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51.
烟囱颗粒污染物连续监测技术 总被引:3,自引:0,他引:3
介绍了一种烟囱颗粒物排放的实时监测装置。该装置基于光散射理论 ,使用一个半导体激光器件作为光源 ,用 4个光电元件分别测定入射光强、从测量区出射的光强及前向两个立体角的散射光能 ,使用一台微机对接收信号进行处理 ,能够实时地给出烟囱排放源的排放浓度及粒径分布。 相似文献
52.
Characteristics of air particulate matter and their sources inurban and rural area of Beijing, China
IntroductionThereisagrowingawarenesstotheimportanceofairpollutioninmajorcites.Anumberofstudieshaveshownthattheconcentrationsofcertaintraceelementsintheurbanatmospherehavebeenelevatedby pollution ,andtherefore ,thehighestconcentrationsofthesechemicalcont… 相似文献
53.
54.
水中天然有机物的臭氧强化光催化降解研究 总被引:5,自引:0,他引:5
研究了饮用水源中大分子天然有机物(NOM)的臭氧强化光催化降解,考察了臭氧投加量、反应时间和HCO3^-浓度对NOM降解速率的影响;分析了臭氧强化光催化过程中NOM相对分子质量的变化,并比较不同相对分子质量大小NOM的降解速率.研究结果表明,臭氧强化光催化比单独臭氧氧化、光催化能更有效地降解NOM,同时增加臭氧投加量和反应时间才能有效提高臭氧强化光催化对TOC的去除率,而单独增加臭氧投加量可显著提高生物可降解性;HCO3^-显著降低光催化的降解效果,臭氧强化光催化能有效地减弱HCO3^-的不利影响;臭氧强化光催化过程中大分子NOM分解为小分子,SUVA值迅速下降,且相对分子质量越大矿化速度越快. 相似文献
55.
Sorption of dissolved organic matter and its effects on the atrazine sorption on soils 总被引:11,自引:0,他引:11
IntroductionApplication of organic amendments, such as sewagesludge to agricultural soils, has been considered as aneffective way to improve the soil physico chemical propertiesand organic matter compositions. Dissolved organic matter(D… 相似文献
56.
西湖底泥不同供氧条件下有机质降解及CO2与CH4释放速率的模拟研究 总被引:15,自引:0,他引:15
采用密闭培养实验装置于室温(25℃左右)及pH为75条件下,对西湖底泥中有机质完全降解及转化为CO2和CH4的速率进行了模拟研究.结果表明,在西湖湖水现有供氧水平(50—86mg(O2)/L)条件下,底泥中有机质完全降解的速率最为缓慢,培养期间(42天)平均只有072mg(C)/(kg·d).当湖水供氧水平进一步上升(86→120→160mg(O2)/L),CO2释放速率增加,最大值可达到87mg(C)/(kg·周);当湖水供氧水平下降(86→0mg(O2)/L),CH4释放速率加快,最大值可达到46mg(C)/(kg·周). 相似文献
57.
序列间歇式好氧活性污泥法处理生物制药废水研究 总被引:7,自引:0,他引:7
本研究采用好氧SBR法处理生物制药废水。试验结果表明,废水中不需另加氮磷营养物质,当进水CODCr为911~3280mg/L时,在曝气16h条件下,出水CODCr在350mg/L以下,BOD5在80mg/L以下,SS在150mg/L以下,皆达到生物制药工业废水二级排放标准。本文还对好氧SBR法的有机物降解动力学过程进行了研究。 相似文献
58.
