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51.
A two-stage UASB reactor was employed to remove sulfate from acrylic fiber manufacturing wastewater. Mesophilic operation (35±0.5℃) was performed with hydraulic retention time (HRT) varied between 28 and 40 hr. Mixed liquor suspended solids (MLSS) in the reactor was maintained about 8000 mg/L. The results indicated that sulfate removal was enhanced with increasing the ratio of COD/SO42-. At low COD/SO42-, the growth of the sulfate-reducing bacteria (SRB) was carbon-limited. The optimal sulfate removal efficiencies were 75% when the HRT was no less than 38 hr. Sulfidogenesis mainly happened in the sulfate-reducing stage, while methanogenesis in the methane-producing stage. Microbes in sulfate-reducing stage performed granulation better than that in methane-producing stage. Higher extracellular polymeric substances (EPS) content in sulfate-reducing stage helped to adhere and connect the flocculent sludge particles together. SRB accounted for about 31% both in sulfate-reducing stage and methane-producing stage at COD/SO42- ratio of 0.5, while it dropped dramatically from 34% in sulfate-reducing stage to 10% in methane-producing stage corresponding to the COD/SO42- ratio of 4.7. SRB and MPA were predominant in sulfate-reducing stage and methane-producing stage respectively.  相似文献   
52.
Phenolic compounds and their derivatives have been found in industrial wastewater, which pose threats to the natural environment. Ordered mesoporous carbon(OMC) has been identified as an ideal adsorbent possessing high specific surface area and large pore volume to alleviate these pollutants. A novel ordered mesoporous carbon was prepared using COK-19 template with the cubic Fm3 m structure for the first time. Ordered mesoporous silica COK-19 was synthesized and reported in 2015. Sucrose as the carbon precursor was impregnated into the mesopores of silica and converted to carbon through carbonization process using sulfuric acid as a catalyst. Ordered mesoporous carbon was obtained after the removal of silica framework using hydrofluoric acid. Boric acid was employed for the preparation of OMCs with tunable pore sizes in the range of 6.9–16.6 nm. Several characterization techniques such as nitrogen adsorption–desorption isotherms, transmission electron microscope(TEM), Fourier transform infrared spectroscopy, Boehm titration and elemental analysis were employed to characterize the OMCs. The pore size analysis and TEM images confirmed that OMC has replicated the mesostructure of the COK-19. Results obtained from adsorption kinetics and isotherms suggest that the Pseudo-second-order model and Langmuir isotherm well described the experimental data.  相似文献   
53.
大连地区水资源可持续利用问题思考   总被引:2,自引:0,他引:2  
从水资源可用的战略高度,从生命之源-水入手,较详细地分析了大连地区水危急资源开发利用问题,从而,较全面地论述了大连地区水资源可持续利用的战略措施。  相似文献   
54.
分离出能高效降解机油的真菌并研究其使用方法.从机械润滑油污染的土中分离出2株真菌,GXUA和GXUB.形态鉴定为曲霉属(Aspergillus)菌.rDNA的ITS序列同源性分析表明,GXUA与A.tubingens,GXUB与A.fumigatus菌株SRRC 43完全同源.根据均匀设计的油-矿质液中的摇床发酵结果,混合菌体对机油的降解效率高于单菌株,最佳发酵条件为25 g菌丝体/L矿质液,pH=5.0,26 ℃.在此条件下,于10 g机油/L矿质液中摇床发酵9 d,其降解效率为95.90%.液-质色谱分析表明,混合菌能降解机油中700~900 Dt的大分子.用两菌株的孢子和其他两种生物材料试制了实验室级的颗粒(直径1 cm)生物制剂.在实验室级水平上,按500粒/m2水面和150粒/kg土用量分别处理具有约2 mm厚油膜的水(自来水和海水)和50 g机油/kg土的土壤,处理后的水和土壤中残余油量符合国家有关环境污染控制标准,添加油酸钠和H2O2能够显著提高降解效率.  相似文献   
55.
海洋油气资源开发技术发展战略研究   总被引:5,自引:0,他引:5  
开辟深水油气勘探开发领域、实现边际油田的高效和经济开发是提高油气后续发展能力。保障油气资源安全的重要途径之一。我国在深水油气勘探开发技术方面基础较薄弱.在“十一五”期间尚不具备开发深水油气的条件。因此“十一五”期间需针对我圈海域特点选择部分关键技术进行重点攻关。实现我国海洋油气开发由近海向深水的技术转移。为实现全海域资源开发提供高技术支撑。本文以海洋油气资源开发技术为对象.从海洋油气资源及其勘探开发状况、国内外技术发展现状和趋势、图象及社会经济需求筹方面进行内外部环境条件分析.提出了我国海洋油气资源技术领域所面临的挑战以及与国际水平的差距。并对制约我国该技术领域和相关油气产业发展的瓶颈技术、国外垄断技术进行了分析.最终提出我国海洋资源开发技术发展的战略目标和战略模式。  相似文献   
56.
