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韩奇  冯丽娟  翟文艳  李丹  姚硕 《化工环保》2012,40(4):406-410
采用草酸浸取废SCR催化剂,得到钛钨粉,制备Bi2WO6/钛钨粉复合光催化剂,考察了其对罗丹明B的光催化降解性能。制备光催化剂的优化工艺条件为:采用聚乙烯吡咯烷酮为表面活性剂,n(Bi2WO6)∶n(钛钨粉)=2∶1,前驱液pH为5,水热反应时间为18 h。在此条件下制备的光催化剂在可见光下降解罗丹明B,反应 60 min,罗丹明B降解率达94.30%。表征结果显示:钛钨粉小颗粒散落在Bi2WO6片表面,为光催化反应提供了更多的活性位点;Bi2WO6和钛钨粉两者结合可提高光生电子和空穴的分离效率,进而提高催化剂的光催化活性。Bi2WO6/钛钨粉光催化剂对罗丹明 B 的降解符合一级反应动力学规律。  相似文献   

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Waste printed circuit boards (PCBs) contain a large number of metals such as Cu, Sn, Pb, Cd, Cr, Zn, and Mn. In this work, an efficient and environmentally friendly process for metals recovery from waste PCBs by supercritical water (SCW) pre-treatment combined with acid leaching was developed. In the proposed process, waste PCBs were pre-treated by SCW, then the separated solid phase product with concentrated metals was subjected to an acid leaching process for metals recovery. The effect of SCW pre-treatment on the recovery of different metals from waste PCBs was investigated. Two methods of SCW pre-treatment were studied: supercritical water oxidation (SCWO) and supercritical water depolymerization (SCWD). Experimental results indicated that SCWO and SCWD pre-treatment had significant effect on the recovery of different metals. SCWO pre-treatment was highly efficient for enhancing the recovery of Cu and Pb, and the recovery efficiency increased significantly with increasing pre-treatment temperature. The recovery efficiency of Cu and Pb for SCWO pre-treatment at 420 °C was 99.8% and 80%, respectively, whereas most of the Sn and Cr were immobilized in the residue. The recovery of all studied metals was enhanced by SCWD pre-treatment and increased along with pre-treatment temperature. Up to 90% of Sn, Zn, Cr, Cd, and Mn could be recovered for SCWD pre-treatment at 440 °C.  相似文献   

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在对废SCR催化剂组成进行分析的基础上,采用草酸和酒石酸两种有机酸浸取废SCR催化剂中的V和W。实验结果表明:草酸对V、W的浸出率均大于酒石酸;在草酸浓度为1.00 mol/L、浸取温度为80 ℃、液固比为10 mL/g、浸取时间为180 min时,V和W的浸出率分别为63.50%和13.12%;在酒石酸浓度为0.5 mol/L、浸取温度为100 ℃、液固比为10 mL/g、浸取时间为180 min时,V和W的浸出率分别为44.00%和9.00%。酸性浸出未改变SCR催化剂中TiO2的晶型,剩余残渣中依然保留着TiO2骨架,可继续作为催化剂载体使用。  相似文献   

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以盐泥为原料,采用氯化铵浸取回收盐泥中的Mg2+,以浸取液和回收的氨反应制取氢氧化镁产品。考察了盐泥浆液固含量、浸取时间、物料比(氯化铵与盐泥中氢氧化镁的摩尔比)等工艺条件对Mg2+浸取率的影响,并以比表面积为考察指标进行正交实验,确定氢氧化镁的最佳制备条件。实验结果表明:在盐泥浆液固含量为248 g/L、浸取时间为100 min、物料比为2.3的条件下,Mg2+浸取率为75.0%;在n(MgCl2):n(NH4Cl)=0.5、氨水浓度3 mol/L、氨水滴加速率 0.8 mL/min、反应温度 90 ℃的最佳条件下,制备的氢氧化镁的比表面积为17.87 m2/g,粒径约为3 μm。该工艺简单可行,为盐泥的综合利用提供了新的思路。  相似文献   

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Recovery of nickel oxide from spent catalyst   总被引:3,自引:0,他引:3  
This study investigates the possibility of recovering nickel from the spent catalyst (NiO/Al2O3) resulting from the steam reforming process to produce water gas (H2/H2O) in many industries. In the extraction process, nickel is recovered as sulfate using sulfuric acid as a solvent. The considered parameters affecting nickel recovery were acid concentration, temperature and time of digestion solid:liquid ratio, particle size and stirring rate. Nickel was to be directly recovered as a sulfate salt by direct crystallization method. The conversion was 99% at 50% sulfuric acid concentration, solid: liquid ratio (1:12) by weight, particle size less than 500 micron for more than 5 h and 800 rpm at 100 degrees C.  相似文献   

