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91.
用span-80表面活性剂制作的乳状液处理垃圾渗滤液中氨氮,考察了表面活性剂span-80用量、膜内相硫酸浓度、膜增强剂用量、油内比、乳水比、外相水pH值因素对氨氮去除率的影响。结果表明,在最佳反应条件下,用乳状液膜分离法预处理垃圾渗滤液中的氨氮,分离速度快,处理效果达到87%以上。  相似文献   
92.
A combined process consisting of a short-cut nitrification (SN) reactor and an anaerobic ammonium oxidation upflow anaerobic sludge bed (ANAMMOX) reactor was developed to treat the diluted effluent from an upflow anaerobic sludge bed (UASB) reactor treating high ammonium municipal landfill leachate.The SN process was performed in an aerated upflow sludge bed (AUSB) reactor (working volume 3.05 L),treating about 50% of the diluted raw wastewater.The ammonium removal efficiency and the ratio of NO 2 N to NOx-N in the effluent were both higher than 80%,at a maximum nitrogen loading rate of 1.47 kg/(m 3 ·day).The ANAMMOX process was performed in an UASB reactor (working volume 8.5 L),using the mix of SN reactor effluent and diluted raw wastewater at a ratio of 1:1.The ammonium and nitrite removal efficiency reached over 93% and 95%,respectively,after 70-day continuous operation,at a maximum total nitrogen loading rate of 0.91 kg/(m 3 ·day),suggesting a successful operation of the combined process.The average nitrogen loading rate of the combined system was 0.56 kg/(m 3 ·day),with an average total inorganic nitrogen removal efficiency 87%.The nitrogen in the effluent was mostly nitrate.The results provided important evidence for the possibility of applying SN-ANAMMOX after UASB reactor to treat municipal landfill leachate.  相似文献   
93.
垃圾渗滤液对黑麦草和高羊茅种子萌发的影响   总被引:1,自引:1,他引:0  
为了解垃圾渗滤液作培养液时草本植物种子萌发的情况。以黑麦草和高羊茅两种草本植物种子为研究材料,分别研究了垃圾填埋场渗滤液处理站的渗滤液原液、渗滤液生物处理出水以及渗滤液最终出水在6个不同配比的稀释溶液(V渗滤液/V蒸馏水=1/0,3/1,1/1,1/2,1/3,1/4)下对这两种种子萌发的影响。结果显示:随着渗滤液稀释强度的降低,种子的发芽势、发芽率、发芽指数和活力指数均增加,V渗滤液/V蒸馏水为1/3时,种子发芽率均为最高,黑麦草种子发芽率达96%,高羊茅种子发芽率达79%。用渗滤液作培养液时,更有利于黑麦草种子的萌发;用最终出水作培养液时,更有利于种子的萌发。这两种不同的渗滤液,在不同配比的稀释浓度下对种子的发芽率、发芽势、发芽指数和活力指数等均具有显著的生理作用。  相似文献   
94.
Fenton氧化法预处理垃圾渗滤液试验研究   总被引:1,自引:0,他引:1  
采用Fenton氧化法处理长沙市黑糜峰垃圾填埋场垃圾渗滤液原液,考察了影响COD去除率的各种因素,包括初始pH值、FeSO4·7H2O投加量、双氧水投加量、反应时间及投加方式等,试验结果表明:在初始pH值为3、FeSO4·7H2O投加量为0.5%、双氧水投加量为18 mL/L、反应时间为100 min、投加方式为3次投加的条件下,可使垃圾渗滤液原液的COD去除率达40%左右,并提高了生化比,为后续生物处理改善了条件.  相似文献   
95.
With the increase of urbanization, municipal solid waste has also increased. Therefore, the need for solid waste management is also increasing compared with earlier decades. Composting is a good option for the recycling of solid waste; however, it produces leachate, which requires proper treatment systems to prevent environmental degradation. Due to high chemical oxygen demand (COD) concentrations in compost leachate, anaerobic treatment is the best option for handling the effluent, and an anaerobic baffled reactor (ABR) is one such anaerobic reactor that can be used for its treatment. Because of high ammonia and heavy metal concentrations, as well as the possibility of sludge washout in ABRs, it is important to use proper media, such as zeolite, which can reduce inhibition effects and sludge washout from the reactor. Anaerobic treatment, especially during the methanogenesis phase, is sensitive, and pH and alkalinity are parameters that influence the treatment. Therefore, adjusting these parameters within a normal range is very important to the proper functioning of anaerobic systems. In this study, a pilot‐scale ABR was used, and the last 4 of the 8 ABR compartments were filled with zeolite. The bioreactor was operated at hydraulic retention times (HRT) of 3, 4, and 5 days, with zeolite filling ratios of 10%, 20%, and 30%, and influent COD concentrations of 10,000, 20,000, and 30,000 milligrams per liter (mg/L). In this study, pH value was 6.43 ± 0.1, 6.96 ± 0.3, and 6.96 ± 0.25 at filling ratios of 10%, 20%, and 30%, respectively. According to the results, in all filling ratios, no significant changes were observed in the pH value when the organic loading rate increased and its amount was within a constant range. Influent alkalinity was equal to 2015 ± 510, 2884 ± 505, and 4154 ± 233 milligrams of calcium carbonate per liter (mg CaCO3/L) at influent COD concentrations of 10,000, 20,000, and 30,000 mg/L, respectively, and in effluent, they were 2536 ± 336, 3379 ± 639, and 4377 ± 325 mg CaCO3/L, respectively. The amount of alkalinity in the effluent increased compared with the alkalinity in the influent. The results show that the amount of alkalinity in the influent and effluent was similar, and the alkalinity enhancement was lower when the filling ratio was increased from 10% to 20%, and 20% to 30%. Comparisons of the results from zeolite with and without biofilm showed that, in cases of zeolite with biofilm, the amounts of silica and oxygen decreased and the amount of carbon increased, and it showed the formation of biofilm on the surface of zeolite. In addition, the absence of sodium in the zeolite with the biofilm indicated that sodium was exchanged with ammonium ions. According to the results, zeolite can be used in anaerobic reactors as a medium, and it also reduces fluctuations in pH and alkalinity at different organic loading rates, providing a normal range for anaerobic treatment.  相似文献   
96.
