moreover,propionate,iso-butyrate and valerate were determined to be the three most sensitive VFA parameters that were subject to ammonia inhibition.  相似文献   
113.
采用厌氧折流板反应器处理疫病动物尸骸废水,研究了反应器由中温(35 ℃)逐步升至高温(55 ℃)时的运行特性.结果表明,升温至45 ℃和55 ℃时,厌氧处理效率显著降低,将有机负荷由35 ℃时的6.0 kgCOD·(m3·d)-1降至55 ℃时的2.4 kgCOD·(m3·d)-1并没有得到恢复,高温厌氧COD去除率相比中温下降了24%,甲烷产率下降了33%,出水挥发性脂肪酸(VFAs)增加了1.9倍.升温过程中,厌氧产甲烷菌受到了游离氮(FAN)的抑制导致甲烷产率显著降低.当温度由35 ℃升至55 ℃时,反应器pH值由7.63升至8.22,FAN由98 mg·L-1升至340 mg·L-1,VFAs由235 mg·L-1积累至684 mg·L-1,pH、FAN和VFAs三者的协同作用导致反应器在高温状态下处于\"抑制稳态\".与中温厌氧相比,高温菌对FAN的耐受性更强.当pH值为8.2时,FAN对中温菌的IC50为324 mg·L-1,对高温菌则达到453 mg·L-1,但这一优势不能抵消升温所引起的FAN抑制效应.这是疫病动物尸骸废水高温厌氧消化效率显著低于中温的主要原因.  相似文献   
114.
    
Anaerobic phenanthrene biodegradation enriched process was described in detail. The enriched bacterial communities were characterized under four redox conditions. The enriched archaeal communities were stated under high percentage conditions. Relatively intact pathways of anaerobic phenanthrene biodegradation were proposed. Polycyclic aromatic hydrocarbons (PAHs) are widespread and persistent contaminants worldwide, especially in environments devoid of molecular oxygen. For lack of molecular oxygen, researchers enhanced anaerobic zones PAHs biodegradation by adding sulfate, bicarbonate, nitrate, and iron. However, microbial community reports of them were limited, and information of metabolites was poor except two-ring PAH, naphthalene. Here, we reported on four phenanthrene-degrading enrichment cultures with sulfate, bicarbonate, nitrate, and iron as electron acceptors from the same initial inoculum. The high-to-low order of the anaerobic phenanthrene biodegradation rate was the nitrate-reducing conditions>sulfate-reducing conditions>methanogenic conditions>iron-reducing conditions. The dominant bacteria populations were Desulfobacteraceae, Anaerolinaceae, and Thermodesulfobiaceae under sulfate-reducing conditions; Moraxellaceae, Clostridiaceae, and Comamonadaceae under methanogenic conditions; Rhodobacteraceae, Planococcaceae, and Xanthomonadaceae under nitrate-reducing conditions; and Geobacteraceae, Carnobacteriaceae, and Anaerolinaceae under iron-reducing conditions, respectively. Principal component analysis (PCA) indicated that bacteria populations of longtime enriched cultures with four electron acceptors all obtained significant changes from original inoculum, and bacterial communities were similar under nitrate-reducing and iron-reducing conditions. Archaea accounted for a high percentage under iron-reducing and methanogenic conditions, and Methanosarcinaceae and Methanobacteriaceae, as well as Methanobacteriaceae, were the dominant archaea populations under iron-reducing and methanogenic conditions. The key steps of phenanthrene biodegradation under four reducing conditions were carboxylation, further ring system reduction, and ring cleavage.  相似文献   
115.
味精浓废水生物处理优化工艺   总被引:4,自引:0,他引:4  
本文阐述两相厌氧消化法与缺氧—厌氧消化法处理味精浓废水的比较试验.进水为6×10~4mg/L~8×10~4mg/L时,两相厌氧消化法COD去除率为78%,产气率为0.15m~3/kgCOD,CH_4含量为50%.缺氧—厌氧消化法COD去除率为82.2%,产气率为0.23m~3/kgCOD,CH.含量达65%.两种方法均可使出水pH值由3.2上升至7.0以上.氯离子和氨氮的去除不明显.综合上述结果与运行管理的稳定程度均是缺氧——厌氧消化法优于两相厌氧消化法.  相似文献   
116.
