共查询到18条相似文献,搜索用时 46 毫秒
1.
以氯化锌为活化剂,通过微波诱导热解法制备小麦秸秆吸附剂,并以微波功率、热解时间和氯化锌质量分数为影响因素,碘吸附值为响应值,采用响应面法对小麦秸秆吸附剂的制备工艺进行优化。结果表明,热解时间和微波功率对碘吸附值的交互作用明显。响应面优化工艺分析,发现当热解时间4.03 min、微波功率569.0 W,氯化锌质量分数为31.24%时,碘吸附值最大,为643.33 mg/g。另外,小麦秸秆吸附等温线与I型相似,吸附剂的微孔容积为0.238 4cm3/g,吸附剂的BJH孔径分布表现窄小,最高峰出现在2.1nm左右。处理Cr(VI)废水的吸附试验,发现Cr(VI)的去除率可以达到70%以上。研究表明,微波诱导热解法及响应面优化工艺制备的小麦秸秆吸附剂技术可行且具有良好的重金属废水处理应用前景。 相似文献
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为了提高废水中氨氮处理效率,采用响应面分析法对超声吹脱处理香兰素生产废水中的氨氮工艺条件进行优化,建立了吹脱时间、pH值、超声波功率及气液比4个关键因素与氨氮去除率之间的回归模型。结果表明,各影响因素对氨氮去除率影响程度由大到小依次为超声波功率、气液比、pH值、吹脱时间。确定对氨氮去除的最佳工艺条件为在超声功率90 W,超声吹脱时间90 min,pH值12、气液比600∶1的条件下,氨氮的去除率达到91.60%,与预测值接近,表明拟合度好。试验模型可以用来指导超声吹脱法处理废水中的氨氮。 相似文献
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以高炉渣(BFS)为原料制备高炉渣基沸石分子筛(BFSZ),为实现对BFSZ制备工艺条件的优化,基于单因素试验结果,采用Box-Behnken Design(BBD)响应面法考察晶化时间(A)、晶化温度(B)、初始硅铝物质的量比(C)等因素对BFSZ阳离子交换量(CEC)的影响。结果表明:响应面法建立的回归模型方程具有高度的显著性,可信度和精确度较高,得到制备BFSZ的优化工艺条件:碱熔温度为600℃、液固比为5∶1 mL/g、晶化时间为8.74 h、晶化温度为98.41℃、初始硅铝物质的量比1.18,此时BFSZ的CEC为3.21 meq/g。经验证,BFSZ的CEC实际值与预测值的相对误差约为1.9%,表明该模型能够很好地反映各因素对BFSZ的CEC影响。 相似文献
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为简化传统报废锂离子电池(LIBs)处理工艺,对报废镍钴锰三元(NCM)电池正极材料进行浸出处理,在单因素试验的基础上,利用响应面分析法分析浸出温度、抗坏血酸浓度、固液比和浸出时间对正极材料中Co、Li、Mn、Ni浸出率的影响。建立数学回归模型,分析因素间的交互作用。结果表明,各金属的回归方程模型均显著(p<0.05),R^2≥0.88,信噪比N>4,C.V.较低,可用于报废NCM电池中Co、Li、Mn、Ni浸出工艺的分析与预测,其中浸出温度和抗坏血酸浓度的交互作用对Li和Ni的浸出率影响最大。各金属浸出率的最佳工艺条件为:浸出温度69.26℃,抗坏血酸浓度1.24 mol/L,固液比31.30 g/L,浸出时间59.79 min。在此条件下,Co、Li、Mn、Ni浸出率分别为96.35%、92.53%、89.28%、56.32%。结合回归分析及可操作性原则,进行3次平行试验,试验结果与模型理论预测值接近。试验过程简单,处理方法对环境友好,有利于工业化生产。 相似文献
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针对粉煤灰的资源利用和环境保护问题,对粉煤灰地质聚合物混凝土(Fly ash Geopolymer Concrete,FGC)的制备进行了系统研究。为有效解决FGC制备参数的优化问题,在单因素分析的基础之上,采用Box-Behnken Design响应面方法设计并进行了系列研究试验,建立了基于响应面方法的FGC强度预测模型,并对其制备参数进行了优化。结果表明,当FGC水胶比为0.35、用碱量为7.9%、水玻璃模数为1.66时,其28 d抗压强度预测值得到最大值(44.6 MPa),验证试验证明了响应面方法优化制备FGC的有效性。 相似文献
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选择聚合氯化铝(PAC)、聚合硫酸铁(PFS)、聚合氯化铁(PFC)为絮凝剂,对比研究3种絮凝剂去除温室龟鳖养殖(greenhouse turtle aquaculture)废水悬浮物效果。结果表明,絮凝剂PAC的絮凝效果最佳。选择PAC为絮凝剂,阳离子聚丙烯酰胺(PAM)为助凝剂,通过响应面法以浊度去除率为响应值,PAC和PAM的投加量和搅拌时间为影响因素,对工艺关键参数进行优化,最终确定最佳工艺参数。根据响应面分析结果,确定龟鳖养殖废水的最佳絮凝条件为PAC质量浓度85.3 mg/L、PAM质量浓度19.8 mg/L、搅拌时间2 min。在此条件下浊度去除率为97.1%,为温室龟鳖养殖废水的优化絮凝处理提供了参考依据。 相似文献
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采用UV/Fenton联合氧化法处理糖精钠工业废水,首先单因素实验研究了H_2O_2浓度、FeSO_4浓度、初始pH值和反应时间对糖精钠废水处理效果的影响,并利用响应面优化实验得到了最优条件:反应时间110 min,pH值为6,FeSO_4用量为5 g/L,H_2O_2用量为78 mL/L。响应面实验的结果表明,影响因子的显著性为H_2O_2用量FeSO_4用量反应时间初始pH值;FeSO_4用量和H_2O_2用量的交互作用显著;数学模型回归性较好。以最优条件处理后的糖精钠废水COD去除率为89.8%,BOD去除率为72.7%,TOC去除率为79.2%,同时,色度、悬浮物和氨氮去除率分别达到98.4%,90.9%,98.6%,BOD/COD比值由0.24提高到0.64,糖精钠废水可生化性得到了很大提高,为后续进入工业园区污水处理厂生化处理奠定了基础。 相似文献
