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排序方式: 共有29条查询结果,搜索用时 15 毫秒
1.
改性甘蔗渣对Pb~(2+)、Cd~(2+)的吸附行为研究   总被引:1,自引:0,他引:1  
为提高废弃甘蔗渣对重金属离子Cd2+和Pb2+的吸附能力,文章采用简单的方法制备了乙二胺四乙酸二酐(EDTAD)修饰的甘蔗渣。经FTIR分析,有大量的羰基修饰在了甘蔗渣的表面,为其吸附重金属离子提供了更多的活性位点。实验结果表明:经过修饰后的甘蔗渣对Cd2+和Pb2+的吸附量分别为46.46 mg/g、119.36 mg/g,是未修饰的3.69和12.31倍,且均能在20 min内达到最大吸附量并保持平衡,其吸附符合Langmuir等温吸附模型,且吸附过程遵循二级动力学模型。在pH 4~7范围内,修饰SCB对Cd2+和Pb2+具有较高的吸附能力。除此之外,在Cd2+、Pb2+、Cu2+和Zn2+共存的情况下,修饰SCB对Pb2+仍能保持较高的吸附量。修饰后的甘蔗渣对Cd2+和Pb2+的吸附能力有了显著提高,且具有一定的抗干扰能力,有望应用于实际工业废水处理。  相似文献   
2.
蔗渣吸附剂的制备及其对氨氮的吸附研究   总被引:5,自引:0,他引:5  
从炭化蔗渣的炭化温度和用量,吸附动力学、吸附温度,溶液的酸度、组成,吸附等温线及氨氮的存在形式等方面探讨了实验制备的炭化蔗渣吸附去除溶液中氨氮的影响因素。结果表明,直接炭化法蔗渣吸附剂制备的最佳炭化温度为400℃;在初始氨氮浓度一定的条件下,随着吸附剂投加量的增大,炭化蔗渣对氨氮的吸附量减少;炭化蔗渣吸附氨氮的动力学曲线符合准二级动力学模型,吸附常数K2=3.59g(/mg/min);当pH=9.20时炭化蔗渣对氨氮的最大吸附量为10g/kg;在实验的pH范围内,pH=10时炭化蔗渣对氨氮的吸附去除最好;直接炭化法蔗渣吸附剂对氨氮吸附去除的最佳温度是40℃;pH为3.98~9.20时吸附等温线可用Langmuir与Freundlich吸附等温方程进行拟合。  相似文献   
3.
Liquid hot water (LHW), an environmental-friendly physico-chemical treatment, was applied to pretreat the sugarcane bagasse (SCB). Tween80, a non-ionic surfactant, was used to enhance the enzymatic hydrolysis of the pretreated SCB. It found that 0.125 mL Tween80 /g dry matter could make the maximum increase (33.2%) of the glycan conversion of the LHW-pretreated SCB. A self-designed laboratory facility with a plate-and-frame impeller was applied to conduct batch hydrolysis, fed-batch hydrolysis, and the process of high-temperature (50°C) fed-batch hydrolysis following low-temperature (30°C) simultaneous saccharification and fermentation (SSF) which was adopted to overcome the incompatible optimum temperature of saccharification and fermentation in the SSF process. After hydrolyzing LHW-pretreated SCB for 120 h with commercial cellulase, the total sugar concentration and glycan conversion obtained from fed-batch hydrolysis were 91.6 g/L and 68.3%, respectively, which were 9.7 g/L and 7.3% higher than those obtained from batch hydrolysis. With Saccharomyces cerevisiae Y2034 fermenting under the non-sterile condition, the ethanol production and theoretical yield obtained from the process of SSF after fed-batch hydrolysis were 55.4 g/L and 88.3% for 72h, respectively, which were 15.5 g/L and 24.7% higher than those from separate fed-batch hydrolysis and fermentation. The result of this work was superior to the reported results obtained from the LHW-pretreated SCB.  相似文献   
4.
Dilute acid pretreatment and steam pretreatment were evaluated for maximum sugars release and ethanol production from sweet sorghum bagasse (SSB). The fermentation potential of the condensate and hydrolysate obtained from steam pretreatment (10 kg/cm2, 10 minutes) and dilute acid hydrolysis (1% (w/w) sulphuric acid, 25% substrate loading) respectively, was checked with Pichia stipitis NCIM 3497 and Debaryomyces hansenii sp. Ethanol production and yield using acid hydrolysate was higher with Debaryomyces hansenii sp. (28.4 g/L and 0.37 g/g respectively) as compared with Pichia stipitis NCIM 3497 (21.9 g/L and 0.29 g/g respectively).  相似文献   
5.
目前微生物发酵床养猪垫料是选用木屑、谷壳作为原料,来实现零排放养猪。文章选用农业固体废弃物——蔗渣为垫料应用于零排放漏缝发酵床养猪,跟踪了3个月垫料在实际使用中的温度、有机质、氮、磷、钾、微生物指标,对蔗渣的使用效果进行了评价,并建立PCR反应体系来扩增DNA,利用PCR-DGGE技术对垫料中的微生物群落多样性进行研究。结果表明:蔗渣作为垫料,能使垫床温度控制在4065℃之间,保证了良好的发酵效果、且有效活菌数达到0.22×109cfu/g,可以对猪粪便等有机质进行较彻底的消解,因此蔗渣可以作为一种垫料应用于零排放漏缝发酵床;垫料中总养分达到1.371 7%,使用后的垫料可以作为一种原料生产生物有机肥。  相似文献   
6.