    
The presented work deals with blends composed of polyvinyl alcohol (PVA) and biopolymers (protein hydrolysate, starch, lignin). PVA does not belong to biologically inert plastics but its degradation rate (particularly under anaerobic conditions) is low. A potential solution to the issue problem lies in preparation of blends with readily degradable substrates. We studied degradation of blow-molded films made of commercial PVA and mentioned biopolymers in an aqueous anaerobic environment employing inoculation with digested activated sludge from the municipal wastewater treatment plant. Films prepared in the first experimental series were to be used for comparing biodegradation of blends modified with native or plasticized starch; in this case effect of plasticization was not proved. The degree of PVA degradation after modification with native or plasticized starch increases in a striking and practically same manner already at a starch level as low as approximately 5 wt.%. Films of the second experimental series were prepared as additionally modified with protein hydrolysate and lignin. Only lignin-modified samples exhibited a somewhat lower degree of biodegradation but regarding the measure of lignin present in blend this circumstance is not essential. Level of biodegradation with all discussed films differed only slightly—within range of experimental error.  相似文献   
117.
接种厌氧消化污泥EGSB反应器的快速启动   总被引:1,自引:0,他引:1  
对接种市政消化污泥的EGSB反应器的启动进行实验研究以寻求快速启动EGSB反应器的有效方法。接种厌氧消化污泥EGSB反应器的成功启动仅需要46d。在整个启动期保持适当的液体上升流速是非常重要的。启动初期,高液体上升流速能够将悬浮污泥冲出反应器,使适合聚集的微生物留在反应器内。接下来需要降低进水流量和液体上升流速以利于构建稳定的微生态系统,使高活性颗粒污泥尽快形成。然后适当提高液体上升流速能保持污水与微生物的良好接触,促进颗粒污泥内外高效传质,形成更加稳定高效的微生物群落结构。为尽快形成高活性颗粒污泥,保证产甲烷菌的最佳营养需求是关键,可通过考虑进水基质、微量营养元素和硫化物来提高其活性。  相似文献   
118.
为研究优势菌种对餐厨垃圾高温好氧消化(TAD)的促进作用,本研究通过淀粉水解、油脂降解及明胶液化等生化实验,从餐厨垃圾中筛选出若干对其主要成分具有显著降解效果的优势菌种。通过对样品水溶性TOC(TOCw)、水溶性凯氏氮(KNw)、水溶性C/N(KNw)、pH以及含水率等指标的分析,考察优势菌种对餐厨TAD的促进作用。研究表明,优势菌种制剂最优添加量为1%。在此剂量下,好氧消化60 h,TOCw由8.53%降低为2.49%,C/Nw由18.71降低至6.14,以上指标说明加入优势菌种可加速TAD反应。添加量1%样本的水溶性凯氏氮和pH在反应48 h后开始回升,而未添加生物制剂的样本相关参数回升时间需96 h以上,由此推断优势菌种对TAD的促进机制是加快了蛋白质等大分子有机物的降解速度。  相似文献   
119.
厌氧氨氧化-羟基磷酸钙(anammox-hydroxyapatite, anammox-HAP)技术可实现污泥厌氧消化液高效自养脱氮同步磷回收。污泥厌氧消化液中磷的浓度与污泥性质、厌氧消化过程相关,变化范围很大。为探索anammox-HAP系统中的磷回收效率,通过基于anammox-HAP长期运行的膨胀颗粒污泥床反应器,考察了不同进水磷浓度、pH和钙磷质量比(Ca/P)对磷回收效率及污泥特性的影响。结果表明:进水磷浓度在40~250 mg·L−1时,膨胀颗粒污泥床反应器脱氮性能稳定,总氮去除率可达88.5%;磷回收效率与进水磷浓度、反应器内pH及进水Ca/P密切相关,磷回收效率最高为89.7%;高磷浓度下形成的颗粒污泥,有望实现高效的磷资源利用。本研究可为利用anammox-HAP系统实现磷回收提供参考。  相似文献   
120.
离子交换法选择性回收污泥厌氧消化液中的磷   总被引:2,自引:0,他引:2  
为探讨高效选择性回收污泥厌氧消化液中磷的离子交换方法,采用静态实验和动态实验研究了4种阴离子交换树脂(D213、D202、D301和DSQ)的磷回收性能,筛选了适合富磷污泥厌氧消化液选择性磷回收的高交换容量树脂。实验结果表明,D213、D202、D301和DSQ 4种树脂对正磷浓度为70 mg/L的厌氧消化液进行动态处理时,其最大穿透体积分别为3、7、17和90 BV;DSQ树脂磷交换容量远高于其他3种树脂,达到6 860 mg P/L湿树脂,是目前报道的高磷交换容量树脂的3~4倍;DSQ树脂能有效地抵抗厌氧消化液中有机质和硫酸根等阴离子的干扰;用NaOH溶液再生DSQ树脂并回收磷,磷洗脱率超过96%,洗脱液是高浓度含磷液,可作为磷矿石的优质替代品。研究表明,DSQ树脂是一种高效选择性分离磷的树脂,适用于污泥厌氧消化液的磷回收。  相似文献   
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