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531.
水相催化芳香氯化物脱氯研究 总被引:4,自引:0,他引:4
通过把起相转移作用的聚乙二醇(PEG)链,键合到硅胶上,再将聚乙烯吡咯烷酮(PVP)络合双金属Pd-Cu后负载其上,制成一种新型双负载双金属催化剂PVP-PdCl2/SiO2-PEG600,以甲酸钠为氢转移试剂,在水相催水芳香氯化物脱氯,当反应温度80℃左右,n(Pd):n(Cu)=2:1,反应介质pH值11.7左右时,具有较高的催化脱卤活性,催化剂不但易于制备,便于分离,且具有良好的重复使用性能,经重复使用六次,转化率仍在70%以上。 相似文献
532.
黄河中游水保措施对入黄干支流泥沙特性的影响:Ⅰ. 泥沙粒径变化 总被引:5,自引:1,他引:5
过去关于水土保持措施影响的研究多侧重于减水减沙的影响,对泥沙组成影响的研究则相对较少。本文以大量的实测资料为依据,以河口至龙门间区域自然与水土保持条件为背景,将水保措施类型、河道水流泥沙条件与流域地貌条件结合考虑,借助统计分析方法对采用水保措施前后该区域(尤其是与黄河中游水土流失密切相关的黄土高原与沙砾丘陵区域)的泥沙粒径分布变化进行了探讨。分析表明,泥沙粒径分布变化极其复杂,对应于不同地貌类型条件的泥沙组成遵循不同的分布规律。黄土丘陵区河流中的悬移质泥沙级配服从正态分布规律,而沙砾丘陵区河流中的泥沙级配则服从皮Ⅲ型分布规律。当分布函数的类型确定后,泥沙粒径分布由该分布函数的几个参数共同决定,这些参数分别反映了泥沙从流域表层搬运到对应级别河流的过程中地貌形态及水土保持措施的影响。文中由多学科综合研究得到的结论,对黄河中游水土保持效益研究具有重要意义。 相似文献
533.
Kangwei Li Chao Lin Chunmei Geng Stephen White Linghong Chen Zhier Bao Xin Zhang Yanyun Zhao Lixia Han Wen Yang Merched Azzi 《环境科学学报(英文版)》2020,32(9):14-22
A new state-of-the-art indoor smog chamber facility (CAPS-ZJU) has been constructed and characterized at Zhejiang University, which is designed for chemical mechanism evaluation under well-controlled conditions. A series of characterization experiments were performed to validate the well-established experimental protocols, including temperature variation pattern, light spectrum and equivalent intensity (JNO2), injection and mixing performance, as well as gases and particle wall loss. In addition, based on some characterization experiments, the auxiliary wall mechanism has been setup and examined. Fifty chamber experiments were performed across a broad range of experimental scenarios, and we demonstrated the ability to utilize these chamber data for evaluating SAPRC chemical mechanism. It was found that the SAPRC-11 can well predict the O3 formation and NO oxidation for almost all propene runs, with 6 hr Δ(O3 – NO) model error of –3% ± 7%, while the final O3 was underestimated by ~20% for isoprene experiments. As for toluene and p-xylene experiments, it was confirmed that SAPRC-11 has significant improvement on aromatic chemistry than earlier version of SAPRC-07, although the aromatic decay rate was still underestimated to some extent. The model sensitivity test has been carried out, and the most sensitive parameters identified are the initial concentrations of reactants and the light intensity as well as HONO offgasing rate and O3 wall loss rate. All of which demonstrated that CAPS-ZJU smog chamber could derive high quality experimental data, and could provide insights on chamber studies and chemical mechanism development. 相似文献
534.
