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1.
采用共沉淀法合成了不同Ce与Ti摩尔比的CePO4-TiO2复合材料,利用XRD、TEM、NH3-TPD和H2-TPR技术对其物理化学性质进行了表征,并对其NH3-SCR活性进行了评价。实验结果表明:随着CePO4含量的增加,催化剂的活性提高;当Ce与Ti的摩尔比为8:2时催化剂的活性最高,230 ℃的NO转化率达到100%,且具有更广的温度窗口,优于纯CePO4。表征结果显示,CePO4与TiO2形成固溶体后,颗粒尺寸较为均匀,强酸位的数量增多,氧化还原性能提升,从而提高了催化剂的SCR反应活性,同时改善了其抗水抗硫性能。  相似文献   

2.
徐步金  黎维彬 《化工环保》2012,32(4):372-376
采用溶胶-凝胶法制备了MnOx/TiO2催化剂,考察了n(Mn):n(Ti)、催化剂载体、气体流量对催化燃烧去除废气中正己烷效果的影响.实验结果表明:随着n(Mn):n(Ti)的增加,正己烷去除率先增加后减小,气体流量减小正己烷去除率增大;当n (Mn):n(Ti)为7.85%、气体流量为100 mL/min时,在240℃时正己烷的去除率为90%,MnOx/TiO2催化活性最大;MnOx/TiO2的催化活性优于MnOx/SiO2;SEM和XRD表征结果表明,所制备的MnOx/TiO2是一种活性物种MnOx高度分散的纳米结构催化剂.  相似文献   

3.
采用电解法产生活性氯,降解废水中的有机物。考察了活性氯产生量的影响因素,并对Ti/RuO2-IrO2-TiO2电极电解实际含氯废水的处理效果进行了研究。实验结果表明:通过增加Cl-浓度和电流密度、减少SO42-浓度和极板间距、降低电解温度的方法能够提高活性氯产生量,从而提高电极降解有机物的效果;对于Cl-浓度为0.005 mol/L、COD为49 mg/L的废水,使用Ti/RuO2-IrO2-TiO2电极,在极板间距为0.5 cm、电解温度为20 ℃、电流密度为20 mA/cm2、初始pH为8.0的条件下电解处理60 min,废水BOD5/COD值由0.04提高到0.25,COD降至24 mg/L,达到DB 11/307—2013《水污染综合排放标准》中排入地表水体污染物B类排放限值(COD≤30 mg/L)的要求。  相似文献   

4.
采用超声促进、Fe2+活化的K2S2O8/NaHSO3联合体系(US-Fe2+-K2S2O8/NaHSO3体系)降解罗丹明B(RhB)。考察了RhB模拟废水脱色效果的影响因素,并研究了不同处理方法的协同效应,推测了反应机理。实验结果表明:在反应温度25 ℃、初始pH 5.18、超声功率250 W、K2S2O8溶液(4.91 mmol/L)加入量1.2 mL、NaHSO3溶液(4.91 mmol/L)加入量1.2 mL、n(K2S2O8)∶n(Fe2+)=10、反应时间7 min的条件下,RhB模拟废水(50 mL)的脱色率达到89.45%;超声与Fe2+-K2S2O8/NaHSO3体系对RhB的降解产生了协同效应,降解反应符合表观一级反应动力学,速率常数增强因子可达13.6。自由基猝灭实验结果表明,硫酸根自由基和羟基自由基是攻击RhB 分子的活性自由基,硫酸根自由基起主要作用。  相似文献   

