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211.
La3+掺杂对吸附相反应制备TiO2复合催化剂的结晶过程及弱紫外光下活性的影响 总被引:1,自引:1,他引:0
利用吸附相反应技术制备弱紫外光响应的高效催化剂,并通过XRD、XPS以及HRTEM探索了不同焙烧温度下La3+掺杂量对TiO2结晶过程的影响.结合弱紫外光下甲基橙的降解反应,深入研究催化剂结晶过程的变化对弱紫外光下催化剂活性的影响.结果表明,La3+掺杂会抑制TiO2的结晶过程.当焙烧温度或者掺杂量较低时,La3+不能进入TiO2的晶格结构但会轻微地抑制TiO2的结晶过程;未进入晶格结构的La3+存在会引入光生载流子的浅能级捕获中心,在弱光体系中极大提升了催化剂的活性.当La3+的掺杂量为0.05%(原子分数)时,经过900℃焙烧后催化剂降解能力最高,其活性超过商用P25的2倍多.在较高La3+掺杂量(超过0.20%)时,900℃焙烧后一定量La3+进入TiO2的晶格结构而大大抑制了TiO2结晶;这种强烈的抑制作用使得催化剂中存在大量无定形结构TiO2,无定形TiO2甚至多于700℃焙烧后的催化剂,反而大大抑制了弱光体系中催化剂活性. 相似文献
212.
我国沿海地区城镇污水处理厂污泥重金属污染状况及其处置分析 总被引:10,自引:5,他引:5
采用ICP-MS分析法测定了我国3个典型沿海城市广州、上海和大连共13个污水处理厂污泥的7种重金属含量,并与2006年和2001年的数据进行了对比,以了解我国沿海城市污水处理厂重金属污染状况、变化趋势和处置方案.结果表明,我国沿海城市污泥中重金属污染分布存在较大差异,7种重金属平均含量大小顺序为Cr>Zn>Cu>Pb>As>Hg>Cd,Cr、Cu和As的含量超出了《城镇污水处理厂污染物排放标准》,污染严重.相对于以前,我国沿海城市污泥中Zn的含量明显减少,Pb、Hg和Cd的含量与没有明显变化,但Cr、Cu、As均明显增加.各区域各类型污水处理厂城市污泥重金属含量分析表明,来源于工业废水的城市污泥中Zn、Cu和Hg的平均含量较生活污水为主的污泥高;广州污水处理厂城市污泥中Cr、Pb、As、Hg和Cd的含量均高于上海和大连.沿海城市污水处理厂中超出《城镇污水处理厂污染物排放标准》中污泥农用标准限值的占总调查污水处理厂的23%,我国沿海城市污泥大部分仍可采用污泥农用的有益处置方式进行处置.同时,本次调查数据也为我国沿海城市开展污水污泥海洋倾倒相关技术标准的制定提供了基础数据. 相似文献
213.
以脱色希瓦氏菌(Shewanella decolorationis)S12为实验菌株,研究了零价铁(ZVI)存在条件下微生物的厌氧偶氮还原特性及其最佳反应条件.结果表明,ZVI可显著促进菌株S12的厌氧偶氮还原速率.培养30 h后含有20 mmol.L-1微米级ZVI和S12菌的培养体系中,菌株S12对1 mmol.L-1苋菜红的脱色率达100%,比不含ZVI的S12菌培养体系和只含ZVI的体系的偶氮还原率分别提高了23.16%和94.66%;在额外含20 mmol.L-1甲酸钠的培养体系中,ZVI的存在也使S12菌对苋菜红的脱色率提高了20.54%.此外,ZVI的存在可显著提高培养体系对偶氮染料的耐受能力.在投加ZVI和菌株S12培养体系中,连续批量投加浓度为1 mmol.L-1的苋菜红可在276 h内实现11次有效脱色,而不含ZVI的S12菌培养体系中只能实现3次有效脱色.进一步的研究发现,ZVI与菌株S12协同培养体系的最适反应pH为9.0,最适ZVI投加量为60 mmol.L-1.与毫米级和纳米级ZVI颗粒相比,微米级ZVI颗粒具有更强的促进作用.本研究结果将为利用ZVI协同促进偶氮染料的生物治理效果提供科学参数. 相似文献
214.
有机蒙脱石负载纳米铁去除溶液中四溴双酚A的研究 总被引:4,自引:2,他引:2
研究了改性蒙脱石负载纳米铁材料(NZVI-CMT)在甲醇-水体系中对四溴双酚A(TBBPA)的去除作用,并确定了反应温度、TBBPA初始浓度以及材料投加量等因素对去除效果的影响.结果表明,在25℃条件下,0.02 g NZVI-CMT对初始浓度为10 mg·L-1TBBPA溶液的去除率可达97.5%,而且NZVI-CMT对TBBPA的去除率明显高于两种单一材料即纳米零价铁(NZVI)及有机蒙脱石(CMT)的去除率(18.3%、67.3%),同时也大于两者之和(85.6%).利用NZVI-CMT对TBBPA进行重复去除实验时,前3次的去除率均可达到90%以上.通过检测降解产物并分析材料对TBBPA去除过程的特性,发现NZVI-CMT对TBBPA的去除以吸附为主,并伴有少量还原脱溴反应发生,而且较高的反应温度对降解反应有利. 相似文献
215.
