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61.
IntroductionCeramic,consistofearthymaterialslikeclaykaolin ,limestoneandsandglass .Ceramicmaterialsarenonmetalic ,inorganiccompoundsprimaryoxides ,alsocarbides ,nitridesandsilicides .Twotypesofbondingmechanismsoccurinceramicmaterial ,ionicandcovalent.Theo… 相似文献
62.
以空气扩散阴极、纯铂阳极和紫外灯构建了阴阳极成对耦合紫外光辅助电催化的体系,并系统地研究了电流密度、阳极SO42-浓度以及毒死蜱初始浓度对毒死蜱降解效果的影响.结果表明,当阴极/阳极的电流密度为45/450 mA·cm-2,阳极SO42-浓度为1.0 mol·L-1,毒死蜱初始浓度为25 mg·L-1时,反应60 min后毒死蜱降解率可达99%.对阴极产物的红外分析结果表明,毒死蜱降解后结构中的吡啶环和PS被破坏,产生亚硝氮和正磷酸盐,毒性得到减弱.通过对比阴阳极成对耦合紫外光复合体系与阴极耦合紫外光复合体系、阳极耦合紫外光复合体系的电流效率,发现阴阳极成对耦合紫外光复合体系的电流效率是阴极耦合紫外光复合体系的2倍,是阳极耦合紫外光复合体系的4倍. 相似文献
63.
为考察电厂烟气对采空区防灭火效果的影响,采用吸附实验装置和热重分析仪开展了不同气体氛围下煤吸附O2的实验研究,研究了不同气氛下煤的着火活化能。结果表明:将惰性气体N2和烟气注入井下,均可有效地减小常温常压下煤对氧气的吸附量,即具有抑制煤自燃氧化反应的作用。其中,烟气对减小煤吸附氧气量的效果优于N2,使同忻矿和高海矿煤样吸附氧气量分别减少了27%和35%。TG实验数据表明,煤样在烟气氛围下燃烧时低温氧化阶段的增重率略小于在空气氛围下燃烧时的增重率,而其着火点大于在空气氛围下燃烧时的着火点。同时,发现煤样在烟气中燃烧时的着火活化能大于在空气中燃烧时的着火活化能,说明煤在烟气氛围下燃烧时对O2的吸附量变小,活化能增大,增加了煤自燃的困难程度。 相似文献
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65.
CH3NH2(一甲胺)作为一种重要的工业原料而被大量使用,其嗅阈值低,具有刺鼻的鱼臭味,是一种典型的恶臭气体. 选取PS(过二硫酸盐)作为氧化剂,采用湿法吸收氧化去除CH3NH2. 在探讨CH3NH2的吸收性能的基础上,比较了4种方式〔Fe2+活化PS、CA(柠檬酸)螯合Fe2+活化PS、Fe0活化PS、CA联合Fe0活化PS〕对CH3NH2湿法氧化去除效果的影响. 结果表明:CH3NH2 气体在酸性条件下易溶于水;单独用Fe2+或Fe0活化PS处理CH3NH2时,Fe0活化后的去除效果明显优于Fe2+;然而,在联合使用螯合剂CA之后,Fe2+活化的去除效果反而优于Fe0. CA螯合Fe2+的CH3NH2去除率由单独Fe2+活化时的32%升至64%,Fe0活化与CA联合Fe0活化去除率均提升至40%. 究其原因,可能是由于不同活化方式下Fe2+释放速率不同所致,释放速率直接影响了Fe2+的存在时间,Fe2+活化PS速率对于氧化去除效果有影响,并最终影响CH3NH2的脱除. 相似文献
66.
67.
DNA damage is an important step in carcinogenesis. The Ames assay is a short-term screening of carcinogens that induce DNA damage. Most carcinogens require enzymatic activation through oxidation by cytochrome P450 (CYP450) in the presence of S9 mix. A combination of iron (Fe)(III) porphyrin and an oxidant is also able to oxidize compounds as an alternative metabolic pathway to CYP450. Previously it was reported that a chemical model containing a water-soluble 5,10,15,20-tetrakis(1-methylpyridinium4-yl)porphyrinatoiron(III) chloride (4-MPy) and tert-butyl hydroperoxide (t-BuOOH) activated aromatic amines and amides. In this study, a chemical model composed of an Fe porphyrin, water-insoluble 5,10,15,20-tetrakis(pentafluorophenyl)porphyrinatoiron(III) chloride (F5P) or water-soluble 4-MPy was optimized with an oxidant – t-BuOOH, magnesium monoperoxyphthalate (MPPT), or iodosylbenzene (PhIO). Subsequently the mutagenicity of benzo[a]pyrene (B[a]P) and chrysene in Salmonella typhimurium TA strains was compared. B[a]P was activated by a combination of F5P or 4-MPy plus MPPT or PhIO in S. typhimurium TA1538. The B[a]P-induced mutagenicity with F5P plus oxidant was higher than 4-MPy plus oxidant. Mutagenicity of chrysene, a tetracyclic aromatic hydrocarbon, was not detected in the presence of F5P/PhIO in S. typhimurium TA98, but was activated in the presence of F5P/MPPT. The F5P/MPPT activated other polyaromatic hydrocarbons (PAH) in the S. typhimurium TA98 assay including dibenz[a,c]anthracene, dibenz[a,h]anthracene, 3-methylcholanthrene, and benzo[a]anthracene. The results indicated that the F5P/MPPT was the most efficient model for detecting PAH-induced mutagenicity in the Ames assay. 相似文献
68.
