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321.
非均相催化湿式氧化法再生活性炭实验 总被引:5,自引:0,他引:5
使用自制的CuO-Al2O3催化剂对苯酚饱和活性炭进行非均相催化湿式氧化再生研究,系统观察了反应条件对非均相催化湿式氧化再生活性炭的影响.实验中得到非均相CuO-Al2O3催化湿式氧化再生活性炭的最佳条件为:反应温度210℃,反应时间60min,催化剂投加量25mg(以铜离子计),反应氧分压0.6MPa(25℃),投炭量15g(干炭量),加水量300mL.通过对催化剂进行X衍射分析,并对催化剂的稳定性进行实验,可以得出该催化剂在催化湿式氧化再生活性炭的过程中具有较好的稳定性. 相似文献
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323.
采用静态条件,考察了超声波对活性炭上Zn2+吸附/脱附性能的影响.结果表明,有/无超声作用下,活性炭对Zn2+的吸附率均随Zn2+初始浓度的增加而减少,该吸附过程属于优惠吸附, Langmuir模型能更好描述该过程,超声的引入对活性炭吸附Zn2+有一定抑制作用.脱附研究发现,在蒸馏水介质中,Zn2+脱附率仅为2.11%,加入超声后Zn2+的脱附率提高至20.8%,添加NaOH后脱附率明显增加,有/无超声作用下的脱附率分别为40.1%和33.1%.动力学分析表明,Zn2+在活性炭上的吸附/脱附均符合2级反应动力学. 相似文献
324.
Leiyu FENG Yuanyuan YAN Yinguang CHEN 《Frontiers of Environmental Science & Engineering》2011,5(4):623-632
Effect of pH ranging from 4.0 to 11.0 on co-fermentation of waste activated sludge (WAS) with food waste for short-chain fatty acids (SCFAs) production at ambient temperature was investigated in this study. Experimental results showed that the addition of food waste significantly improved the performance of WAS fermentation system, which resulted in the increases of SCFAs production and substrate reduction. The SCFAs production at pH 6.0, 7.0, 8.0, and 9.0 and fermentation time of 4 d was respectively 5022.7, 6540.5, 8236.6, and 7911.7 mg COD·L-1, whereas in the blank tests (no pH adjustment, pH 8.0 (blank test 1), no food waste addition, pH 8.0 (blank test 2), and no WAS addition (blank test 3)) it was only 1006.9, 971.1, and 1468.5 mg COD·L-1, respectively. The composition of SCFAs at pH from 6.0 to 9.0 was also different from other conditions and propionic acid was the most prevalent SCFA, which was followed by acetic and n-butyric acids, while acetic acid was the top product under other conditions. At pH 8.0 a higher volatile suspended solids (VSS) reduction of 16.6% for the mixture of WAS and food waste than the sole WAS indicated a synergistic effect existing in fermentation system with WAS and food waste. The influence of pH on the variations of nutrient content was also studied during anaerobic fermentation of the mixture of WAS and food waste at different pH conditions. The release of N H 4 + - N increased with fermentation time at all pH values investigated except 4.0, 5.0 and in blank test one. The concentrations of soluble phosphorus at acidic pHs and in the blank test one were higher than those obtained at alkaline pHs. Ammonia and phosphorus need to be removed before the SCFAs-enriched fermentation liquid from WAS and food waste was used as the carbon source. 相似文献
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326.
The adsorption isotherms, the constants of the Dubinin—Radushkevich plots, and the constants of the Langmuir plots of chlorofluorocarbon (CFC) and CFC replacements on high‐surface area activated carbon were investigated to estimate the recovery efficiency of CFC and CFC replacements. The adsorption and desorption of HFC134a on a high‐surface area activated carbon was much easier than that of CFC 113 and the CFC replacements. The recovery efficiency of CFC replacements depends on the hydrogen atoms in molecule. It is possible that the saturated amount adsorbed in the pores or on the surface of the activated carbon could be evaluated by the Ws constant of the the Langmuir equation and the Wo constant of the Dubinin‐Radushkevich equation. The a constant of the Langmuir equation and the BEo constant of the Dubinin‐Radushkevich equation depend on the molecular composition. 相似文献
327.