5.
以聚丙烯腈(PAN)和g-C_3N_4为原料,采用超声波辅助分散的溶液浸渍法及煅烧法制备了具有共轭结构的预氧化聚丙烯腈/g-C_3N_4复合光催化剂(CPAN/g-C_3N_4),采用XRD、SEM、FTIR、UV-Vis DRS、EIS等技术对光催化剂进行了表征,考察了CPAN/g-C_3N_4对罗丹明B(Rh B)的可见光催化降解性能。结果表明:CPAN与g-C_3N_4具有良好的协同作用,使g-C_3N_4片状结构堆叠体颗粒显著减小,明显增强了光催化剂在全部光谱范围内的光吸收,有效提高了光生电子-空穴分离效率;在PAN与g-C_3N_4质量比为1∶200、煅烧温度250 ℃、煅烧时间1 h条件下所制备的CPAN/g-C_3N_4光催化活性最高,且具有良好的光催化活性稳定性。超氧自由基和光生空穴为CPAN/g-C_3N_4复合光催化剂光降解罗丹明B的主要活性物种。  相似文献   

6.
Electrostatic separation is a generic term given to a significant class of technologies of industrial waste processing, widely used for the sorting of granular mixtures due to electric forces acting on particles whose average size is approximately 5mm. The focus of this paper is on three electrostatic processes of separation used for processing of different types of mixtures: (i) role-type electrostatic separator, used to sort mixtures containing metal/plastic particles (copper/PVC for example); (ii) plate-type electrostatic separator, used to sort mixtures containing metal/metal particles (copper/lead for example) and (iii) free-fall electrostatic separator, used to sort mixtures of plastic/plastic particles (PVC/PE for example). Experiments carried out on industrial samples using laboratory electrostatic separators confirm the efficiency of these processes and show that the processes can improve the recovery and purity of products resulting from industrial wastes.  相似文献   

7.
龚政  崔宇晗 《化工环保》2019,39(3):289-295
采用共沉淀法合成了三元类水滑石Mg_3Mn_xAl_(1-x)CO_3,通过高温煅烧得到其衍生氧化物Mg_3Mn_xAl_(1-x)O_m,再经浸渍负载Pt或BaO后制得新型NO_x存储/再还原(NSR)催化剂。XRD及SEM表征结果显示,当Mn与Al的摩尔比(Mn/Al)大于1时所制备的Mg_3Mn_xAl_(1-x)O_m有杂晶相出现且发生团聚,结合NO_x存储性能评价结果,确定最优Mn/Al为1。BaO负载不利于NO_x的存储,而当Pt负载量为1%(w)时NO_x存储性能最优,250℃条件下的存储量由负载前的0.52 mmol/g提升至0.61 mmol/g。CO_2与NO_x之间存在较强的竞争吸附。负载1%Pt催化剂的NSR性能评价结果表明,8个稀燃-富燃循环后NO_x的去除率为68%,表明催化剂的还原性能仍需加强。  相似文献   

8.
采用一步水热法与两步水热法制备了GQDs/Bi2WO6(GQDs为石墨烯量子点)复合材料,利用氙灯为光源,考察了暗反应与光反应条件下GQDs/Bi2WO6对目标污染物环丙沙星的吸附性能与光催化性能,并对所制备的部分材料进行了表征。实验结果表明,相比于纯Bi2WO6,一步法制备的0.20GQDs/Bi2WO6(柠檬酸CA与 Bi2WO6物质的量比为0.2)和两步法制备的2%GQDs/Bi2WO6(GQDs与Bi2WO6的质量比为2%)有着相对更好的吸附性能与光催化性能。其中,0.20GQDs/Bi2WO6光催化效果最好。暗反应30 min后,环丙沙星吸附去除率为50.4%。光反应60 min后,环丙沙星的光催化去除率为42.6个百分点,总去除率达93.0%。表征结果显示,0.20GQDs/Bi2WO6的比表面积最大,且光生空穴和电子复合概率也相对较低。  相似文献   

9.
Journal of Polymers and the Environment - Epoxidized soybean oil (ESO) compounds were cured with methyl tetrahydrophthalic anhydride (MTHPA) as hardener and 2,4,6-tris (dimethylaminomethyl) phenol...  相似文献   

