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排序方式: 共有47条查询结果,搜索用时 31 毫秒
1.
基于碳中和背景及污水处理可持续、低碳运行理念,分析了我国污水处理厂不同水质、工艺类型、规模等条件下的能源消耗及能源回收特点,提出了以“碳改向技术+低耗高效复合脱氮技术+污泥厌氧共消化技术+污水热能回收技术+节能降耗技术”的污水处理新模式是实现我国能源自给型污水处理厂的关键,并提出我国污水处理厂实现碳中和应分为“完全能源自给”及“能源供应工厂”两个目标.此外,对基于此背景下建设的北京某再生水厂的理论能源自给情况进行了分析,结果表明,通过节能降耗、引入外源有机物、污水源热泵回收等措施,北京某再生水厂能源自给率由12.2%分别提高至17.1%、21.6%、84.7%.  相似文献   
2.
为探究冻融循环影响下不同岩性岩石的物理力学性质的差异化响应,对青砂岩、灰砂岩2种砂岩,白色大理岩、麻粒岩2种变质岩开展冻融循环试验和相关力学试验。研究结果表明:在冻融循环过程中,2种砂岩的质量变化幅度明显高于2种变质岩。相较于青砂岩与麻粒岩,大理岩的单轴压缩强度及弹性模量劣化速率最快。冻融前后青砂岩、大理岩的单轴压缩破坏模式发生明显变化。灰砂岩抗拉强度劣化速率显著低于青砂岩。基于单轴抗压强度、抗拉强度的脆性指数表明冻融作用提高青砂岩的脆性。研究结果可为冻融影响下工程岩体的稳定性与安全性评价提供参考。  相似文献   
3.
In wastewater treatment plants (WWTPs), a secondary settler acts as a clarifier, sludge thickener, and sludge storage tank during peak flows and therefore plays an important role in the performance of the activated sludge process. Sludge thickening occurs in the lower portions of secondary clarifiers during their operation. In this study, by detecting the hindered zone from the complete thickening process of activated sludge, a simple model for the sludge thickening velocity, u s = aX b (a = 0.9925SSVI 3.5, b = 3.541ln(SSVI 3.5)+12.973), describing the potential and performance of activated sludge thickening in the hindered zone was developed. However, sludge thickening in the compression zone was not studied because sludge in the compression zone showed limited thickening. This empirical model was developed using batch settling data obtained from four WWTPs and validated using measured data from a fifth WWTP to better study sludge thickening. To explore different sludge settling and thickening mechanisms, the curves of sludge thickening and sludge settling were compared. Finally, it was found that several factors including temperature, stirring, initial depth, and polymer conditioning can lead to highly concentrated return sludge and biomass in a biologic reactor.  相似文献   
4.
针对生物滴滤池因接触时间短而导致出水不达标的问题,采用3种容重(80、100、120 kg·m-3)的矿物棉作为滤池填料,考察了填料孔隙率对保水性的影响,分析了不同容重填料的生物滴滤池去除污染物的效能,探究了填料孔隙率对微生物群落特征的影响。结果表明,矿物棉载体的吸水、保水性能随其孔隙率增加呈现先增加后减小的趋势;孔隙率较小的矿物棉载体在稳定运行后对COD、NH4+-N有更好的去除效果,平均去除率分别可达99%和72%,且具有一定的抗冲击负荷能力。高通量测序结果显示,随着矿物棉载体孔隙率的减小,微生物群落物种丰富度增加,而其多样性减少。比较而言,当容重为100 kg·m-3时,矿物棉的吸、保水性高,微生物种群结构适宜,出水水质可达一级A标准,且具有一定的抗冲击负荷能力。  相似文献   
5.
温度和pH值对活性污泥法脱氮除磷的影响   总被引:8,自引:2,他引:8  
温度和pH值是影响污水脱氮除磷效果的2个重要因素.试验采用连续搅拌槽式反应器(continuous stirred tank reactor,CSTR),通过对不同温度和pH值条件下的硝化、反硝化、释磷和吸磷反应速率的测定,总结出温度和pH值对活性污泥生化反应速率的影响规律.试验表明,硝化和反硝化速率随温度的升高而加快.在5℃和33℃时,硝化速率分别为0.01 kg NH4 -N/(kg VSS·d)和0.28 kg NH4 -N/(kg VSS·d);在5℃和30℃时,反硝化速率分别为0.097 kg NO3--N/(kg VSS·d)和0.476 kg NO3--N/(kg VSS·d);但温度对吸磷和释磷速率的影响不大.pH值对硝化、反硝化、吸磷和释磷速率均有显著影响,在pH值为7.74时,硝化速率为0.095 kg NO3--N/(kg VSS·d);而在pH值为4.9和10.08时,硝化速率仅为0.005 kg NO3--N/(kg VSS·d)和0.006 kg NO3--N/(kg VSS·d).在pH值为7.85时,反硝化速率达到最大值0.36 kg NO3--N/(kg VSS·d);而在偏酸性和碱性条件下,反硝化速率显著下降.  相似文献   
6.