《环境科学学报(英文版)》2023,35(4):794-805
In this study, the effects of a diesel oxidation catalyst (DOC) coupled with a catalyzed diesel particulate filter (CDPF) with different catalyst loadings on the power, fuel consumption, gaseous and particulate emissions from a non-road diesel engine were investigated. Results showed that the after-treatment had a negligible effect on the power and fuel consumption. The reduction effect of the DOC on the CO and hydrocarbon (HC) increased with the engine load. Further reductions occurred coupling with the CDPF. Increasing the catalyst loading resulted in a more significant reduction in the HC emissions than CO emissions. The DOC could increase the NO2 proportion to 37.9%, and more NO2 was produced when coupled with the CDPF below 250°C; above 250°C, more NO2 was consumed. The after-treatment could reduce more than 99% of the particle number (PN) and 98% of the particle mass (PM). Further reductions in the PN and PM occurred with a higher CDPF catalyst loading. The DOC had a better reduction effect on the nucleation particles than the accumulation ones, but the trend reversed with the CDPF. The DOC shifted the particle size distribution (PSD) to larger particles with an accumulation particle proportion increasing from 13% to 20%, and the geometric mean diameter (GMD) increased from 18.2 to 26.0 nm. The trend reversed with the CDPF and the accumulation particle proportion declined to less than 10%. A lower catalyst loading on the CDPF led to a higher proportion of nucleation particles and a smaller GMD. 相似文献
59.
《环境科学学报(英文版)》2023,35(4):387-395
This study examined the effectiveness for degradation of hydrophobic (HPO), transphilic (TPI) and hydrophilic (HPI) fractions of natural organic matter (NOM) during UV/H2O2, UV/TiO2 and UV/K2S2O8 (UV/PS) advanced oxidation processes (AOPs). The changing characteristics of NOM were evaluated by dissolved organic carbon (DOC), the specific UV absorbance (SUVA), trihalomethanes formation potential (THMFP), organic halogen adsorbable on activated carbon formation potential (AOXFP) and parallel factor analysis of excitation–emission matrices (PARAFAC-EEMs). In the three UV-based AOPs, HPI fraction with low molecular weight and aromaticity was more likely to degradate than HPO and TPI, and the removal efficiency of SUVA for HPO was much higher than TPI and HPI fraction. In terms of the specific THMFP of HPO, TPI and HPI, a reduction was achieved in the UV/H2O2 process, and the higest removal rate even reached to 83%. UV/TiO2 and UV/PS processes can only decrease the specific THMFP of HPI. The specific AOXFP of HPO, TPI and HPI fractions were all able to be degraded by the three UV-based AOPs, and HPO content is more susceptible to decompose than TPI and HPI content. UV/H2O2 was found to be the most effective treatment for the removal of THMFP and AOXFP under given conditions. C1 (microbial or marine derived humic-like substances), C2 (terrestrially derived humic-like substances) and C3 (tryptophan-like proteins) fluorescent components of HPO fraction were fairly labile across the UV-based AOPs treatment. C3 of each fraction of NOM was the most resistant to degrade upon the UV-based AOPs. Results from this study may provide the prediction about the consequence of UV-based AOPs for the degradation of different fractions of NOM with varied characteristics. 相似文献
60.
土壤有机碳是控制土壤中多环芳烃的吸附解吸及其生物有效性的主要因素之一,土壤中硬碳类吸附剂是土壤有机碳中的重要部分,土壤中软碳类物质和硬碳类物质的相互作用对研究土壤中多环芳烃的解吸行为和生物有效性有重要影响。研究将溶解有机质胡敏酸,通过条件的变化使其转变为非溶解态,研究其对土壤碳质吸附剂(胡敏素和黑碳)吸附多环芳烃的解吸行为的影响。研究结果表明:非溶解态胡敏酸会显著降低土壤硬碳类物质中多环芳烃的解吸能力,解吸滞后性增加,作者认为非溶解态胡敏酸的添加会覆盖土壤硬碳类物质的表面吸附位点和填充吸附多环芳烃的孔隙,造成硬碳类有机质中的多环芳烃解吸能力下降,滞后性增强。研究还发现硬碳类有机质的比表面积和孔隙度和解吸能力的变化强度呈正相关关系。 相似文献