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1.
With the increase of industrialization and urbanization, humankind faces massive oil-based pollution due to tanker accidents, human error, and natural disasters. For this, hydrophobic sorbents are fabricated and their applications for the removal of oil from polluted water sources are investigated. These hydrophobic sorbents are prepared by the condensation reaction of poly(dimethylsiloxane) and tris[3-(trimethoxysilyl)propyl]isocyanurate cross-linker via bulk polymerization. The obtained sorbents exhibit high oil sorption capacity, fast absorption–desorption kinetics, and great reusability. Moreover, they can selectively absorb oil from the water surface, thus making them practical for water clean-up applications.  相似文献   
2.
The sorption of toxic metals by fungal mycelia grown in clay‐containing medium is reported in this work. Biomass of melanin‐producing microfungi of the genus Cladosporium (C cladosporioides, C resinae and C herbarum) and Aureobasidium pullulans, clay minerals and fungal mycelia grown in clay‐containing medium were compared for their equilibrium Cu and Cd uptake from pH‐buffered solutions using experimental sorption isotherms. Bentonite (Cherkassy) in the natural form was shown to be the best Cu sorbent compared with the other clays and clay minerals tested. Cu sorption isotherms fitted the Langmuir sorption model for all cases. Comparison of Cu and Cd uptake for biomass and bentonite showed a lower biomass uptake capacity but a considerably higher affinity of the biosorbent for the solute. The presence of kaolinite and palygorskite in the medium generally reduced both Cu and Cd sorption capacity and the metal‐binding ability of the fungal–clay mixtures. In contrast, addition of bentonite into the medium did not appreciably alter the Cd sorption ability but increased the sorption of Cu by A pullulans and C cladosporioides grown in this medium. A common feature for all fungi grown in the presence of bentonite was an increase in the Cu sorption capacity (Qmax) of the biomineral sorbents and a reduction in their affinity (Langmuir parameter b) compared with control biomass. A difference between predicted and experimental data obtained for biomass grown on bentonite medium was also observed. The connection between the sorption capacity of biomass grown in clay‐containing medium, mycelial morphology and the structure of fungal pellets is discussed and a mechanism for the changed sorption capacity of the combined biomineral sorbents is proposed which involves blocking or modification of binding sites on biotic and abiotic components of the ‘biomineral’ association. © 2002 Society of Chemical Industry  相似文献   
3.
BACKGROUND: Carboxylic acids are among the most important substances that can be manufactured from biomass. However, the recovery of carboxylic acids from fermentation broths presents a challenging separation problem. To avoid the production of waste salts and net consumption of chemicals in the calcium carboxylate salt process, the use of reversible chemical complexation with polymeric sorbents and extractants is attractive for carboxylic acid recovery. Pyruvic acid is widely used in the manufacture of medicines, pesticides and foodstuffs and can be produced by fermentation. Since the acidity of pyruvic acid (pKa = 2.49) is stronger than that of normal carboxylic acids, and as few reports on the recovery of pyruvic acid are available, the sorption of pyruvic acid from aqueous solution on two types of weakly basic polymeric sorbent, tertiary amine D301R and primary amine D392, was investigated over a wide pH range and at various salt (MgSO4) concentrations. RESULTS: Overloading adsorption of pyruvic acid on both weakly basic polymeric sorbents occurred, with the overloading of D392 being greater than that of D301R. The adsorption of pyruvic acid on both sorbents was greatly affected by the solution pH and the salt concentration in the aqueous phase. An overloading model was able to predict the experimental uptake data very well. CONCLUSION: Solution pH is one of the most important operating conditions, and both polymeric sorbents D392 and D301R can be used to recover pyruvic acid from dilute aqueous solution with high efficiency at a solution pH around 2. The uptake by D392 is greater than that by D301R owing to steric hindrance of the tertiary amine. Copyright © 2008 Society of Chemical Industry  相似文献   
4.
概述了美国几种较成熟的热煤气脱硫吸附剂的配方、制备技术及吸附剂在若干试验条件下强度、活性、寿命等宏观特性的测试结果。  相似文献   
5.
