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101.
肖娅  刘振 《云南环境科学》2009,28(3):102-103
因填充柱装柱繁琐,柱效低,最低检出浓度高,不能判别无组织废气中氯乙烯的浓度是否达到《大气污染物综合排放标准》(GB16297—1996)排放限值的要求;用毛细管柱能满足分析的要求。  相似文献   
102.
Metal chlorides loaded on activated carbon to capture elemental mercury   总被引:3,自引:1,他引:2  
Activated carbon (AC) was considered to be an effective sorbent to control mercury in combustion systems. However, its capture capacity was low and it required a high carbon-to-mercury mass ratio. AC loaded with catalyst showed a high elemental mercury (Hg0) capture capacity due to large surface area of AC and high oxidization ability of catalyst. In this study, several metal chlorides and metal oxides were used to promote the sorption capacity of AC. As a result, metal chlorides were better than metal oxides loaded on AC to remove gaseous mercury. X-ray diffractometer (XRD), thermogravimetric analyzer (TGA) and specific surface area by Brunauer- Emmett-Teller method (BET) analysis showed the main mechanisms: first, AC had an enormous surface area for loading enough MClx; second, Cl and MxOy were generated during pyrogenation of MClx; finally, there were lots of active elements such as Cl and MxOy which could react with elemental mercury and convert it to mercury oxide and mercury chloride. The HgO and HgCl2 might be released from AC’s porous structure by thermo regeneration. A catalytic chemisorption mechanism predominates the sorption process of elemental mercury. As Co and Mn were valence variable metal elements, their catalytic effect on Hg0 oxidization may accelerate both oxidation and halogenation of Hg0. The sorbents loaded with metal chlorides possessed a synergistic function of catalytic effect of valence variable metal and chlorine oxidation.  相似文献   
103.
采用恒pH沉淀法,以NaOH溶液为沉淀剂,在溶液pH为3~9的范围内制得4种水合氧化铁(即水铁矿,Fh)。通过XRD、表面零电荷时pH(pHPZC)的测定、N2吸附-脱附对其进行了表征。研究了溶液pH对Fh的甲基橙去除率的影响。表征结果显示:4种Fh均为2-线Fh;它们的pHPZC为6.7~7.9;溶液pH为5,7,9时制备的Fh(Fh5,Fh7,Fh9)的N2吸附-脱附曲线均为IUPAC定义的第Ⅲ种类型。实验结果表明:4种Fh均在溶液pH为4时对甲基橙去除率最高;当甲基橙初始质量浓度为30 mg/L时,Fh5对甲基橙的去除率最高,为92.8%。Langmuir方程更适合描述Fh5对甲基橙的吸附行为,甲基橙在Fh5上产生单分子层吸附,该吸附是自发、放热的物理吸附过程。  相似文献   
104.
纳米Fe_3O_4强化混凝-Fenton氧化预处理垃圾渗滤液   总被引:1,自引:1,他引:0       下载免费PDF全文
采用纳米Fe_3O_4与Fe Cl3制备复合混凝剂,利用混凝沉淀-Fenton氧化工艺预处理垃圾渗滤液原水,研究其处理效果。结果表明:在纳米Fe_3O_4投加量为2 g/L,Fe Cl3投加量为1.4 g/L时制备的复合混凝剂,在p H值为6.5,转速为300 r/min下快速搅拌1 min,转速为100 r/min下慢速搅拌30 min,沉淀时间为30 min的条件下,COD去除率为56.8%,ρ(COD)可由5 240 mg/L降低到2 264 mg/L;利用Fenton氧化处理混凝处理出水,在H_2O_2的投加量为5.5 g/L,n(H_2O_2)∶n(Fe2+)=4,p H值为6,反应时间为80 min,反应温度为25℃的最佳条件下,COD和氨氮的去除率分别为55.7%和40.1%,最终出水ρ(COD)和ρ(氨氮)分别为1 003 mg/L和670 mg/L;该组合工艺对垃圾渗滤液有较好的处理效果,COD、色度和氨氮的去除率分别为80.8%、59.5%和76.2%。  相似文献   
105.
造纸废水中有机氯化物的酶处理技术研究进展   总被引:14,自引:0,他引:14  
张彤  黄慧  赵庆祥 《环境科学》1997,18(2):79-81,86
目前用于造纸废水有机氯化物处理的酶包括:过氧化物酶、酪氨酸酶、酚氧化酶和木质素过氧化酶等,反应机理是,先通过酶反应形成游离基,然后游离基发生化学聚合反应生成高分子化合物沉淀,影响酶处理效率的主要因素包括污染物种类和浓度,酶的种类和浓度、pH、絮凝剂和吸附剂以及污染物之间的协同效应等。  相似文献   
106.
