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301.
《环境化学》2012,31(6)
为解决剩余污泥问题,研制了产泥率少的片状竹炭固定床-聚氨酯切块流化床一体化反应器,在保证流化床高浓度微生物的同时,维持竹炭固定床的好氧,兼性厌氧,以实现污泥的原位分解.试验采用南京林业大学紫湖溪生活污水,COD为140—170 mg·L-1,TP为1—2 mg·L-1,TN为35—45 mg·L-1,氨氮25—30 mg·L-1,SS为35—40 mg·L-1.反应器在第30 d启动成功.稳定的运行结果显示,水力停留时间为10 h时,反应器对有机物的去除效果较好,出水中COD、TN、TP、氨氮的浓度分别为19 mg·L-1、7 mg·L-1、0.47 mg·L-1、4.5 mg·L-1,去除率达到87%、76%、72%、84%,出水中各指标均满足《城镇污水处理厂污染物排放标准》(GB18918—2002)中的一级B排放标准.经竹炭固定床处理的出水SS浓度很低,长期维持在14 mg·L-1左右,二沉池出水中的SS平均浓度为12.7 mg·L-1,整个反应器对二沉池依赖性较小.  相似文献   
302.
Some municipal solid waste (MSW) can be used as the fuel. Combustion of MSW with high nitrogen content is successfully conducted in a lab-scale vortexing fluidized-bed incinerator (VFBI). Pigskin with 16.5 wt.% nitrogen content was used to simulate the high nitrogen content kitchen waste, and silica sand was used as the bed material. The effects of operating conditions, such as the bed temperature, freeboard temperature, excess oxygen ratio, and static bed height on the CO and NO concentrations at the exit of combustor and cyclone were investigated. The experimental results show that the freeboard temperature is the most important factor for CO emission. The order of operating conditions impact on the NO emission is: (1) excess oxygen ratio; (2) bed temperature; (3) freeboard temperature; and (4) static bed height. Utilizing cyclone can significantly reduce the CO emission concentration when the CO concentration released from the freeboard is higher than 50 ppm. On the other hand, the cyclone has no significant effect on the NO emission. Despite having high nitrogen content, a low conversion from fuel-N to NO was attained. Compared with other types of combustors, VFBI reduces the CO and NO emission concentrations much better when burning MSW with high nitrogen content.  相似文献   
303.
载体是生物膜移动术反应器(MBBR)工艺的关键影响因素,利用亲水化改性聚氨酯载体构建MBBR,用于城市污水的中试研究.反应器日处理能力为3~3.5 t.d-1,水力停留时间为7~8 h,在连续进水(进水COD 140~280 mg.L-1,NH4+-N 30~50 mg.L-1,总氮45~65 mg.L-1,总磷2.5~4.0 mg.L-1)条件下对改性载体的挂膜速度、有机物和氮的去除效果及不同温度下的污水处理特性进行了研究.140 d的试验结果表明在24~28℃时,载体上生物膜在6 d左右即可完成挂膜,并达到稳定的处理效果.COD、NH4+-N、TN和TP的平均去除率分别为70%、97%、70%和39%.随着水温逐渐降低到12℃左右,NH4+-N的去除率依然能达到97%,表明通过添加改性载体可以提高反应器低温条件下的硝化能力.  相似文献   
304.
厌氧流化床膜生物反应器(AFMBR)作为一种低耗产能的高效厌氧反应器,在处理生活污水中有着巨大的潜力.本研究主要利用宏基因组测序技术对AFMBR系统内的微生物菌群进行探究,结果表明:与接种菌群相比,AFMBR经过一段时间的连续运行后,在属水平上古菌优势菌属由接种时的甲烷囊菌属变为甲烷八叠球菌属、甲烷杆菌属,细菌的整体菌属结构发生了较大变化;在种水平上,系统内不存在较明显的优势菌种.从相对丰度比例≥1%的菌种来看:水解发酵菌群产氢产乙酸菌群产甲烷菌群,但各菌群之间相对丰度的差距较小.从基因水平来看,系统内与碳水化合物代谢、氨基酸代谢、能量代谢相关的基因丰度较高,二氧化碳、乙酸转化为甲烷是系统产甲烷的主要途径.  相似文献   
305.