重金属废水处理最新进展   总被引:25,自引:2,他引:25  
详细论述了近年来一些处理重金属废水的新方法,并对各种方法进行了综合评述。这些新方法主要有:廉价吸附剂吸附、胶束增强超滤、络合—超滤耦合过程和电化学法。此外,将络合—超滤和电化学法集成起来处理重金属废水,可实现废水回用和重金属回收,因而具有广阔的应用前景。  相似文献   
6.
利用粉煤灰为原料,制备2大类可用于烟气中CO2捕集的吸附剂。一类是沸石分子筛类吸附剂,利用水热合成法得到A型、X型等沸石分子筛吸附剂。一类是利用粉煤灰制备出适合的多孔载体,使用浸渍法得到固态胺类吸附剂。沸石分子筛对于CO2主要是物理吸附,吸附容量169~223 mg/g,固态胺吸附剂是利用胺基与CO2结合介于物理与化学吸附之间,吸附容量108~189 mg/g。实现将粉煤灰以废治废,即可以缓解粉煤灰对环境的影响,也能够实现碳减排,对社会和经济协调发展有利。  相似文献   
7.
Five types of ionic liquid-based silica were synthesized as solid-phase extraction (SPE) sorbents for separation and purification of bioactive compounds, that is, rutin and scoparone extracted from Herba Artemisiae Scopariae. The SilprBImCl material with the highest adsorption capacity was selected as the sorbent for SPE packing. Ethyl acetate and water were found to be suitable washing and eluting solvents, respectively. SilprBImCl was then applied to multi-phase extraction, and its superiority as a sorbent over the commercial cartridge was proven with high rutin and scoparone recoveries of 90.5% and 83.9%, respectively. This highlights the potential of ionic liquid-based silica materials applied to SPE and MPE.  相似文献   
8.
使用气固瞬时反应装置在700~1100℃下对不同氧化物(氧化镁、氧化铁、氧化铝、氧化钙)的硒捕集性能进行研究,确定吸附产物性质。基于此选取相应的典型矿物及双组分抗烧结吸附剂改善硒高温吸附能力。结果表明:900℃前氧化钙捕集效果最好,但1100℃时其吸附量迅速降低到167.59μg/g;γ-氧化铝在高温下捕集效果较好,1100℃时吸附量可达415.04μg/g,这与其优异的孔隙结构有关。钙基矿物方解石因其具有一定的抗烧结能力和发达的孔隙结构,表现出更好的高温捕集能力,1100℃时吸附量可提高到1064.97μg/g。双组分吸附剂高温捕集能力展现出不同程度的提高。钙-铝基吸附剂高温捕集性能提高相对较小;而钙-硅基吸附剂在高温下效果远高于单组分吸附剂,与氧化钙相比,1100℃时可提高1787.21μg/g。  相似文献   
9.
对钙基吸收剂煅烧/碳酸化循环吸收CO2的最新研究进展进行了阐述,包括反应条件对钙基吸收剂吸收CO2的影响,如压力、颗粒粒度、反应时间及SO2存在等因素,和提高钙基吸收剂吸收CO2的各种方法,如采用添加剂、进行水合反应等.提出了一种提高钙基吸收剂吸收CO2能力的可能方法:对钙基吸收剂进行闪蒸改性,以优化吸收剂的孔隙结构.  相似文献   
10.
针对在高太阳辐射地区,柴油车驾驶室内使用车载空调会增加车辆发动机的耗油量、降低柴油车经济效益的问题,搭建了一套由发动机尾气余热驱动的吸附式车载空调系统。系统由填充有氯化钙/氯化锰/硫化膨胀石墨复合吸附剂的吸附床、蒸发器、冷凝器、储液罐和阀门组成,使用氨作为制冷剂,利用车辆在行驶时接触到的自然风为吸附床冷却,在发动机尾气余热的驱动下,为驾驶室内提供连续的制冷效果。结合仿真和实验测试,对所设计系统的制冷性能进行了分析,仿真结果表明,系统最优循环时间为45 min,系统的理论平均制冷功率可达3.5 kW以上,系统COP处于0.2~0.25之间。实验结果表明,在230℃的尾气温度条件下,系统能产生3 kW的平均制冷量。在40℃环境温度条件下,系统在蒸发器进出口处的平均温差为6.5℃,平均制冷量为3.2 kW。  相似文献   
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