10.
曾得福  张静  冯婧  胡敏莉  何帅 《化工环保》2018,38(6):651-656
对比了UV、Cu~(2+)/H_2O_2、UV/H_2O_2、Cu~(2+)/UV/H_2O_2体系对盐酸四环素(TC)的降解效果,考察了Cu~(2+)/UV/H_2O_2体系降解TC的影响因素,并进行了动力学分析。实验结果表明:Cu~(2+)的加入明显增强了UV/H_2O_2体系对TC的降解效果,反应60 min时,Cu~(2+)/UV/H_2O_2体系对TC的降解率相比UV/H_2O_2体系提高了24.82%;Cu~(2+)的最佳投加量为120μmol/L;pH对TC的降解影响较小;H_2O_2投加量、温度、紫外灯功率的增加均会增加TC的降解率。Cu~(2+)/UV/H_2O_2体系中TC的降解可用拟二级动力学方程描述,TC降解的活化能为15.56 kJ。  相似文献   

11.
In situ burning is an oil spill response technique or tool that involves the controlled ignition and burning of the oil at or near the spill site on the surface of the water or in a marsh (see Lindau et al., this volume). Although controversial, burning has been shown on several recent occasions to be an appropriate oil spill countermeasure. When used early in a spill before the oil weathers and releases its volatile components, burning can remove oil from the waters surface very efficiently and at very high rates. Removal efficiencies for thick slicks can easily exceed 95% (Advanced In Situ Burn Course, Spiltec, Woodinville, WA, 1997). In situ burning offers a logistically simple, rapid, inexpensive and if controlled a relatively safe means for reducing the environmental impacts of an oil spill. Because burning rapidly changes large quantities of oil into its primary combustion products (water and carbon dioxide), the need for collection, storage, transport and disposal of recovered material is greatly reduced. The use of towed fire containment boom to capture, thicken and isolate a portion of a spill, followed by ignition, is far less complex than the operations involved in mechanical recovery, transfer, storage, treatment and disposal (The Science, Technology, and Effects of Controlled Burning of Oil Spills at Sea, Marine Spill Response Corporation, Washington, DC, 1994).However, there is a limited window-of-opportunity (or time period of effectiveness) to conduct successful burn operations. The type of oil spilled, prevailing meteorological and oceanographic (environmental) conditions and the time it takes for the oil to emulsify define the window (see Buist, this volume and Nordvik et al., this volume). Once spilled, oil begins to form a stable emulsion: when the water content exceeds 25% most slicks are unignitable. In situ burning is being viewed with renewed interest as a response tool in high latitude waters where other techniques may not be possible or advisable due to the physical environment (extreme low temperatures, ice-infested waters), or the remoteness of the impacted area. Additionally, the magnitude of the spill may quickly overwhelm the deployed equipment necessitating the consideration of other techniques in the overall response strategy (The Science, Technology, and Effects of Controlled Burning of Oil Spills at Sea, Marine Spill Response Corporation, Washington, DC, 1994; Proceedings of the In Situ Burning of Oil Spills Workshop. NIST. SP934. MMS. 1998, p. 31; Basics of Oil Spill Cleanup, Lewis Publishers, Washington, DC, 2001, p. 233). This paper brings together the current knowledge on in situ burning and is an effort to gain regulatory acceptance for this promising oil spill response tool.  相似文献   

12.
Transmitted light measurements performed with a UV-visible spectrophotometer were used to characterize how starch affects the position of boundaries on the phase diagram for dilute aqueous solutions of levan (a branched polymer of fructose). Data were collected in the range 15 to 70°C; the minimum concentrations required for separation of a nematic phase and the minimum concentration required for a fully nematic solution were identified within this range. While hard interactions (repulsion between rod-like molecular segments) dictate the formation of a liquid crystalline phase at and above ambient temperature in the absence of starch, soft interactions become more significant as solutions are cooled toward ambient when starch is present. Small amounts of starch might be used as a filler to modify the mechanical properties (while retaining the process-related benefits) of levan films cast from liquid crystalline solution.  相似文献   