以壳聚糖为代表的天然生物质自身含有大量活性基团能选择性吸附重金属离子,为重金属废水的高效经济处理提供了可能.本实验以壳聚糖为基材,采用原位共沉淀法和乙二醇二缩水甘油醚(EGDE)交联法共同作用制得CS-EGDE/Fe_3O_4凝胶微球吸附剂,通过电子扫描显微镜(SEM)、透射电镜(TEM)、X射线能谱(EDS)、傅里叶红外光谱(FTIR)、饱和磁强分析(VSM)对样品进行了充分表征.通过静态吸附批实验及模拟固定床动态吸附实验,较系统的考察了凝胶微球在不同初始pH、接触时间和初始浓度下对多元重金属Pb(II)、Cu(II)、Zn(II)的吸附性能.结果表明:①CS-EGDE/Fe_3O_4凝胶微球内部孔隙发达,具有良好的超顺磁性;②吸附剂能够快速与重金属离子发生螯合反应,主要作用基团为-NH_3和-OH,且对重金属离子吸附符合准二级动力学,吸附过程可用Langmuir等温吸附方程描述,为单层化学吸附;③在多元吸附体系中发生拮抗作用,重金属竞争吸附顺序为Pb(II)Cu(II)Zn(II),主要是3种离子共价指数的差异导致了这一结果;④固定床在多元重金属模拟废水处理中表现出良好的去除效能,对Pb(II)、Cu(II)、Zn(II)的饱和吸附时间分别为13、8、2 h.研究显示, CS-EGDE/Fe_3O_4凝胶微球对水中重金属离子具有良好的吸附性能,有望为重金属废水处理提供一种新的研究思路和技术路线.  相似文献   
306.
In this paper, a real options based binominal lattices model for the investment of coal bed methane (CBM) is conducted. CBM prices and market demand are incorporated into the model as the predominant uncertain factors and it is solved by using the bidimensional binominal lattices approach. Then the model is employed to evaluate the investment in CBM projects in China, and the effect of related policies is analyzed. The empirical results demonstrate that the model can be used to offer a better explanation of why the CBM industry has developed slowly in China from an investment perspective. It is found that the current policy environment is not positive enough to attract investment in the CBM industry. Among various factors, CBM prices yield the most significant effect on stimulating investment in CBM development. Increasing the price subsidy is also an effective policy to stimulate investment and promote the development of the CBM industry in China.  相似文献   
307.
308.
UASB-好氧工艺处理碳酸饮料废水   总被引:1,自引:0,他引:1  
从废水特点、工艺流程、主要构筑物等方面介绍UASB-好氧工艺处理碳酸饮料废水,并与传统好氧处理工艺进行经济及技术分析比较,表明该工艺处理水质良好,成本降低。  相似文献   
309.
Palm oil industry is the most important agro-industry in Malaysia, but its by-product–palm oil mill e uent (POME), posed a great threat to water environment. In the past decades, several treatment and disposal methods have been proposed and investigated to solve this problem. A two-stage pilot-scale plant was designed and constructed for POME treatment. Anaerobic digestion and aerobic biodegradation constituted the first biological stage, while ultrafiltration (UF) and reverse osmosis (RO) membrane units were combined as the second membrane separation stage. In the anaerobic expanded granular sludge bed (EGSB) reactor, about 43% organic matter in POME was converted into biogas, and COD reduction e ciency reached 93% and 22% in EGSB and the following aerobic reactor, respectively.With the treatment in the first biological stage, suspended solids and oil also decreased to a low degree. All these alleviated the membrane fouling and prolonged the membrane life. In the membrane process unit, almost all the suspended solids were captured by UF membranes, while RO membrane excluded most of the dissolved solids or inorganic salts from RO permeate. After the whole treatment processes, organic matter in POME expressed by BOD and COD was removed almost thoroughly. Suspended solids and color were not detectable in RO permeate any more, and mineral elements only existed in trace amount (except for K and Na). The high-quality e uent was crystal clear and could be used as the boiler feed water.  相似文献   
310.
Palm oil industry is the most important agro-industry in Malaysia, but its by-product-palm oil mill effluent (POME), posed a great threat to water environment. In the past decades, several treatment and disposal methods have been proposed and investigated to solve this problem. A two-stage pilot-scale plant was designed and constructed for POME treatment. Anaerobic digestion and aerobic biodegradation constituted the first biological stage, while ultrafiltration (UF) and reverse osmosis (RO) membrane units were combined as the second membrane separation stage. In the anaerobic expanded granular sludge bed (EGSB) reactor, about 43% organic matter in POME was converted into biogas, and COD reduction efficiency reached 93% and 22% in EGSB and the following aerobic reactor, respectively. With the treatment in the first biological stage, suspended solids and oil also decreased to a low degree. All these alleviated the membrane fouling and prolonged the membrane life. In the membrane process unit, almost all the suspended solids were captured by UF membranes, while RO membrane excluded most of the dissolved solids or inorganic salts from RO permeate. After the whole treatment processes, organic matter in POME expressed by BOD and COD was removed almost thoroughly. Suspended solids and color were not detectable in RO permeate any more, and mineral elements only existed in trace amount (except for K and Na). The high-quality effluent was crystal clear and could be used as the boiler feed water.  相似文献   
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