以城市污泥为主要原料制备了污泥基活性炭(SAC),考察了其对重金属离子的吸附去除效能和吸附动力学规律.并选择了2种商品活性炭(煤质炭,MAC和椰壳炭,YAC)作为对比,以初始浓度为50mg/L的Cu(II),Pb(II),Cd(II),Cr(VI)4种重金属离子为去除对象,分别进行了3种活性炭的表面理化性质分析及其对4种重金属离子的吸附试验.结果表明,SAC的比表面积和微孔容积仅为YAC和MAC的1/3~1/2,吸附速率也相对较慢,但其对Cu(II),Pb(II),Cr(VI),Cd(II)的平衡吸附量却远大于2种商品活性炭,分别为9.9,8.9,8.2,5.4mg/g,说明SAC表面的高酸性基团含量对重金属离子的吸附起到了关键作用;Langmuir与Freundlich吸附等温模型均能较好地拟合SAC对Cu(II)和Pb(II)的吸附,SAC对Cr(VI)的吸附过程更符合Langmuir模型,而SAC对于Cd(II)的吸附过程用Langmuir与Freundlich两个模型均不能较好地拟合,说明SAC表面缺少能够与Cd(II)发生反应的结合位点. 相似文献
328.
The purpose of this research is to obtain optimal processing conditions for the adsorption of Remazol Brilliant Violet-5R (RBV-5R) dye onto activated carbon prepared from periwinkle shells (PSAC) by chemical activation with KOH using response surface methodology. Central composite design (CCD) was used to determine the effects of three preparation variables; CO2 activation temperature, CO2 activation time and KOH:char impregnation ratio (IR) on two responses; percentage RBV-5R dye removal and PSAC yield. Based on the CCD, two quadratic models were developed for percentage RBV-5R dye removal and PSAC yield, respectively. The most influential factor on each experimental design response was identified from the analysis of variance (ANOVA). The optimum conditions for the adsorption of RBV-5R dye onto PSAC were CO2 activation temperature of 811 °C, CO2 activation time of 1.70 h and IR of 3.0, resulting in 81.28% RBV-5R dye removal and 28.18% PSAC yield. PSAC prepared under optimum conditions was mesoporous with a Brunauer–Emmett–Teller surface area of 1894 m2·g?1, total pore volume of 1.107 cm3·g?1 and average pore diameter of 2.32 nm. The surface morphology and functional groups of the activated carbon were respectively determined from the scanning electron microscopy and Fourier transform infrared analysis. 相似文献
329.
高盐分是导致很多工业废水生物处理效率下降的主要因素之一。探讨在生物处理系统中添加渗透保护剂提高活性污泥耐盐能力的可行性。结果表明:添加海藻糖、谷氨酸、甜菜碱和钾离子能提供有效的渗透保护作用,减轻盐分对污泥降解活性的抑制,其中以甜菜碱的渗透保护效果最好。对于未经盐分驯化的非耐盐污泥,当NaCl质量分数为3%时,添加20 mg/L的甜菜碱可使其耗氧速率从9.5 mg/h提高到29.5 mg/h;对于经过盐分驯化的耐盐污泥,当NaCl质量分数为6%时,添加50 mg/L的甜菜碱可使其耗氧速率从10.5 mg/h提高到24.9 mg/h。当生物处理系统受到瞬时盐分冲击时,活性污泥中的微生物细胞可以快速吸收添加的甜菜碱而平衡外界渗透压,从而缩短活性污泥对高盐环境的适应期,减轻盐分对活性污泥的毒害。 相似文献
330.
Fe3O4/C纳米粒子的制备及其对水中罗丹明B的去除 总被引:1,自引:0,他引:1
采用溶剂热-水热法合成了碳覆盖的Fe3O4纳米粒子Fe3O4/C,利用扫描电镜(SEM)与红外光谱(FT-IR)对其进行了表征,并研究了其对水中罗丹明B的吸附性能.系统考察了吸附动力学、吸附等温线、吸附剂用量对吸附性能的影响.Fe3O4/C对罗丹明B的吸附在3 h内即可达到平衡,最大吸附量可达13.23 mg.g-1.分别用Langmuir和Freundlich吸附模型解释了Fe3O4/C对罗丹明B的作用机理,吸附反应过程符合准二级动力学方程.结果表明,该吸附剂具有良好的磁效应和吸附性能,可快速去除罗丹明B,去除率高达90%以上;吸附剂可重复利用,成本低,具有环境友好的优势. 相似文献