为了探究寒旱区湖泊悬浮物和沉积物中颗粒有机碳氮稳定同位素来源与环境相关性,于2019年1月对南海湖冰封期悬浮物和表层沉积物有机δ13C、δ15N及C/N值进行了测定.结果表明:南海湖冰封期悬浮有机质δ13C的变化范围为-31.94‰~-27.87‰,δ15N变化范围为15.16‰~18.66‰,C/N变化范围为3.90~5.13.沉积物δ13C值变化范围为-25.39‰~-18.83‰,δ15N值变化范围为7.04‰~13.66‰,C/N值变化范围为7.66~12.23.悬浮有机质δ13C和δ15N最高值分别出现在进水口区和湖心岛区,沉积物则都为湖心岛区表层沉积物.端元混合模型分析表明,冰封期悬浮有机质主要由内源水生藻类主导,水质保护区藻类贡献率达到82.33%,与该区域浮游植物丰度最高相符.表层沉积物有机质的主要来源为内源水生植物,在水质保护区贡献率高达89.7%.相关性分析表明,在冰封期内悬浮有机质与表层沉积物δ13C、δ15N并没有明显的相关性,在低温情况下悬浮物δ15N与温度(P<0.025)、硝态氮(P<0.019)呈显著负相关,与亚硝态氮呈显著正相关(P<0.034).原因主要与外源贡献率和生物作用的同位素效应有关.悬浮物δ13C和COD呈极显著正相关(P<0.008),与盐度呈显著正相关(P<0.046),COD和悬浮物δ13C很可能具有同源性,在湖泊冰封期具有一定的环境指示意义. 相似文献
535.
为探究厌氧氨氧化颗粒污泥胞外金属元素特性,将厌氧氨氧化颗粒污泥根据粒径筛分为0.5~1.4mm、1.4~2.8mm、>2.8mm 3组,提取不同粒径厌氧氨氧化颗粒污泥胞外聚合物(EPS),研究EPS金属元素特性.结果表明,蛋白质(PN)是厌氧氨氧化颗粒污泥EPS的主要成分,占EPS含量的84.2%以上.随着粒径的增大,EPS中Na、K、Ca、Mg元素含量均增多,且与EPS中蛋白质含量变化一致.EPS中K、Ca、Mg元素的离子形式占比分别为68.6%、56.2%、94.7%.EPS经过阳离子交换树脂(CER)处理后,0.5~1.4mm、1.4~2.8mm、>2.8mm组EPS Zeta电位分别减小了4.7,7.2,9.1mV,EPS中的金属离子可通过压缩双电层作用促进颗粒污泥的聚集,金属离子对大粒径颗粒污泥EPS Zeta电位的影响幅度更大. 相似文献
536.
黄钾铁矾能够通过吸附和共沉淀作用固定酸性矿山废水(AMD)中的重(类)金属(如砷),降低其迁移性和生物可利用性.草酸盐广泛存在于天然水环境中,其具有的羧酸官能团能改变铁矿物的稳定性,进而影响吸持的重(类)金属的再分配行为.利用水热法合成含As(V)黄钾铁矾,探究其在不同草酸盐浓度与pH条件下的溶解、重结晶和共沉淀As(V)的行为.研究结果表明,草酸盐与含As(V)黄钾铁矾表面Fe(III)活性位点配位形成的可溶性强络合物是促进矿物溶解的第一步和关键;在pH 2.5时,含As(V)黄钾铁矾的溶解速率随草酸盐浓度增加而增加,伴随大量As(V)释放到溶液,反应过程中只有少量As(V)重新吸附到固相上,这是由于草酸盐与As(V)竞争矿物表面的同一活性位点;在pH 6.5条件下,草酸盐促进含As(V)黄钾铁矾的重结晶,经X射线衍射分析表明针铁矿和纤铁矿为主要产物,能有效地吸附释放的As(V).研究结果有助于揭示在AMD环境下黄钾铁矾沉积物与含羧酸官能团有机酸共存时对As(V)的释放和固定机理,对AMD环境中As(V)污染控制有重要意义. 相似文献
537.