13.
以TiO2为载体,选取过渡金属元素Mn为活性组分,稀土金属元素Ce为活性助剂,采用分步共混法制备了Mn-Ce/TiO2催化剂(活性组分负载量16%),系统研究了TiO2载体的晶型和晶粒尺寸对催化剂脱硝活性的影响。实验结果表明:分别以锐钛矿型和金红石型TiO2为载体制备的催化剂,其低温脱硝活性相差不大,活性组分均以无定型态高度分散于载体中,以金红石型TiO2为载体制备的催化剂中部分TiO2转变为锐钛矿型;以不同晶粒尺寸TiO2载体制备的催化剂的低温脱硝活性相差较大,比表面积较大、晶粒尺寸较小的TiO2载体制备的催化剂,其脱硝活性低于晶粒尺寸较大的TiO2载体制备的催化剂。  相似文献   

14.
采用一步浸渍法和分步浸渍法分别制备了V_2O_5-WO_3-CeO_2/TiO_2催化剂,考查了其脱硝性能、抗SO_2中毒性能和脱硝活性稳定性,并通过SEM、EDS、XRD、激光拉曼等技术对催化剂进行了表征。实验结果表明:分步浸渍法制备的催化剂的脱硝活性优于一步浸渍法,且抗SO_2中毒能力更强;在m(V_2O_5)∶m(WO_3)∶m(CeO_2)∶m(TiO_2)=1∶5∶10∶100时催化剂脱硝活性最佳,且具有良好的脱硝活性稳定性。表征结果显示,分步浸渍法与一步浸渍法制备的催化剂晶型结构相差不大,而分步浸渍法制备的催化剂颗粒粒径更小、更均匀,催化剂中Ce、O、V和W元素的含量更高。  相似文献   

15.
陈东  曾玉彬  李源  汪勉  李嘉晨 《化工环保》2015,35(5):481-486
以纳米γ-Fe2O3为磁性介质制备了磁性纳米γ-Fe2O3/SiO2,并将其用于水中亚甲基蓝的吸附。表征结果显示:制备的γ-Fe2O3/SiO2呈不规则核壳结构,平均粒径为38 nm,比表面积为74.35 m2/g,比饱和磁化强度为55 A·m2/kg。实验结果表明:γ-Fe2O3/SiO2对亚甲基蓝的吸附适宜在中碱性条件下进行,4 h即可达吸附平衡;在初始亚甲基蓝质量浓度为180 mg/L、γ-Fe2O3/SiO2加入量为2 g/L、初始溶液pH为7.0、吸附温度为298 K的条件下,吸附量最高为25.4 mg/g;共存金属离子会降低吸附效率,而少量的腐殖酸则会促进吸附;吸附过程符合准二级动力学方程,颗粒内扩散不是唯一的控速步骤;等温吸附满足Langmuir模型,该吸附是一个物理吸附过程;用乙醇洗涤的γ-Fe2O3/SiO2重复使用4次时仍能保持约80%的原吸附量。  相似文献   

16.
制备了钾改性正硅酸锂(K-Li4SiO4),并对其进行了自活化,考察了活化后K-Li4SiO4吸附剂在不同温度和CO2浓度气氛中吸附CO2的性能及动力学行为。总体而言,吸附剂的CO2吸附能力随着温度的升高、CO2浓度的增加而提升。在700℃、100%体积分数CO2气氛中吸附剂的吸附量最大,可达7.9 mmol/g,吸附剂的利用率为95.2%。利用双指数模型能够很好地描述吸附剂在各个温度以及各个CO2浓度气氛下的CO2吸附过程。吸附活化能随着CO2气氛浓度的升高而降低,CO2体积分数为20%,50%,100%时的吸附活化能分别为26448,14035,6178 J/mol。  相似文献   