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采用微波诱导热解法制备低成本落叶吸附剂,以实现落叶的资源化利用.以碘吸附值为响应值,采用响应面分析法研究了微波诱导热解法制备落叶吸附剂的工艺条件.结果表明,热解时间与微波功率之间存在交互作用,当热解功率增加时,可适当缩短热解时间.落叶吸附剂的最佳制备工艺条件为:热解时间4.04 min,微波功率488.72W,氯化锌质量分数27%.落叶吸附剂以微孔吸附为主,BJH孔径分布较窄,孔容最高峰对应的孔径在1.9 nm左右,Langmuir比表面积为769.61 m2/g. 相似文献
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为了达到制备富氧水时低能耗、高含氧、易操作的目的,采用静态螺旋切割细分子化技术自主开发设计了富氧水制备装置,并采用响应曲面法研究了富氧水装置的氧气流量、氧气压力、水流量、水压力等4个关键参数对富氧水含氧量的影响。试验结果表明,所测试的富氧水制备装置最优生产工艺参数组合为:氧气流量0. 9 L/min,氧气压力0. 25 MPa,水流量0. 6 m~3/h,水压力0. 4 MPa。优化后制备的富氧水含氧量可达46. 20 mg/L,较优化前含氧量提高了6. 73%,富氧水制备装置的生产性能得到了改善。 相似文献
11.
A novel advanced oxidation process (AOP) using ultrasonic activated persulfate oxidation was used to pretreat mature landfill leachate. The effects of different operating variables (e.g., the initial S2O82− concentration, pH, temperature, ultrasonic power and reaction time) on the oxidation performance were investigated regarding the total organic carbon (TOC) removal efficiency, and the variables were optimized using the integrated Taguchi method and response surface methodology (RSM). Based on the Taguchi method under L16 (45) arrays and a grey relational analysis, the most significant variables included the initial S2O82− concentration, temperature and reaction time. The concentrations of these variables were further optimized using RSM. Using the integrated optimization method, the optimal conditions included an initial S2O82− concentration of 8.5 mM, a reaction temperature of 70 °C and a reaction time of 2.46 h, which resulted in a TOC removal efficiency of 77.32%. The experimental results showed that the enhanced TOC removal from mature landfill leachate by sono-activated persulfate oxidation could be attributed to the combined effects of ultrasonic catalysis and sulfate radical-AOP. Overall, ultrasonic activated persulfate oxidation is a promising method for the pretreatment of landfill leachate. 相似文献
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为研究高瓦斯易自燃煤层不同供风量、高抽巷抽采流量、低抽巷抽采流量3因素对采空区自燃“三带”分布影响规律,选取阳煤五矿8406工作面为研究对象,在数值模拟研究基础上,采用Design Expert软件进行Box Behnken试验设计,构建采空区氧化升温带宽度在3因素、3水平条件下的二次回归响应曲面模型,并对不同条件下采空区氧化升温带宽度进行预测与分析。结果表明:二次回归方程P值为0.001 6,预测模型显著,模型的失拟项为0.606 3,不显著,回归方程具有统计学意义;当供风量为1 500~2 000 m3/min,低抽流量为450~650 m3/min,高抽流量为100~200 m3/min时,对氧化升温带宽度一次项重要度排序为C(高抽巷抽采流量)>A(供风量)>B(低抽巷抽采流量),二次项重要度排序为AC(供风量和高抽巷抽采流量)>AB(供风量和低抽巷抽采流量)>BC(低抽巷抽采流量和高抽巷抽采流量),且AB,AC,BC之间均无交互作用。 相似文献
14.