水文地质参数本身存在不确定性,为分析水文地质参数不确定性对地下水DNAPLs污染多相流数值模拟模型输出结果的影响,本文针对假想算例展开研究,首先建立了研究区地下水DNAPLs污染多相流数值模拟模型;然后,运用灵敏度分析法筛选对模型输出结果影响较大的参数作为随机变量;为减少反复调用多相流模拟模型产生的计算负荷,运用克里格方法建立多相流模拟模型的替代模型,利用替代模型完成蒙特卡洛随机模拟;最后,对随机模拟的结果进行统计分析并完成地下水污染风险评价.结果表明,利用污染物浓度分布函数可以估算单井遭受污染的风险;利用地下水污染风险图可以对全区地下水遭受不同程度污染的风险大小进行分区,为地下水污染防治提供更加科学、丰富的参考依据. 相似文献
538.
Ying Han Wenbin Liu Haifeng Li Rongrong Lei Guorui Liu Lirong Gao Guijin Su 《环境科学学报(英文版)》2018,30(10):208-212
The concentrations and distribution of polychlorinated naphthalenes(PCNs) in the whole blood of eight typical terrestrial meat animals(chicken, duck, rabbit, pig, cattle, sheep,horse and donkey) consumed daily in our life were investigated. The total concentrations(on a liquid volume basis) of PCNs were in a range from 305 to 987 pg/L. Donkey blood contained the highest PCN concentrations. Mono-CNs were the dominant homolog group,accounting for 38%–71% PCNs. Apart from the mono-CNs and tri-CNs homolog groups, two hepta-CNs(mean: 9.5%) contributed most, followed by tetra-CNs(mean: 6.5%). The congeners CN1, 5/7, 24/14, 27/30, 52/60, 66/67, and 73 were the most abundant congeners or congener groups. The highest toxicity equivalencies(TEQs) were observed in cattle blood(117.4 fg TEQ/L) then chicken blood(117.1 fg TEQ/L). CN73 contributed 65% to total TEQs,followed by CN70(20%) and CN66/67(14%). The dietary intakes of PCNs were also estimated.Chicken meat, which forms the second largest component of meat product consumption in China, contributed most to the total TEQs(61%), followed by beef(27%) and pork(5.9%). The consumption of chicken might pose the highest risk from exposure to PCNs than other types of meat to populations who prefer to eat chicken meat. 相似文献
539.
Ting Han Lan Yao Li Liu Aiyong Xian Hui Chen Wenbo Dong Jianmin Chen 《环境科学学报(英文版)》2018,30(9):127-135
As the largest iron and steel producer in China, a part of Baosteel moved out of Shanghai deserves close attention due to its environmental impact. To understand the effect of Baosteel emission control on air quality in Shanghai, daily PM_(10), PM_(2.5), SO_2, NO_2 and CO were measured from 2010 to 2016. Concentrations of pollutants in Baoshan District presented a decreased trend during 2010–2016, with a reduction rate of 28.6% for PM_(10), 67.3% for SO_2, 8.6% for NO_2 and 42.0% for CO. However, fine particle pollution in Baoshan District during 2012–2016 seems to become more prominent, with PM_(2.5) concentration of 47 ± 28,45 ± 33, 38 ± 24, 54 ± 41 and 51 ± 34 μg/m3, respectively, indicating a slight increase of 8.5%in PM_(2.5). Concentrations of PM_(10) and CO decreased by 12.5% and 33.8% in the second half year in 2016(compared with that in 2015) probably due to closure of blast furnace of Baosteel. Baosteel was identified as the largest pollution source in Baoshan District.Emission from Baosteel accounted for 58.0% of SO_2, 43.6% of NO_2 and 79.3% of dust in total emission from Baoshan District during 2010–2015. Meanwhile, pollutant emission and coal consumption from Baosteel decreased by 52.0% for SO_2, 40.1% for NO_2, 15.7% for dust and22% for coal consumption. Energy consumption in Baoshan District reduced by 31% from2011 to 2015. Air quality improvement in Shanghai was attributed to local emission reduction, together with regional air quality improvement. 相似文献
540.