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91.
The layered laurylsulfonate intercalated green rust (lauryl-S GR) was synthesized to evaluate the influence of synthesis parameters and aqueous conditions on the adsorption of CeIV. The maximum adsorption capacity of 305.58 mg/g by lauryl-S GR was predictably obtained. The pseudo-first-order kinetic model was appropriate in fitting the whole uptake process in a weak acid environment. Three isotherm models including Langmuir, Freundlich, and Tempkin were all reliable in depicting the isotherm adsorption process. The maximum monolayer adsorption capacity of lauryl-S GR towards CeIV was 315.46 mg/g. Ce species including CeO and Ce2O3 besides CeO2 were matched in the XPS distribution, directly indicating the reduction reaction brought by FeII in the GR occurred to hydrated CeIV ions during the adsorption. Nano-sized Ce particles attached to the lauryl-S GRs after the adsorption experiments were observed in the morphological characterization. Flocculated materials were formed on the surface of the lauryl-S GR at a pH of 7, which further reduced the active sites and disrupted the continuous uptake of CeIV to the lauryl-S GR. This study expands the application of GRs and supplies an ideal iron-based material for the construction of the affiliated recovery pathway to the traditional separation of Ce. 相似文献
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93.
Ecological-breakingzoneoriginatesanditsecosystemsreconstructioninaridarea¥HuangPeiyou;LuZili(BiologyDepartmentofXinjiangUnive... 相似文献
94.
Junyu Zheng Bowen Shi Xin Yuan Chuanzeng Zheng Yufan Yu Zhijiong Huang 《环境科学学报(英文版)》2023,123(1):430-445
Because of the recent growth in ground-level ozone and increased emission of volatile organic compounds (VOCs), VOC emission control has become a major concern in China. In response, emission caps to control VOC have been stipulated in recent policies, but few of them were constrained by the co-control target of PM2.5 and ozone, and discussed the factor that influence the emission cap formulation. Herein, we proposed a framework for quantification of VOC emission caps constrained by targets for PM2.5 and ozone via a new response surface modeling (RSM) technique, achieving 50% computational cost savings of the quantification. In the Pearl River Delta (PRD) region, the VOC emission caps constrained by air quality targets varied greatly with the NOx emission reduction level. If control measures in the surrounding areas of the PRD region were not considered, there could be two feasible strategies for VOC emission caps to meet air quality targets (160 µg/m3 for the maximum 8-hr-average 90th-percentile (MDA8-90%) ozone and 25 µg/m3 for the annual average of PM2.5): a moderate VOC emission cap with <20% NOx emission reductions or a notable VOC emission cap with >60% NOx emission reductions. If the ozone concentration target were reduced to 155 µg/m3, deep NOx emission reductions is the only feasible ozone control measure in PRD. Optimization of seasonal VOC emission caps based on the Monte Carlo simulation could allow us to gain higher ozone benefits or greater VOC emission reductions. If VOC emissions were further reduced in autumn, MDA8-90% ozone could be lowered by 0.3-1.5 µg/m3, equaling the ozone benefits of 10% VOC emission reduction measures. The method for VOC emission cap quantification and optimization proposed in this study could provide scientific guidance for coordinated control of regional PM2.5 and O3 pollution in China. 相似文献
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96.
采用活性炭管吸附大气中基苯乙烯,以二硫化碳洗脱,以溴水加成后,用气相色谱电子捕获器测定苯乙烯的二溴加成物。本方法适合于检测多种污染物共存的大气中痕量苯乙烯。其线性范围为0.015-0.74ng,最低检出浓度为0.001mg/m^3;重现性实验的变异系数为2.3%:当活性炭管吸附苯乙烯在2.9μg时,回收率为90%,吸附苯乙烯0.29μg时,回收率为72%。 相似文献
97.
结合西部干旱半干旱地区的地域特点、水文特征和水资源开发利用状况,分析论述了该地区水资源短缺与水污染加剧这一矛盾所决定的西部地区水资源开发利用的特点及其对地区经济发展的制约,认为水资源的再生利用是解决西部地区水资源危机的一条有效途径。以城市污水为再生水源,根据该区域特点,提出了西部干旱半干旱地区水资源再生利用的研究内容。 相似文献
98.
陶瓷微滤膜过滤黑液的清洗与再生 总被引:4,自引:0,他引:4
对无机陶瓷微滤膜过滤草桨黑液的膜清洗及再生的方法进行了研究。考察了物理和化学方法的再生效果、单种清洗剂的清洗效果、复合方法的清洗效果和效果的可重复性。结果表明物理冲洗、高温灼烧、单一的化学清洗剂清洗均可以提高陶瓷膜的再生通量;但是复合方法对陶瓷微滤膜的再生效果较好,其中按氢氧化钠溶液清洗、硝酸溶液清洗、次氯酸钠溶液清洗的实验步骤,膜的再生渗透通量高.且重复性强,可望在工业生产的在线清洗中应用。 相似文献
99.
原生垃圾密度很小,为提高填埋垃圾堆体密实度、延长填埋场使用寿命,对填埋垃圾进行压实处理很重要。本文通过现场工程试验对影咱填埋垃圾堆体平面压实效果的主要因素进行了系统研究。实验结果表明:为取得最佳的垃圾堆体平面压实效果,最佳垃圾摊铺厚度在0.5m—0.7m之间,最佳机械行程次数为3次,增加碾压次数有利于提高垃圾堆体密实度,垃圾最佳含水率在30%——50%之间。 相似文献
100.