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861.
通过对全混流反应器(CSTR)热平衡条件下多态的分析,探讨热稳定性条件,并对一级不可逆反应在CSTR中的热稳定性进行定性分析;探讨不同反应热和活化能对反应过程热稳定性的影响,及其对反应器发生"飞温"事故要求紧急停车时的控制要求的影响,进而从反应工程的角度对高危工艺的界定提出新的思路。分析结果表明,工艺的危险性不仅与工艺的种类相关,更与工艺本身的热力学、动力学特征密切相关。通过对高危工艺的热稳定状况的分析,能够动态地揭示其在温度扰动下发生"飞温"或"熄火"的过程,从本质上把握高危工艺潜在的危险性,并能有针对性地制定自动化改造方案,提高化工企业的本质安全度。  相似文献   
862.
国外屋顶绿化推广的政策分析与启示   总被引:1,自引:0,他引:1  
分析了屋顶绿化的生态价值和经济效益,介绍了国内外屋顶绿化政策及实施情况,探讨了如何在我国城市化进程中,通过相关政策和技术标准的运用,不断推广屋顶绿化,充分发挥其对城市环境保护和生态服务的作用。  相似文献   
863.
我国城市生活垃圾产生量逐渐增大,严重威胁人体健康及城市环境。分类收集是实现废弃物减量化、资源化、无害化的有效手段。我国城市生活垃圾分类收集状况不佳,大部分城市均为混合收集,给垃圾处理和城市环境带来了巨大压力。本文从国外发达国家城市生活垃圾分类收费促进生活垃圾分类收集的成功经验出发,提出几点推动我国垃圾分类的对策。  相似文献   
864.
染料厂污染土壤中六氯苯的水淹法厌氧降解   总被引:2,自引:0,他引:2  
以乙酸为碳源,采用正交实验的方法,探讨了水淹法厌氧降解某染料厂污染土壤中六氯苯的效果,研究考察了初始pH、反应温度和固液比3个环境因素对六氯苯降解率的影响,确定了六氯苯最佳的厌氧降解条件。结果表明,初始pH对土壤中六氯苯的降解率影响最大。在初始pH为5,反应温度为45℃,固液比为1∶1的最佳反应条件下,六氯苯的降解率最高达到52.56%。  相似文献   
865.
城市污泥微波干化工艺及干化特性研究   总被引:2,自引:0,他引:2  
采用微波和烘箱结合及全程烘箱2种方式对城市污泥干化进行对比研究,考察了不同粒径、微波干化预处理、预处理时间及烘箱温度对污泥干燥特性的影响。结果表明,同一温度条件下,微波预处理时间越长,污泥干化速率越快。最优条件下,全程烘箱污泥达到最大干化速率的含水率为77%。微波干燥污泥具有时间短、干燥速率大的特点,微波和烘箱结合对比全程烘箱干化速率高且能耗低。  相似文献   
866.
张忠磊  陈海  杨琦  李博 《环境工程学报》2014,(11):4631-4635
以2,4-二氯苯氧乙酸(2,4-D)为目标污染物,研究了自制FeS与K2S2O8混合体系去除水体中2,4-D的影响因素,实验结果表明,30℃时,初始pH=7,FeS和K2S2O8初始浓度分别为10 g/L和3.33 g/L,反应24 h,对初始浓度为10mg/L的2,4-D去除率可达77%;FeS/K2S2O8体系对2,4-D的去除速率受反应溶液pH影响显著,在pH为中性或弱碱性条件下速率较大,酸性和过碱性条件去除速率均会减小;对比FeS和K2S2O8单独处理目标污染物的去除率,相同时间和条件下FeS/K2S2O8体系对2,4-D的去除率要高于两者单独处理2,4-D时的去除率之和;利用乙醇和叔丁醇为分针探针,采用分针探针竞争实验鉴定证明该体系中产生了SO-4·和·OH。  相似文献   
867.
张以飞  陆朝阳  姚琪 《化工环保》2014,34(4):371-375
针对专项工业规划环境影响评价中环境风险评价应用尚不成熟的现状,建立了一套专项工业规划环境风险评价方法,并将其应用到江苏省农药行业总体规划环境影响评价分析中。从环境风险角度分析行业发展方向、强度和布局的合理性,提出规划调整和行业风险管理的建议,以降低事故发生的概率和影响,保障行业的健康稳定发展。通过对江苏省农药行业规划明确的产品结构、产业组织结构、创新体系和技术发展目标等进行风险识别、分析和评价,得出生产和使用光气的定点企业、使用液氯的企业、产生硫化氢的企业的环境风险防护距离(以生产装置为起点)应至少设置为1 000,500,250 m。  相似文献   
868.