采用TMBR+NF/RO组合工艺对湖北省宜昌市某垃圾卫生填埋场渗滤液进行处理,介绍了组合工艺的流程、特点、设备规格、技术参数。TMBR系统对可生化降解COD处理后,COD平均质量浓度为822 mg/L,平均去除率为95.8%,对NH_3-N平均去除率为94.9%;经过NF/RO出水的COD平均值为45 mg/L,NH_3-N均小于25mg/L,达到《生活垃圾填埋场污染控制标准》(GB 16889—2008)的排放标准。组合工艺处理成本为29.5元/m3。  相似文献   
97.
结合外置浸没式超滤膜处理垃圾渗滤液的中试试验,对垃圾焚烧厂渗滤液SBR出水进行处理,主要研究结果如下:外置浸没式超滤膜(膜孔径0.1μm)对COD_(Cr)去除率为36.86%,出水SDI为1.87~3.69,可以作为纳滤预处理工艺使用,选取10 L/(m~2·h)的运行通量较为合理。  相似文献   
98.
微波协同氧化预处理垃圾渗滤液NF膜滤浓缩液研究   总被引:1,自引:0,他引:1  
针对城市生活垃圾填埋场垃圾渗滤液NF膜处理后产生的浓缩液处理难问题,采用微波协同氧化技术对其进行预处理,探讨了pH值、预反应时间、药剂用量、微波反应时间等因素对浓缩液CODcr及色度去除率的影响.结果表明:当pH=4,预反应时间60 min,药剂用量1g/l、微波反应时间3 min时,CODcr、色度的去除率分别为71.2%,80%.预处理后的出水CODcr及色度指标达到垃圾渗滤液现有生化处理系统的进水要求.  相似文献   
99.
采取鸟粪石热解回收,再循环利用的方法去除不同来源渗滤液中的氨氮,以降低投药成本。得到的最佳工艺条件为p H=9.5~10,药品投加量为氨氮浓度1.1倍,反应时间20 min,热解温度为100℃,热解时间4 h以上。热解鸟粪石法去除垃圾渗滤液氨氮的效果根据渗滤液本身的性质会产生较大的变化。老龄渗滤液中鸟粪石循环使用20次以后,单位质量的氨氮的去除成本降低至11.63元/kg以下;但在相同工艺条件下处理新鲜渗滤液,鸟粪石循环使用20次以后,单位质量氨氮的去除成本依然维持在35.23元/kg以上。  相似文献   
100.
纳米Fe_3O_4强化混凝-Fenton氧化预处理垃圾渗滤液   总被引:1,自引:1,他引:0       下载免费PDF全文
采用纳米Fe_3O_4与Fe Cl3制备复合混凝剂,利用混凝沉淀-Fenton氧化工艺预处理垃圾渗滤液原水,研究其处理效果。结果表明:在纳米Fe_3O_4投加量为2 g/L,Fe Cl3投加量为1.4 g/L时制备的复合混凝剂,在p H值为6.5,转速为300 r/min下快速搅拌1 min,转速为100 r/min下慢速搅拌30 min,沉淀时间为30 min的条件下,COD去除率为56.8%,ρ(COD)可由5 240 mg/L降低到2 264 mg/L;利用Fenton氧化处理混凝处理出水,在H_2O_2的投加量为5.5 g/L,n(H_2O_2)∶n(Fe2+)=4,p H值为6,反应时间为80 min,反应温度为25℃的最佳条件下,COD和氨氮的去除率分别为55.7%和40.1%,最终出水ρ(COD)和ρ(氨氮)分别为1 003 mg/L和670 mg/L;该组合工艺对垃圾渗滤液有较好的处理效果,COD、色度和氨氮的去除率分别为80.8%、59.5%和76.2%。  相似文献   
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