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介绍了利用废钯催化剂制备氯化钯的方法,研究了液碱浓度以及液碱用量对溶解过程中残留物含量的影响,以及王水浸出过程中硝酸残留量对钯回收率的影响。通过对影响因素的考察,确定最佳条件,钯的总回收率可达93%以上。  相似文献   

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In the present paper, a study on laboratory scale to perform a treatment for valuable metals recovery from electronic and galvanic industrial wastes, is reported. The characterisation of the waste, performed by XRD, SEM, EDX and chemical analysis, showed a high metals content in the sludge, such as Cu, Ni, Mn, Pb, Sn, W. A leaching process, coupled by electrowinning, is then proposed in order to reduce the volume of the waste material and to recover selectively valuable metals, such as Cu and Ni. During the leaching step, carried out by using H(2)SO(4), several factors were investigated (acid concentration, temperature and time of treatment). The leached liquor has been successfully treated with an electrowinning process, to recover copper and nickel. The copper and nickel depositions, were performed in acid and alkaline conditions, respectively. The Faraday yield was of about 95%. The energy consumption was 2.13 and 4.43 kWh per kg of copper and nickel recovered, respectively. At the end of the process, about 94-99% of the initial content of Cu and Ni was recovered at the cathode. The experimental results obtained, showed the technical feasibility of the process.  相似文献   

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以某医药企业产生的含铝废盐酸为原料制备了液体聚合氯化铝(PAC)。确定了适宜的有机物去除方法和碱化剂,考察了碱化剂投加量、废盐酸铝离子含量等合成条件对PAC产品指标的影响,并比较了自制PAC和市售PAC对该企业污水站二沉池出水的混凝效果。实验结果表明:采用活性炭吸附法去除废盐酸中有机物,选择固体Ca O作为碱化剂,在活性炭投加量1‰(w)、吸附时间1 h、铝离子含量9.5%(w,以Al_2O_3计)、CaO投加量80 g/L、反应时间24 h的条件下,制备的液体PAC达到行业标准HG/T 2677—2017《工业聚氯化铝》中的Ⅲ类标准;自制PAC对废水COD和SS的去除率均优于市售PAC,不仅可替代其使用,还可外售产生经济效益。  相似文献   

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以某废弃铅锌矿区重金属污染土壤为研究对象,采用无患子皂苷与柠檬酸(CA)协同洗脱污染土壤中的Cd和Pb.以无患子果皮投加量为20 g/L所得水浸提液和浓度为0.3 mol/L的CA配制复配淋洗剂.在浸提液中添加CA后,能有效提高对土壤中Pb的去除率.在浸提液和CA的体积比为1:3、淋洗剂pH为5、淋洗时间为12.0 h...  相似文献   

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Ni/Al-SBA-15 catalysts with Si/Al atomic ratios within the 20–135 range were prepared by a post synthesis grafting procedure, having nickel contents between 6 and 11 %. The addition of Ni to the Al-SBA-15 support caused a decrease of the BET surface area and pore volume. Additionally, larger Ni particles were attained over the catalysts with higher Si/Al atomic ratios, indicating the existence of some interaction between aluminium species and nickel particles. Ni/Al-SBA-15 catalysts displayed remarkable properties for the preparation of diesel fuels in the hydroreforming of the oils obtained from the LDPE thermal cracking. On increasing the Si/Al atomic ratios of the Ni/Al-SBA-15 catalysts, higher share of light and heavy diesel were attained, the sum reaching a maximum (67.3 %) for Ni/Al-SBA-15(70). This was caused by the higher extent of oligomerization reactions on enhancing the Si/Al atomic ratio. Additionally, around 85–90 % of the starting olefins were successfully hydrogenated and the aromatic content was rather low (below 5 %), without almost any polyaromatic compound (<0.1 %).  相似文献   

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采用化学沉积法合成了MgO/SiO_2纳米复合材料,通过扫描电子显微镜和X射线能谱分析(SEM-EDX)、X射线衍射(XRD)、Zeta电位仪、FTIR等方法对其进行了表征。研究了MgO/SiO_2对亚甲基蓝(MB)和Cu~(2+)的吸附行为及同步吸附效果。表征结果表明:MgO/SiO_2为褶皱、凸起的球形形貌;MgO成功负载在SiO_2表面。实验结果表明:MgO/SiO_2对MB和Cu~(2+)的吸附符合准二级动力学模型和Langmuir等温吸附模型,MB和Cu~(2+)的饱和吸附量分别为83.72 mg/g和208.70 mg/g;MB和Cu~(2+)的同步吸附在MgO/SiO_2表面存在竞争关系;在溶液体积为30m L、MgO/SiO_2加入量为10 mg、MB质量浓度为10 mg/L或Cu~(2+)质量浓度为100 mg/L、吸附温度为25℃、吸附时间为24 h、初始溶液pH为4.00、解吸时间为4 h的条件下,MgO/SiO_2第1次吸附MB和Cu~(2+)的去除率分别为92.8%和90.1%,第5次吸附的去除率分别为59.6%和57.4%。  相似文献   