17.
采用自燃烧法制备了一组钙钛矿型复合氧化物La_(0.8)Ce_(0.2)Fe_(1-x)Co_xO_3(x=0.9,0.7,0.5,0.3,0.1),并考察了其对CO、C_3H_6和NO的三效催化活性。XRD和SEM表征结果显示,La_(0.8)Ce_(0.2)Fe_(1-x)Co_xO_3具有良好的钙钛矿型晶体结构,晶粒大小为纳米级并自组装成片状结构。催化剂的比表面积为14.73~22.43 m~2/g,含有微孔和介孔结构。催化活性评价结果表明:La_(0.8)Ce_(0.2)Fe_(0.1)Co_(0.9)O_3具有很好的三效催化活性,在理论空燃比的条件下,CO、C_3H_6和NO的起燃温度分别为195℃、264℃和290℃,完全转化温度分别为239℃、418℃和415℃,低温三效催化活性良好;Fe和Co的掺杂量同时影响着La_(0.8)Ce_(0.2)Fe_(1-x)Co_xO_3的催化效果。  相似文献   

18.
采用浸渍法在活性碳纤维(ACF)上负载MnOx制备了MnOx/ACF催化剂,考察了将其用于常温催化氧化二氯甲烷的活性和稳定性。实验结果表明,MnOx负载量(质量分数)为9%的9%MnOx/ACF催化剂活性最高,在反应温度为25 ℃、二氯甲烷质量浓度为600 mg/m3时,反应90 min后9%MnOx/ACF催化剂对二氯甲烷的去除率达71%。9%MnOx/ACF催化剂重复使用5次后对二氯甲烷的去除率仍可达57%,具有较好的重复使用性能。催化剂表面的主要元素为C、O和Mn,且Mn主要以Mn4+形式存在。使用后的催化剂中存在二氯甲烷降解的中间产物甲酸盐和甲氧基物种,说明二氯甲烷已被成功降解。  相似文献   

19.
分别采用石灰乳化学沉淀法和低温结晶法去除烟气脱硫溶液中的SO42-。实验结果表明:在室温、CaO溶液质量分数25%的条件下,石灰乳化学沉淀法对SO42-的去除率仅为59.51%,且向溶液中引入了Ca2+,产生的硫酸钙固体废物难以再生利用;采用低温结晶法处理烟气脱硫溶液,在结晶温度7 ℃、结晶时间3 h、NaOH加入量34.8 g/L的条件下,SO42-的去除率为82.04%、滤液中的ρ(Na+)为3.88 g/L。在现场工业应用试验中,采用低温结晶法去除烟气脱硫溶液中的SO42-,平均SO42-的去除率可达70.00%以上,滤液中的ρ(Na+)小于15.00 g/L。该法可有效抑制烟气脱硫溶液中SO42-含量的增加。  相似文献   

20.
张聪  郭振华  马影利  郭强 《化工环保》2018,38(3):275-281
通过水热合成法和液相沉积法制备g-C_3N_4/C@Bi_2MoO_6复合光催化剂,并采用X射线衍射、扫描电子显微镜、氮气吸脱附、紫外-可见漫反射等技术对其进行表征。研究了可见光下g-C_3N_4/C@Bi_2MoO_6催化降解罗丹明B(Rh B)的影响因素,并对其光催化反应机理进行初步探讨。实验结果表明:g-C_3N_4掺杂量为60%(w)时g-C_3N_4/C@Bi_2MoO_6的光催化活性最高;在60%g-C_3N_4/C@Bi_2MoO_6的投加量为1.00 g/L、初始Rh B质量浓度为2.50 mg/L、可见光照射150 min的条件下,Rh B的降解率达到97.90%;在g-C_3N_4/C@Bi_2MoO_6光催化降解体系中,h~+和·O_2~-是主要活性物种。  相似文献   

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