This study focuses on the influences of a warm high-pressure meteorological system on aerosol pollutants, employing the simulations by the Models-3/CMAQ system and the observations collected during October 10–12, 2004, over the Pearl River Delta (PRD) region. The results show that the spatial distributions of air pollutants are generally circular near Guangzhou and Foshan, which are cities with high emissions rates. The primary pollutant is particulate matter (PM) over the PRD. MM5 shows reasonable performance for major meteorological variables (i.e., temperature, relative humidity, wind direction) with normalized mean biases (NMB) of 4.5–38.8% and for their time series. CMAQ can capture one peak of all air pollutant concentrations on October 11, but misses other peaks. The CMAQ model systematically underpredicts the mass concentrations of all air pollutants. Compared with chemical observations, SO2 and O3 are predicted well with a correlation coefficient of 0.70 and 0.65. PM2.5 and NO are significantly underpredicted with an NMB of 43% and 90%, respectively. The process analysis results show that the emission, dry deposition, horizontal transport, and vertical transport are four main processes affecting air pollutants. The contributions of each physical process are different for the various pollutants. The most important process for PM10 is dry deposition, and for NOx it is transport. The contributions of horizontal and vertical transport processes vary during the period, but these two processes mostly contribute to the removal of air pollutants at Guangzhou city, whose emissions are high. For this high-pressure case, the contributions of the various processes show high correlations in cities with the similar geographical attributes. According to the statistical results, cities in the PRD region are divided into four groups with different features. The contributions from local and nonlocal emission sources are discussed in different groups.
Implications: The characteristics of aerosol pollution episodes are intensively studied in this work using the high-resolution modeling system MM5/SMOKE/CMAQ, with special efforts on examining the contributions of different physical and chemical processes to air concentrations for each city over the PRD region by a process analysis method, so as to provide a scientific basis for understanding the formation mechanism of regional aerosol pollution under the high-pressure system over PRD.  相似文献   
869.
Low-density polyethylene (LDPE) plastic is used to keep piled debris from silvicultural activities—activities associated with development and care of forests—dry to enable efficient disposal by burning. The effects of inclusion of LDPE in this manner on smoke emissions are not well known. In a combustion laboratory experiment, 2-kg mixtures of LDPE and manzanita (Arctostaphylos sp.) wood containing 0, 0.25, and 2.5% LDPE by mass were burned. Gaseous and particulate emissions were sampled in real time during the entire flaming, mixed combustion phase—when the flaming and smoldering phases are present at the same time—and during a portion of the smoldering phase. Analysis of variance was used to test significance of modified combustion efficiency (MCE)—the ratio of concentrations of fire-integrated excess CO2 to CO2 plus CO—and LDPE content on measured individual compounds. MCE ranged between 0.983 and 0.993, indicating that combustion was primarily flaming; MCE was seldom significant as a covariate. Of the 195 compounds identified in the smoke emissions, only the emission factor (EF) of 3M-octane showed an increase with increasing LDPE content. Inclusion of LDPE had an effect on EFs of pyrene and fluoranthene, but no statistical evidence of a linear trend was found. Particulate emission factors showed a marginally significant linear relationship with MCE (0.05 < P-value < 0.10). Based on the results of the current and previous studies and literature reviews, the inclusion of small mass proportions of LDPE in piled silvicultural debris does not appear to change the emissions produced when low-moisture-content wood is burned. In general, combustion of wet piles results in lower MCEs and consequently higher levels of emissions.
Implications:Current air quality regulations permit the use of burning to dispose of silvicultural piles; however, inclusion of low-density polyethyelene (LDPE) plastic in silvicultural piles can result in a designation of the pile as waste. Waste burning is not permitted in many areas, and there is also concern that inclusion of LDPE leads to toxic air emissions.  相似文献   
870.
以合成废水为研究对象,以丙酸钠作为单一碳源,分别设置温度为5、15、25、35℃的4组序批式反应器(R1、R2、R3、R4),考察了温度对单级好氧工艺除磷的影响。结果表明,稳定运行阶段,R1、R2、R3、R4出水磷浓度分别为4.05、2.17、1.34和0.11 mg/L,去除效率分别为61.5%、79.3%、87.2%和99.0%,吸磷速率分别为0.501、1.432、2.538和3.700mg P/(g VSS·h),即提高温度有利于磷的去除。此外,各反应器中多聚磷酸盐激酶(PPK)和外切磷酸盐酶(PPX)活性分别为0.093、0.213、0.376、0.549 U和0.010、0.019、0.029、0.025 U,导致吸磷速率和释磷速率随之增大,可知温度影响聚磷菌PPK和PPX的活性,从而影响除磷效果。静置阶段,聚磷菌体内储能物质糖原质和聚羟基脂肪酸酯基本保持不变,但各反应器均出现了释磷现象,聚磷作为主要供能物质,单位释磷量分别为1.95、6.42、9.90和9.56 mg P/(g TSS),提高温度可促进静置段聚磷分解提供能量,从而驱动好氧吸磷达到更好的除磷效果。  相似文献   
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