目前全球面临巨大能源、水污染及资源危机,传统污水处理技术已无法满足可持续发展需求,实现能源自给、污水再生及资源回收的新型污水处理技术是未来水厂重要实施路径.污水处理厂实现能源自给的关键一是"开源",即高效回收污水中有机物化学能、低品位热能,并利用外源有机物厌氧共消化、太阳能、风能等技术开发能源;二是"节流",即利用高效...  相似文献   
7.
根据国标测定单丝滤布的孔径、过水通量及透水阻力,从而优选出过滤性能最优的滤布。探究了悬浮物粒径、浓度及比表面积对单丝滤布过水通量的影响,并采用HERMIA模型分析了单丝滤布的堵塞机理。实验结果表明:悬浮物粒径越大单丝滤布过水通量的下降越明显,过滤后悬浮物中位粒径与滤布孔径的比值均在0.36~0.46;悬浮物的浓度越高、比表面积越小,在滤布表面的架桥作用越强,形成的滤饼层孔隙越小,滤布越容易被污染。  相似文献   
8.
In wastewater treatment plants(WWTPs)using the activated sludge process,two methods are widely used to improve aeration efficiency — use of high-efficiency aeration devices and optimizing the aeration control strategy. Aeration efficiency is closely linked to sludge characteristics(such as concentrations of mixed liquor suspended solids(MLSS)and microbial communities)and operating conditions(such as air flow rate and operational dissolved oxygen(DO)concentrations). Moreover,operational DO is closely linked to effluent quality. This study,which is in reference to WWTP discharge class A Chinese standard effluent criteria,determined the growth kinetics parameters of nitrifiers at different DO levels in small-scale tests. Results showed that the activated sludge system could meet effluent criteria when DO was as low as 0.3 mg/L,and that nitrifier communities cultivated under low DO conditions had higher oxygen affinity than those cultivated under high DO conditions,as indicated by the oxygen half-saturation constant and nitrification ability. Based on nitrifier growth kinetics and on the oxygen mass transfer dynamic model(determined using different air flow rate(Q′_(air))and mixed liquor volatile suspended solids(MLVSS)values),theoretical analysis indicated limited potential for energy saving by improving aeration diffuser performance when the activated sludge system had low oxygen consumption; however,operating at low DO and low MLVSS could significantly reduce energy consumption. Finally,a control strategy coupling sludge retention time and MLVSS to minimize the DO level was discussed,which is critical to appropriate setting of the oxygen point and to the operation of low DO treatment technology.  相似文献   
9.
由于可以同时实现污水中碳磷的快速分离,超短泥龄活性污泥系统在降低能耗与资源回收方面受到人们的广泛关注.本研究对不同 进水碳源(乙酸钠、丙酸钠、葡萄糖、生活污水)条件下超短泥龄活性污泥系统污泥性质、碳磷分离规律与分离机制、微生物动力学参数等进行了研究.结果表明,与生活污水相比,由单一碳源所培养超短泥龄活性污泥浓度较低,活性较高,但乙酸钠与丙酸钠培养活性污泥处于微膨胀状态.不同碳源培养系统中COD的去除性能并无明显差异(p>0.05),并且由于生活污水中含有悬浮物,COD去除性能弱于单一碳源培养系统.不同碳源培养系统中磷酸盐的去除性能存在较大差异,乙酸钠与丙酸钠基本依靠生物效应除磷,但生物效应无法实现高效除磷,葡萄糖与 生活污水培养系统均同时依靠生物效应与EPS吸附效应除磷,不同碳源培养系统除磷效率排序为:葡萄糖>生活污水>丙酸钠>乙酸钠.研究同时发现,碳源分子量越小,培养系统中活性污泥生物活性越高,异养菌生长与衰减系数越高.  相似文献   
10.
The history of China’s municipal wastewater management is revisited. The remaining challenges in wastewater sector in China are identified. New concept municipal wastewater treatment plants are highlighted. An integrated plant of energy, water and fertilizer recovery is envisaged. China has the world’s largest and still growing wastewater sector and water market, thus its future development will have profound influence on the world. The high-speed development of China’s wastewater sector over the past 40 years has forged its global leading treatment capacity and innovation ability. However, many problems were left behind, including underdeveloped sewers and sludge disposal facilities, low sustainability of the treatment processes, questionable wastewater treatment plant (WWTP) effluent discharge standards, and lacking global thinking on harmonious development between wastewater management, human society and the nature. Addressing these challenges calls for fundamental changes in target design, policy and technologies. In this mini-review, we revisit the development history of China’s municipal wastewater management and identify the remaining challenges. Also, we highlight the future needs of sustainable development and exploring China’s own wastewater management path, and outlook the future from several aspects including targets of wastewater management, policies and technologies, especially the new concept WWTP. Furthermore, we envisage the establishment of new-generation WWTPs with the vision of turning WWTP from a site of pollutant removal into a plant of energy, water and fertilizer recovery and an integrated part urban ecology in China.  相似文献   
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