低温驯化是提高部分亚硝化-厌氧氨氧化(PN/A)组合工艺低温脱氮效能和运行稳定性的有效方法.为探究低温驯化对污泥特性的具体影响,本文从温度敏感性、颗粒外观形态、胞外聚合物(EPS)组成和微生物群落结构等方面,对中高温培养(30℃)和低温驯化(15℃)PN/A颗粒污泥之间的差异性进行了分析.反应热力学的研究结果表明,驯化污泥(GL)在低温区(10~20℃)的脱氮性能较中高温培养污泥(GH)有了显著提高,总无机氮去除的表观反应活化能(Ea)降低了28.4%.与GH相比,GL的平均粒径减小了25.8%,EPS含量增长了16.6%,颗粒的沉降性能明显下降.由高通量测序结果可知,GL具有更高的菌群多样性,同时,污泥中好氧氨氧化菌(Nitrosomonas)与厌氧氨氧化菌(Candidatus_Kuenenia)的丰度比值(0.04)远小于GH的0.34.这意味着颗粒污泥在低温环境中对慢速生长自养菌仍具有较强的截留能力.上述发现为解析PN/A污泥在低温条件下的自适应机制,推动组合工艺的工程化应用提供了重要参考. 相似文献
69.
Fuqiang Yang Chao WuZijun Li 《Journal of Loss Prevention in the Process Industries》2011,24(2):131-137
Spontaneous combustion of sulfide concentrates can cause many serious problems during storage. In this study, two representative samples (sulfur-rich sulfide concentrate and iron-rich sulfide concentrate) were investigated for the self-heating behavior using the crossing-point temperature (CPT) method. The corresponding apparent activation energies were determined, 13.7366 kJ/mol for iron-rich sulfide concentrate and 21.3817 kJ/mol for sulfur-rich sulfide concentrate. Furthermore, the surface temperatures of sulfide concentrate stockpiles in different seasons were also measured by a thermal image apparatus. It was found the temperature for iron-rich sulfide concentrate stockpile was higher than that for rich-sulfur sulfide concentrate stockpile. These research results show iron-rich sulfide concentrate exhibits stronger propensity to spontaneous combustion than sulfur-rich sulfide concentrate. Particular attention should be paid to the fire hazard of iron-rich sulfide concentrate in daily safety check work. The combination of the CPT method with the infrared thermal image measurement provides a new approach for the risk assessment on the propensity of sulfide concentrates to spontaneous combustion during the production, storage and transportation. The useful data and experience achieved in this investigation can be also referenced in similar cases later. 相似文献
70.
After adding either organic or inorganic ligands, sulfidated nano-zero-valent iron (SnZVI) was used for aerobic degradation of phenol, and the effect of the ligand species on oxidation performance was investigated. We found that SnZVI hardly degraded phenol in the absence of ligand addition. Ligands initiated and promoted the degradation of pollutants by SnZVI. The data herein show that a characteristic inorganic ligand, tripolyphosphate (TPP), is more effective in enhancing oxidation than a characteristic organic ligand oxalate. In addition to the scavenging of reactive oxidants by the organic ligand, more ferrous ion (Fe(II)) dissolution from SnZVI in the TPP system is another cause for the superior enhancement by the inorganic ligand. In the oxalate system, as the sulfur content of SnZVI increased, the oxidation efficiency increased because FeS shell promoted the transfer of electrons to produce more reactive oxygen species (ROS). In TPP system, the effect of sulfur content on oxidation performance is more complex. The SnZVI with low sulfur content showed poor oxidation performance compared with that of nZVI. Further experiments proved that sulfidation might weaken the complexation of TPP with surface bound Fe, which would slow down the ionic Fe(II) dissolution rate. Therefore, sulfidation has the dual effects of enhancing electron transfer and inhibiting the complexation of inorganic ligands. In addition, the mechanisms of ROS generation in different ligand systems were investigated herein. Results showed that the critical ROS in both the oxalate and TPP systems are hydroxyl radicals, and that they are produced via one-electron activation of O2. 相似文献