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田源  孙彬彬  童俊  鹿慧  蒋家超 《化工环保》2018,38(4):476-480
以NaOH溶液为浸出剂,采用碱浸法回收卤素法电镀锡阳极泥中的锡,考察了浸出效果的影响因素,并对浸出过程的动力学进行了研究。实验结果表明:在NaOH质量浓度200 g/L、反应温度90℃、液固比6、反应时间240 min的最佳工艺条件下,锡的浸出率约为98%;最佳工艺条件下,浸出液中的氟离子对后续锌粉置换回收锡没有影响;在303.15~363.15 K范围内,该浸出过程主要受内扩散控制,反应活化能为9.725 k J/mol。  相似文献   

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采用乳状液膜法分离提取废汞触媒浸出液中的Hg~(2+)。考察了影响乳状液膜体系分离富集汞的主要因素,并对分离提取后的乳液相进行了破乳研究。分离提取实验结果表明:乳状液膜体系的最佳配方为流动载体磷酸三丁酯体积分数10%、表面活性剂失水山梨糖醇脂肪酸酯体积分数4%、膜溶剂磺化煤油体积分数86%、内水相HCl溶液浓度0.10mol/L、油相与内水相的体积比1∶1;在乳状液与外水相的体积比为1∶10的条件下Hg~(2+)提取率达78.50%。破乳实验结果表明:加热破乳、离心破乳、加热离心联合破乳3种方法的破乳率分别为29.0%,54.0%,85.7%;采用加热离心联合法破乳后,Hg~(2+)富集倍数达8.5。  相似文献   

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彭健  朱印  姚雯  张登峰 《化工环保》2012,40(4):401-405
钢材在深加工过程中通常使用盐酸对其表面进行酸洗除锈,从而产生大量废液。为了实现盐酸酸洗废液的资源化处理,以氯酸钠作为氧化剂制备聚氯化铁,考察了氧化剂加入量、浓盐酸加入量、反应时间、反应温度等因素对Fe2+转化率的影响。实验得到的最佳工艺条件为:每处理100 mL废液需加入7.0 g氯酸钠、12 mL浓盐酸(12 mol/L)、0.3 g磷酸二氢钾,反应温度30 ℃,反应时间30 min,搅拌转速5 r/s。该条件下,Fe2+转化率可达98.51%,得到的聚氯化铁产品符合《水处理剂 聚氯化铁》(HG/T 4672—2014)标准。  相似文献   

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将废RK-05甲醇合成催化剂经过煅烧、浸取、精制等工序回收其中的铜和锌。经正交实验得到煅烧废催化剂的最优工艺参数为:废催化剂筛目100目,煅烧温度950℃,煅烧时间60 min。最佳浸取工艺条件为:废催化剂加入量约4 g/L,浸取温度75℃,浸取剂用量与理论用量体积比2.0~3.0,浸取剂浓度4.0 mol/L,浸取时间10min。精制工序制备CuO的最佳工艺条件为:锌粒与滤渣质量比为1.00,反应时间3 h,煅烧温度450℃,煅烧时间4 h。制备ZnO的最佳工艺条件为:煅烧温度800℃,煅烧时间60 min。回收的产品CuO纯度为99.1%,满足GB/T674—2003《化学试剂粉状氧化铜》中优级品的标准。回收的产品ZnO纯度为99.6%,满足GB/T3185—1992《氧化锌(间接法)》中一级品的标准。  相似文献   

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用Na_2CO_3催化焙烧法将CuS转化为Cu。最佳的转化条件;反应温度为750℃,CuS:Na_2CO_3(摩尔比)为1:2,在空气中反应90min。CuS的转化率可达到99%。  相似文献   

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In order to manage municipal solid waste incineration (MSWI) bottom ash safely, risk assessments, including the prediction of leaching under different field conditions, are necessary. In this study, the influence of salt or dissolved organic matter (DOM) in the influent on metal leaching from MSWI bottom ash was investigated in a column experiment. The presence of salt (0.1M NaCl) resulted in a small increase of As leaching, whereas no impact on leachate concentration was found when lakewater DOM (35.1mg/l dissolved organic carbon) was added. Most of the added DOM was retained within the material. Further, X-ray spectroscopy revealed that Cu(II) was the dominating form of Cu and that it probably occurred as a CuO-type mineral. The Cu(2+) activity in the MSWI bottom ash leachate was most likely determined by the dissolution of CuO together with the formation of Cu-DOM complexes and possibly also by adsorption to (hydr)oxide minerals. The addition of lake DOM in the influent resulted in lower saturation indices for CuO in the leachates, which may be due to slow CuO dissolution kinetics in combination with strong Cu-DOM complexation.  相似文献   

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