The present study investigated the fate and transport of two significant anions through soil to explore their potential as groundwater contaminants. The retention properties of chloride and sulfate in soils having several significantly different characteristics (soil‐1 and soil‐2) were determined using adsorption test and adsorption‐diffusion column experiments. The maximum adsorption capacity of chloride was 3.7 and 1.16 mg/g, respectively, in soil‐1 and soil‐2, with organic matter (OM) content of 3.92% and 4.69%, respectively. The sulfate adsorption obtained was 24.09% and 13.83%, respectively, in the two soils. The anions exhibited monolayer adsorption in the soils with replacement of hydroxyl ions from soils as the major mechanism of adsorption. On the other hand, the adsorption capacities obtained from the adsorption‐diffusion column experiment were about 100 times lower compared to that of the column tests of both of the soils. The maximum adsorption capacity of chloride was 0.03 mg/g and 0.01 mg/g, respectively, in soil‐1 and soil‐2, whereas that of sulfate was 0.04 mg/g and 0.03 mg/g. The empirical relation for depth of penetration (d) from a known spillage onto the soil surface was determined as a function of sorption capacity (S) and initial anion concentration (C) as = 0.0073e(?57S)C and = 0.0038e(?35S)C for chloride and sulfate, respectively.  相似文献   
107.
二甲基二烯丙基氯化铵的合成   总被引:22,自引:0,他引:22  
常青  陈野 《环境科学》1999,20(1):87-90
为制备聚二甲基二烯丙基氯化铵絮凝剂,采用二步法制备了二甲基二烯丙基氯化铵单体,即在强碱性条件下由烯丙基氯和二甲胺反应先生成二收藏 -烯丙基叔胺,将该叔胺分离出来并再次加入烯丙基氯同会2丙介质中结晶析出委胺晶体。  相似文献   
108.
聚合氯化铁对浊度和腐殖酸的絮凝特性研究   总被引:3,自引:1,他引:2  
采用聚合氯化铁(PFC)絮凝剂在不同pH条件下处理高岭土悬浮液和腐殖酸溶液, 测试了絮凝过程中的Zeta电位、浊度和腐殖酸的去除率变化.结果表明:pH=4时, PFC投加量最小, 剩余浊度最大,投加范围最窄;pH=7时次之;pH=10时由于Fe(Ⅲ)离子的正电荷减弱, 电中和能力不强, 而且同时产生Fe(OH)3(s)的吸附作用使得剩余浊度最低, 投加范围最宽, 但投加量很大;在酸性条件下腐殖酸与Fe(Ⅲ)离子最容易发生络合反应;腐殖酸的存在并没有影响PFC的絮凝效果.  相似文献   
109.
In the system of nitric oxide removal from the flue gas by metal chelate absorption, it is an obstacle that ferrous absorbents are easily oxidized by oxygen in the flue gas to ferric counterparts, which are not capable of binding NO. By adding iron metal or electrochemical method, Fe^Ⅲ (EDTA) can be reduced to Fe^Ⅱ(EDTA).However, there are various drawbacks associated with these techniques. The dissimilatory reduction of Fe^Ⅲ(EDTA) with microorganisms in the system of nitric oxide removal by metal chelate absorption was investigated. Ammonium salt instead of nitrate was used as the nitrogen source, as nitrates inhibited the reduction of Fe^Ⅲ due to the competition between the two electron acceptors. Supplemental glucose and lactate stimulated the formation of Fe^Ⅱ more than ethanol as the carbon sources. The microorganisms cultured at 50~C were not very sensitive to the other experimental temperature, the reduction percentage of Fe^Ⅲ varied little with the temperature range of 30-50℃.Concentrated Na2 CO3 solution was added to adjust the solution pH to an optimal pH range of 6-7. The overall results revealed that the dissimilatory ferric reducing microorganisms present in the mix-culture are probably neutrophilic, moderately thermophiUc Fe^Ⅲ reducers.  相似文献   
110.
以酸性氯化铜蚀刻废液为原料,在Na2CO3和助剂A存在下,采用一步沉淀法制备碱式碳酸铜。考察了反应pH、n(Na2CO3)∶n(助剂A)、反应时间和反应温度对碱式碳酸铜制备效果的影响,并采用XRD、TG 及SEM对产品进行了表征。实验结果表明:在反应pH 7.0、沉淀剂配比n(Na2CO3)∶n(助剂A)=1∶2、反应时间1.0 h、反应温度70 ℃的条件下,产品的w(Cu2+)达55.62%,w(Cl-)为0.013%,符合HG/T 4825—2015《工业碱式碳酸铜》的要求;蚀刻废液中Cu2+的回收率接近100%。表征结果表明,制得的产品为单一组分CuCO3·Cu(OH)2,小颗粒为直径1.8~5.4 μm的不规则球形,团聚后的大颗粒呈姜块状形貌,粒径为48~75 μm。  相似文献   
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