Titania nanomaterial with an anatase structure and 5.6 nm crystallite size and 280.7 m2 g−1 specific surface areas had been successfully prepared by sol–gel/hydrothermal route. The effect of pH as a type of autoclave and calcination was studied. Crystallite size and phase composition of the prepared samples were identified. X-ray diffraction analyses showed the presence of anatase with little or no rutile phases. The crystallite size of the prepared TiO2 with acidic catalyst was both smaller than that prepared with basic catalyst, and was increasing after acidic calcinations by a factor 4–5. Basic calcinations produced a specific increase of 1.5. Rutile ratio and the particle size were increased after calcination at 500 °C. However, TiO2 powder synthesized using a basic catalyst persisted the anatase phase and a loosely aggregation of particles. Anatase TiO2 as prepared with acidic catalyst in Teflon lined stainless steel autoclave demonstrated the highest photocatalytic activity for degradation of 2,6-dichlorophenol-indophenol under ultraviolet irradiation with t½ 0.8 min. 相似文献
15.
《Process Safety and Environmental Protection》2014,92(6):522-531
Acrylic acid (AA) is an important component for the production of acrylate polymer. In a typical acrylic manufacturing unit, waste water contains AA in a range of 4–15 wt.% contributes to the high values of chemical oxygen demand. Due to the toxicity of AA to the aquatic organism, this wastewater should be treated before it is discharged to the environment. The waste water could be evaporated before sending to the incineration which was neither economic feasible nor environmental friendly. Esterification of wastewater containing carboxylic acid with alcohol could be a promising method to recover the acid by converting it to ester while purifying the wastewater. In the present study, recovery of AA via esterification with 2-ethyl hexanol (2EH) was investigated. The model industrial wastewater with various concentration of AA (10–100% w/w) was reacted with 2EH to produce 2-ethyl hexyl acrylate (2EHA) in the setups with total reflux and continuously water removal. These Amberlyst-15 (ion exchange resin) catalyzed reactions were carried out under the mass transfer resistance free region. The performance of both systems was compared. The yield for the reactions of the AA solutions with the AA concentrations of 30–80% was enhanced significantly when the reactions were carried out using the second setup. The kinetic data of the esterification of dilute AA was well described by the Eley–Rideal (ER) kinetic model incorporated with a correction factor to consider the catalyst fouling effect and pseudo-homogeneous (PH) kinetic model for the AA polymerization. The findings have shown the potential of recovering AA from the waste water stream via esterification. The concentrated AA solutions or larger amount of inhibitor should be adopted to prevent the catalyst fouling by the deposition of poly-acrylic acid on the catalyst surface. 相似文献
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针对化学品泄漏事故的现场应对处置,对目前比较通用的CSTI应变程序和HAZMAT应变程序进行了详细论述,结合我国化学品应急管理的现状,提出我国化学品泄漏事故现场应变程序,应变程序包括泄漏物辨识、划分管制区域、人员疏散、成立现场指挥部、后果分析和现场监测、制定现场行动方案并组织实施、善后处理和文档记录。 相似文献
17.
Piechowicz J 《International journal of occupational safety and ergonomics》2011,17(3):271-276
Sound field parameters are predicted with numerical methods in sound control systems, in acoustic designs of building and in sound field simulations. Those methods define the acoustic properties of surfaces, such as sound absorption coefficients or acoustic impedance, to determine boundary conditions. Several in situ measurement techniques were developed; one of them uses 2 microphones to measure direct and reflected sound over a planar test surface. Another approach is used in the inverse boundary elements method, in which estimating acoustic impedance of a surface is expressed as an inverse boundary problem. The boundary values can be found from multipoint sound pressure measurements in the interior of a room. This method can be applied to arbitrarily-shaped surfaces. This investigation is part of a research programme on using inverse methods in industrial room acoustics. 相似文献
18.
针对化学品泄漏事故的现场应对处置,对目前比较通用的CSTI应变程序和HAZMAT应变程序进行了详细论述,结合我国化学品应急管理的现状,提出我国化学品泄漏事故现场应变程序,应变程序包括泄漏物辨识、划分管制区域、人员疏散、成立现场指挥部、后果分析和现场监测、制定现场行动方案并组织实施、善后处理和文档记录. 相似文献