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971.
聚硅酸铁(PSF)混凝剂硅铁反应过程研究 总被引:6,自引:1,他引:5
以水玻璃、硫酸亚铁及氯酸钠为原料,用共聚法制备不同Si/Fe比的聚硅酸铁(PSF)混凝剂(PSF0.5、PSF1、PSF3分别指Si/Fe摩尔比为0.5、1、3),同时监测制备过程中pH的变化,并就不同共聚反应时间的样品,分别采用X-射线衍射法(XRD)、紫外吸收(UVA)扫描法、透射电镜法(TEM)、光子相关光谱法(PCS)及红外光谱法(IR)对其反应过程的微观品质进行多方面表征.结果表明,PSF是硅铁反应的共聚物,而不是简单的原料复配.不同Si/Fe比的PSF具有不同的硅铁成键速度、成键方式及成键稳定性,低Si/Fe比主要生成以Si—O—Fe—O—Fe—O—Si键络合的物种,而高Si/Fe比主要生成以Si—O—Fe—O—Si—O—Si键络合的物种,Fe—O—Fe键的形成速度快并且与Si—O—Fe键的形成可能有相互促进作用,而Si—O—Si键(硅酸聚合)形成速度慢并且与Si—O—Fe键的形成可能有相互阻碍作用,Fe—O—Fe键的稳定性比Si—O—Fe或Si—O—Si键差.对于PSF中硅铁不同成键模式的分析为合成高性能、高稳定性的硅酸铁类混凝剂以及为优势形态控制提供了一定的理论基础. 相似文献
972.
973.
Background, aim, and scope The pulp and paper industry is the sixth largest polluter discharging a variety of gaseous, liquid, and solid wastes into
the environment. Effluents from bleached Kraft mill effluents (BKME) are polluting waters to a great extent These effluents
cause considerable damage to the receiving waters if discharged untreated since they have high levels of biological oxygen
demand (BOD), chemical oxygen demand (COD), chlorinated compounds (measured as AOX), suspended solids (mainly fibers), fatty
acids, tannins, resin acids, lignin and its derivatives, sulfur and sulfur compounds, etc. This study aimed to remove adsorbed
organic halogen (AOX), total nitrogen, and lignin-degrading products in the wastewater (4,500 m3/h) from the paper mill in the pulp and paper industry, which is discharged to sea from a plant located in western Turkey.
Materials and methods The photocatalytic degradation of AOX, total nitrogen, and chlorinated lignin in BKME have been investigated in different
parameters, such as time, H2O2 and TiO2 concentration. In addition, for investigating the effect of chlorine on the removal of lignin, pure lignin solution was prepared
in equal amounts to chlorinated lignin degradation products found in BKME. The same experiments were conducted for this solution.
Experiments were carried out in photocatalytic reactor made of Pyrex glass. The mercury lamp was used as a radiation source.
All irradiation was carried out under constant stirring. The existence of dissolved O2 is an important factor which increases the photocatalytic degradation. Hence, we used an air pump for the aeration of the
wastewater solutions. The temperature of the wastewater was controlled and adjusted to 25°C by thermostat pump in conjunction
with a cooler. At the end of all experiments, AOX, total nitrogen and lignin concentrations were analyzed according to standard
methods. All experiments were performed in duplicate and average values were used.
Results and discussion When the effect of H2O2 and time were investigated, it was observed that the AOX concentration increased from 3.0 to 11.0 mg/L by only UV. However,
when H2O2 was added, AOX concentration decreased from approximately 3.0 to 0.0 mg/L. The optimal conditions for the removal of AOX
appear to be an initial H2O2 concentration of 20.0 mL/L and reaction time of 50 min. In addition, at the same experiment conditions, it was seen that
the total nitrogen concentration decreased from 23.0 to 15.0 mg/L by only UV and by increasing H2O2 concentration, the concentration of 20.0 mL/L H2O2 appears to be optimal (9.0 mg/L). The AOX, total nitrogen and lignin degradation products and pure lignin go through a minimum
when the concentration of H2O2 and TiO2 increases at constant pH and UV intensity. The kinetics for the degradation of AOX, total nitrogen and lignin degradation
products followed a pseudo-first order law with respect to the products, and the degradation rates (min−1) for the UV/TiO2/H2O2 system were higher than that of the corresponding values for the UV/H2O2 system.
Conclusions The AOX, total nitrogen and lignin concentration go through a minimum when the concentration of H2O2 and TiO2 increases at constant pH and UV intensity. It was found that the UV/TiO2/H2O2 system has proved capable of the degradation of total nitrogen as well as chlorinated and degraded lignin in BKME.
Recommendations and perspectives The photocatalytic process can be considered a suitable alternative for the remove of some compounds from the BKME. Nevertheless,
further studies should be carried out to confirm the practical feasibility of BKME. Another result obtained from the study
is that pre-purification carried out with UV/TiO2/H2O2 photocatalytic process may constitute an important step for further purification processes such as adsorption, membrane processes,
etc. 相似文献
974.
