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311.
The utility of nickel/iron in the remediation of atraz.ine-contaminated water was investigated. The experimental results showed that nickel/iron had effective catalytic activity in dechlorinating atraz.ine under acidic conditions. The dechlonnation reaction approximately followed the first-order kinetics under the experimental conditions( nickel/iron: 1.0 g/250 ml: Ca~r~ = 20.0 mg/L), the reaction rate increased with decreasing pH value of the reaction solution and increasing the proportion of Ni: Fe within 2.95 %. For condition with 2.95% nickel/iron, the reaction rate constants were 0.07518( R = 0.9927), 0.06212( R = 0.9846) and 0.00131 min^-1 ( R = 0.9.565) at pH = 2.0, 3.0 and 4.0, respectively. HPLC analysis was used to monitor the decline of atraz.ine concentration. 相似文献
312.
Yuanhang Zhang Yuesi Wang Xin Jin Zirui Liu Gehui Wang Guiqian Tang Keding Lu Bo Hu Shanshan Wang Guohui Li Xinqin An Chao Wang Qihou Hu Lingyan He Fenfen Zhang 《环境科学学报(英文版)》2023,123(1):350-366
Atmospheric oxidizing capacity (AOC) is an essential driving force of troposphere chemistry and self-cleaning, but the definition of AOC and its quantitative representation remain uncertain. Driven by national demand for air pollution control in recent years, Chinese scholars have carried out studies on theories of atmospheric chemistry and have made considerable progress in AOC research. This paper will give a brief review of these developments. First, AOC indexes were established that represent apparent atmospheric oxidizing ability (AOIe) and potential atmospheric oxidizing ability (AOIp) based on aspects of macrothermodynamics and microdynamics, respectively. A closed study refined the quantitative contributions of heterogeneous chemistry to AOC in Beijing, and these AOC methods were further applied in Beijing-Tianjin-Hebei and key areas across the country. In addition, the detection of ground or vertical profiles for atmospheric OH·, HO2·, NO3· radicals and reservoir molecules can now be obtained with domestic instruments in diverse environments. Moreover, laboratory smoke chamber simulations revealed heterogeneous processes involving reactions of O3 and NO2, which are typical oxidants in the surface/interface atmosphere, and the evolutionary and budgetary implications of atmospheric oxidants reacting under multispecies, multiphase and multi-interface conditions were obtained. Finally, based on the GRAPES-CUACE adjoint model improved by Chinese scholars, simulations of key substances affecting atmospheric oxidation and secondary organic and inorganic aerosol formation have been optimized. Normalized numerical simulations of AOIe and AOIp were performed, and regional coordination of AOC was adjusted. An optimized plan for controlling O3 and PM2.5 was analyzed by scenario simulation. 相似文献
313.
Yuanhang Zhang Yanhui Liu Jiayin Li Yufang M Ming Zhou Zhaofeng Tan Limin Zeng Keding Lu 《环境科学学报(英文版)》2023,123(1):522-534
The atmospheric chemical mechanism is an essential component of airshed models used for investigating the chemical behaviors and impacts of species. Since the first tropospheric chemical mechanism was proposed in the 1960s, various mechanisms including Master Chemical Mechanism (MCM), Carbon Bond Mechanism (CBM), Statewide Air Pollution Research Center (SAPRC) and Regional Atmospheric Chemistry Mechanism (RACM) have been developed for different research purposes. This work summarizes the development and applications of these mechanisms, introduces their compositions and lumping methods, and compares the ways the mechanisms treat radicals with box model simulations. CBM can reproduce urban pollution events with relatively low cost compared to SAPRC and RACM, whereas the chemical behaviors of radicals and the photochemical production of ozone are described in detail in RACM. The photolysis rates of some oxygenated compounds are low in SAPRC07, which may result in underestimation of radical levels. As an explicit chemical mechanism, MCM describes the chemical processes of primary pollutants and their oxidation products in detail. MCM can be used to investigate certain chemical processes; however, due to its large size, it is rarely used in regional model simulations. A box model case study showed that the chemical behavior of OH and HO2 radicals and the production of ozone were well described by all mechanisms. CBM and SAPRC underestimated the radical levels for different chemical treatments, leading to low ozone production values in both cases. MCM and RACM are widely used in box model studies, while CBM and SAPRC are often selected in regional simulations. 相似文献
314.
壳聚糖复合粘土矿凝聚铜绿微囊藻的研究 总被引:11,自引:0,他引:11
对壳聚糖与天然粘土矿物海泡石复配凝聚水体中铜绿微囊藻进行了研究 ,结果表明 :在壳聚糖用量为0 5 6mg L、海泡石用量为 32mg L的情况下 ,藻个数由 1 94 4× 10 6 个 mL降为 1 38× 10 3个 mL ,去除率达到 99 93% ;浊度由 6 5NTU降到 0 1NTU ,去除率达 99 6 % ;叶绿素a去除率达 10 0 % (用常规方法无法检测到 )。实验还确定了最佳pH值范围是 4~ 8;并且探讨了壳聚糖的絮凝机理。 相似文献
315.
根据燃油锅炉烟气有害气体成分的特点 ,采用混合液体吸收与气液冲击相结合的方法设计了 1套除尘与脱硫闭路循环净化系统来处理燃油锅炉烟气 ,实践表明 ,该方法能够有效地解决燃油锅炉烟气污染问题 ,使其达标排放。 相似文献
316.
以湿法磷酸副产的磷石膏和工业品氯化钾为原料 ,采用两步法 ,常温常压下 ,在 5 0 0 0t a工业化装置中 ,生产符合国标ZBG2 10 0 6 89农用一级品硫酸钾。整个过程流程较简单 ,能耗低 ,投资省 ,基本无“三废”排放。钾的收率达70 %。工艺条件稳定 ,产品质量稳定。中试结果与小试有较好的重复性 ,放大效果好。 相似文献
317.
319.
基于水-岩δD-δ18O同位素交换体系理论模型的建立和计算,对金堆城超大型斑岩钼矿四个不同成矿期中成矿流体的演化和来源进行了研究,发现在成矿前期和早期,成矿流体为岩浆水与围岩在较低水/岩比值(0.1W/R>0.001)和中、高温(t=250~500℃)条件下反应后的残余流体,而主成矿期和成矿晚期的成矿流作为大气降水在相对较高水/岩比值(0.5>W/R0.1)和中、低温(t=150~310℃)条件下与围岩反应后的残留流体。大气降水在金堆城钼矿成矿过程中起了重要作用。在主成矿期水/岩比值达到最高。 相似文献
320.