以市政污泥干化尾气中的主要含硫物质二氧化硫(SO2)为处理对象,从市政污泥中筛选出高效脱硫菌——嗜酸性氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans,A.f),搭建了实验室规模的生物滴滤塔,考察了进气质量浓度、气体停留时间、营养液喷淋密度和营养液中Fe2+浓度对生物滴滤塔脱除SO2的影响....  相似文献   
57.
精准的火焰检测是有效避免火灾发生的关键,针对传统的火灾探测算法在公路隧道等大空间环境中存在及时性与准确性相互制约的问题,通过研究隧道火焰初期在图像中呈现的静态和动态特征,提出了一种基于红外热成像的公路隧道火灾初期火焰检测方法。利用温度阈值获取疑似火焰区域,根据红外图像在引导滤波器作用下降噪,同时利用区域增长法分割疑似火焰区域;从疑似区域中提取的特征值构成特征向量,进行数据归一化提高SVM收敛速度;利用人工蜂群算法优化参数。结果表明:ABC-SVM能够实现公路隧道火灾初期的火焰识别,检测正确率相较于RBF方法提升了2.26%,运行时间缩短了2.29 ms;检测正确率相较于SVM方法提升了0.87%,运行时间缩短了2.22 ms。本方法可以对初期隧道火灾进行快速、有效检测,并有良好的环境适用性。  相似文献   
58.
三峡库区消落带农用坡地磷素径流流失特征   总被引:1,自引:0,他引:1  
消落带是三峡库区重要的生态交错带,但自发农用和无序开发可能会造成更多的氮磷流失,进而加剧三峡库区水体富营养化。通过对库区连续3 a的定位监测(2011~2013年),研究了三峡库区消落带农用坡地的磷素流失特征。结果表明:次降雨事件中常规施肥处理的地表径流、壤中流总磷平均浓度分别为0.848±0.153、0.140±0.006 mg/L,其中地表径流中磷的形态以颗粒态为主,壤中流以溶解态的生物可利用磷为主。常规施肥下,地表径流、壤中流磷素年均流失通量分别为0.236±0.004、0.100±0.003 kg·hm 2,地表径流、壤中流磷素流失通量分别占总流失通量的70.2%、29.8%,地表径流是坡地磷素流失的主要途径,但壤中流也是不可忽视的重要途径。与常规施肥处理相比,减量施肥处理地表径流、壤中流磷素流失量分别降低了45.3%、40.0%。建议采取减量施肥的方式,以降低营养盐负荷,保护水环境。  相似文献   
59.
• An in situ electron-induced deNOx process with CNT activated by DBD was achieved. • Carbon atoms on CNT surface were verified to be excited by plasma in DBD-CNT system. • Reactions between NOx and excited C result in synergistic effect of DBD-CNT system. In this study, a new in situ electron-induced process is presented with carbon nanotubes (CNTs) as a reduction agent activated by dielectric barrier discharge (DBD) for nitrogen oxide (NOx) abatement at low temperature (<407 K). Compared with a single DBD system and a DBD system with activated carbon (DBD-AC), a DBD system with carbon nanotubes (DBD-CNT) showed a significant promotion of NOx removal efficiency and N2 selectivity. Although the O2 content was 10%, the NOx conversion and N2 selectivity in the DBD-CNT system still reached 64.9% and 81.9% at a specific input energy (SIE) of 1424 J/L, and these values decreased to 16.8%, 31.9% and 43.2%, 62.3% in the single DBD system and the DBD-AC system, respectively. X-ray photoelectron spectroscopy (XPS) and scanning electron microscopy (SEM) were utilized to investigate surface changes in the CNTs after activation by DBD to explore the NOx reduction abatement mechanism of this new process. Furthermore, the outlet gas components were also observed via Fourier transform infrared spectroscopy (FTIR) to help reveal the NOx reduction mechanism. Experimental results verified that carbon atoms excited by DBD and the structure of CNTs contributed to the synergistic activity of the DBD-CNT system. The new deNOx process was accomplished through in situ heterogenetic reduction reactions between the NOx and carbon atoms activated by the plasma on the CNTs. In addition, further results indicated that the new deNOx process exhibited acceptable SO2 tolerance and water resistance.  相似文献   
60.
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