改性甘蔗渣对Cu^2+和Zn^2+的吸附机理   总被引:1,自引:0,他引:1  
研究了均苯四甲酸二酐(PMDA)和乙二胺四乙酸二酐(EDTAD)改性甘蔗渣对重金属离子Cu^2+和Zn^2+的吸附性能,包括吸附动力学和吸附等温线。结果表明,改性后的甘蔗渣对重金属离子Cu^2+和Zn^2+的吸附容量有显著提高,对Cu^2+和Zn^2+吸附等温线均符合Langmuir方程,吸附为单分子层吸附。根据Langmuir方程,PMDA和EDTAD改性甘蔗渣对Cu^2+的吸附量分别为60.21和33.45mg/g,对Zn^2+的吸附量分别是70.53和36.53mg/g。两种改性甘蔗渣对两种金属离子的吸附在30min内均可完成,用准二级吸附动力学方程模拟动力学过程得到较好的线性相关性。以EDTA溶液为洗脱剂对吸附Cu^2+和Zn^2+的改性甘蔗渣进行洗脱再生,再生的吸附剂可反复使用。  相似文献   
7.
ZnCl2-微波法制甘蔗渣活性炭工艺条件研究   总被引:6,自引:0,他引:6  
以工业副产物甘蔗渣为原料,ZnCl2-微波法制备活性炭,用正交实验研究了活化剂ZnCl2浸泡浓度、浸泡时间、微波功率和作用时间等实验因素对活性炭性能的影响.  相似文献   
8.
Bagasse, a biomass fuel, is the waste generated by the sugar-making process from sugar cane. Sugar making is one of the most important agricultural-produce processing industries for developing countries in Southeast Asia, Latin America and Africa. As sugar producing plants need electric power and process steam, co-generation using bagasse as an alternate fuel for petroleum has been in use for some time. Thailand recently became one of the largest sugar exporters by enlarging plant capacities and improving equipment, thus reducing its production cost. In addition, the Thai government promotes power generation using bagasse as a means to combat global warming by raising the purchase price of the surplus power. The industry is in the process of further raising the plant capacity, and improving the power-generating efficiency. This will enable a plant to generate more electric power than its in-plant need so that the surplus power can be sold to the commercial grid. It also plans to become a local power supplier during off-season of sugar making by adding a condensing turbine generator. A typical Thai sugar plant of the latest design generates steam of 4Mpa at the bagasse boiler outlet with the temperature of 400°C at 84% boiler efficiency. With the bagasse LHV of 7,540 kJ/kg and that of fuel oil 41, 840 kJ/kg, and taking 90%as oil-burning boiler efficiency, 5.95 kg of bagasse would replace 1 kg of oil. The Kyoto Mechanism defines CO2 generation by fuel oil as 2.65 kg per liter. Using 0.85for the specific gravity of fuel oil, the amount of CO2 generation will be 3.12 kg-CO2/kg. Therefore, CO2reduction per ton of bagasse in terms of fuel oil will be: 3.12/5.95 =0.524 kg-CO2/kg-bagasse. As 1 kg of bagasse generates 2 kg of steam, the CO2reduction of a 100t/h steam boiler will be112,660 ton/year for an annual operation of4,300 hours, as follows. 0.524 × 100/2 = 26.2 t-CO2/h, 26.2 × 4,300 =112,660 t-CO2/year. This revised version was published online in August 2006 with corrections to the Cover Date.  相似文献   
9.
Ca2+对上流式多级厌氧反应器处理蔗渣渗滤液的影响   总被引:1,自引:1,他引:0  
研究了上流式多级厌氧反应器(UMAR)处理蔗渣渗滤液过程中Ca2+浓度对反应器运行特性和颗粒污泥性质的影响。结果表明,对于蔗渣渗滤液而言,进水中低浓度的Ca2+浓度(80~300 mg/L)对颗粒污泥产甲烷活性无抑制,COD去除率最高可达93.3%;Ca2+浓度达到500 mg/L以上时,对厌氧颗粒污泥的活性有抑制作用;随着Ca2+浓度进一步升高,抑制作用加强,污泥灰分明显升高,活性成分下降,COD去除效率明显降低,污泥粘结沉积在反应器底部,导致系统内循环出现障碍。因此,在实际生产中应减少废水中Ca2+的引入量。  相似文献   
10.
改性甘蔗渣吸附废水中低浓度Cu2+的研究   总被引:1,自引:0,他引:1  
利用离子液氯化-1-己基-3-甲基咪唑对甘蔗渣进行改性,利用改性甘蔗渣吸附去除模拟废水中低浓度的Cu2+,并对比了较优条件下甘蔗渣改性前后的Cu2+吸附性能.结果表明,溶液pH、改性甘蔗渣投加量、吸附时间对改性甘蔗渣吸附Cu2+均有一定的影响,较佳的溶液pH为5.41、改性甘蔗渣投加量为0.30 g、吸附时间为130 min;吸附温度升高Cu2+吸附率反而降低,因此选择在室温下进行吸附反应为宜;在以上较优条件下,改性甘蔗渣和甘蔗渣的Cu2+吸附率分别为83.20%和53.83%,前者的Cu2+吸附率提高了30.35%.  相似文献   
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