基于筛选测试的化工反应危害评估探讨 总被引:1,自引:0,他引:1
本文主要讨论了基于筛选测试方法的化工反应危害评价。该方法是利用DSC、TS“等差热分析仪对化学品和混合物进行热稳定性的筛选测试,根据起始温度和反应焓变对化合物危害程度分级进行分级,建立反应风险指数,从而在小试和中试阶段就将反应危害降低或消除,确保大规模生产时的安全性,为真正实现化工工艺本质安全。此外,还比较了DSC、TSU、AFFAC、RSST等热分析仪,认为TSU和RSST是目前较为合适的热筛选分析仪,为建立反应危害实验室相关仪器的选型提供了参考。 相似文献
975.
采用溶胶凝胶法制备了多壁碳纳米管负载纳米TiO2的复合光催化剂(TiO2/MWCNTs),以偶氮类染料甲基橙为目标污染物,在自制的光催化反应器上进行了光催化降解反应实验。主要研究同一甲基橙初始浓度(C0)下,多壁碳纳米管不同管长和管径对复合光催化剂催化效果的影响。结果表明:该降解反应可用一级反应动力学方程描述,反应速率常数k随着多壁碳纳米管管长和管径的增大而增大;与纯纳米TiO2相比,复合光催化剂对甲基橙的降解率提高了6%~18%,反应速率常数为前者的1.19~2.11倍;采用复合光催化剂的甲基橙光降解溶液自行沉降分离效果较好,静止沉降60 min后达到沉降平衡,剩余浊度为8.5 NTU,下降了90.6%。 相似文献
976.
977.
光助Fenton氧化法降解水中六氯苯的研究 总被引:7,自引:2,他引:5
采用光助Fenton氧化法处理六氯苯模拟废水,考察了反应时间、Fe3 与H2O2摩尔比、Fenton试剂用量、初始pH、六氯苯初始浓度、光强对六氯苯降解效果的影响,并初步探讨了六氯苯的降解动力学规律.结果表明.光助Fenton法降解六氯苯的最佳工艺条件为:紫外灯功率为300 W、Fe3 投加量为1.0 mmol/L、H2O2投加量为5.0 mmol/L、反应时间为60 min、初始pH为3,在此条件下,浓度为500μg/L的HCB的去除率可达91.3%.UV辐射与Fenton氧化对HCB的降解具有协同效应.光助Fenton法对HCB的降解符合一级反应动力学方程,表观速率常数为0.04 min-1,与Fenton法相比,提高了近9倍. 相似文献
978.
用原位红外分别进行了MnOx/Al-SBA-15催化剂上NH3和NO+O2的吸附态和瞬态实验以及NH3+NO+O2反应的稳态实验。结果表明,催化剂上存在着L酸位和B酸位,NH3吸附在催化剂上形成配位态的NH3和NH4+,配位态的NH3能脱氢形成—NH2活性中间态。NO+O2在催化剂上吸附形成硝酸盐类、硝基类和亚硝酸盐类。将NO+O2通入预吸附NH3的催化剂中时,表面的配位态的NH3、NH4+和—NH2都会减少直至消失,SCR反应显著。而将NH3通入预吸附NO+O2的催化剂中时,只有硝基类和亚硝酸盐类减少,硝酸盐类基本不发生变化,SCR反应微弱。NH3+NO+O2稳态反应中,催化剂表面稳定存在着NH4+和硝酸盐类,SCR反应显著。 相似文献
979.
为了对水中苯酚的去除进行研究,通过离子交换法及液相沉积法在天然沸石上负载Fe3O4制备出一种具有较高反应活性的复合催化剂,采用X-射线衍射仪(XRD)、扫描电镜(SEM)等仪器对其结构和形貌进行表征,并利用复合催化剂进行非均相UV/Fenton反应处理模拟苯酚废水,考察不同因素对苯酚降解效果的影响。实验结果表明,在催化剂投加量为0.4 g/L,H2O2投加量为二分之一理论投加量,pH为3~10且室温的条件下,处理100 mg/L的模拟苯酚废水,60 min之内苯酚去除率可达90%以上。通过对催化剂的稳定性研究,发现经5次循环使用后,苯酚去除率均可保持在90%以上,具有良好的循环使用性能。 相似文献
980.
不同植物和吸附剂对室内甲醛的去除效果 总被引:1,自引:0,他引:1
以绿萝、芦荟、活性炭和茶渣为材料,采用密闭箱法进行甲醛净化能力的研究。结果表明,4种物质对甲醛都具有一定的去除效果,但是作用效果差异明显。植物中绿萝对甲醛的净化效果比芦荟好,对不同初始质量浓度甲醛的去除率分别为76.5%、51.8%和40.0%,光照条件有利于植物对甲醛的吸收,甲醛的去除效率提高约39.3%。茶渣表面突起结构和较大的孔隙结构有利于甲醛的去除,对不同初始质量浓度甲醛的去除率分别为49.0%、32.6%和21.1%。动力学研究表明,在所研究的条件范围内,两种吸附剂吸附甲醛符合拟一级动力学,活性炭吸附甲醛的反应速率常数ka=0.0318min-1,茶渣吸附甲醛的反应速率常数kt=0.0319 min-1。 相似文献