短程硝化颗粒污泥的快速培养与硝化特性研究 总被引:2,自引:2,他引:0
以城市污水处理厂剩余污泥为种泥,以2 min沉淀时间为选择压,在序批式反应器(SBR)中快速培养出好氧颗粒污泥。经过60个周期(20 d),反应器内出现砂粒状颗粒,并持续稳定运行120 d。成熟的颗粒污泥平均粒径856.56μm,具有良好的硝化性能。SBR反应器以固定曝气时间方式运行,亚硝酸盐积累率达80%以上,实现了稳定短程硝化。试验结果表明:絮体污泥(即接种污泥)与颗粒污泥的硝化过程相似但略有差异。二者差别在于,氨氮氧化结束后,继续曝气120 min,絮体污泥将亚硝酸盐完全转化为硝酸盐,而颗粒污泥仅将部分亚硝酸盐转化且过程比较缓慢。 相似文献
216.
217.
Red mud was investigated in triglyceride transesterification with a view to determine its viability as a basic catalyst for use in biodiesel synthesis.The effect of calcination temperature on the structure and activity of red mud catalysts was investigated.It was found that highly active catalyst was obtained by simply drying red mud at 200°C.Utilization of red mud as a catalyst for biodiesel production not only provides a cost-effective and environmentally friendly way of recycling this solid red mud waste,significantly reducing its environmental effects,but also reduces the price of biodiesel to make biodiesel competitive with petroleum diesel. 相似文献
218.
Xiangyun Zhong Shiyong Wu Yang Liu Zhenning Zhao Yaru Zhang Jinfeng Bai Jun Xu Bai Xi 《环境科学学报(英文版)》2013
The evolvement of morphology and structure of the coal with different metamorphic degrees during coking process in the vertical furnace was investigated by infrared Image detector. Moreover, the temperature distribution in the radial direction and the crack formation were also studied in heating process. The results show that the amount of crack and the shrinkage level of char decrease with the coal rank rising. In addition, the initial temperature of crack formation for char increases with the coal rank rising. 相似文献
219.
We have created a new method of ZnS nanospheres synthesis. By interface-mediated precipitation method (IMPM), monodisperse ZnS nanoparticles was synthesized on the particle surface of sulfate-reducing bacterium nutritious agar culture. Sulfate-reducing bacterium (SRB) was used as a sulfide producer because of its dissimilatory sulfate reduction capability, meanwhile produced a variety of amino acids acting as templates for nanomaterials synthesis. Then zinc acetate was dispersed into nutritious agar plate. Subsequently agar plate was broken into particles bearing much external surface, which successfully mediated the synthesis of monodisperse ZnS nanoparticles. The morphology of monodisperse ZnS nanospheres and SRB were examined by scanning electron microscopy (SEM), and the microstructure was investigated by X-ray diffraction (XRD). The thermostability of ZnS nanoparticles was determined by thermo gravimetric-differential thermo gravimetric (TG-DTG). The maximum absorption wavelengh was analysed with an ultraviolet-visible spectrophotometer within a range of 199–700 nm. As a result, monodisperse ZnS nanoparticles were successfully synthesized, with an average diameter of 80 nm. Maximum absorption wavelengh was 228 nm, and heat decomposed temperature of monodisperse ZnS nanoparticles was 596°C. 相似文献
220.
Zhanguo Liang Jun Mu Ying Mu Jiaming Shi Wenjing Hao Xuewei Dong Hongquan Yu 《环境科学学报(英文版)》2013,(S1):S106-S109
We have created a new method of ZnS nanospheres synthesis. By interface-mediated precipitation method (IMPM), monodisperse ZnS nanoparticles was synthesized on the particle surface of sulfate-reducing bacterium nutritious agar culture. Sulfate-reducing bacterium (SRB) was used as a sulfide producer because of its dissimilatory sulfate reduction capability, meanwhile produced a variety of amino acids acting as templates for nanomaterials synthesis. Then zinc acetate was dispersed into nutritious agar plate. Subsequently agar plate was broken into particles bearing much external surface, which successfully mediated the synthesis of monodisperse ZnS nanoparticles. The morphology of monodisperse ZnS nanospheres and SRB were examined by scanning electron microscopy (SEM), and the microstructure was investigated by X-ray diffraction (XRD). The thermostability of ZnS nanoparticles was determined by thermo gravimetric-differential thermo gravimetric (TG-DTG). The maximum absorption wavelengh was analysed with an ultravioletvisible spectrophotometer within a range of 199-700 nm. As a result, monodisperse ZnS nanoparticles were successfully synthesized, with an average diameter of 80 nm. Maximum absorption wavelengh was 228 nm, and heat decomposed temperature of monodisperse ZnS nanoparticles was 596℃. 相似文献