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This paper discusses the adsorption capacity of silica gel sludge for phenol removal from aqueous solution. Kinetic experiments showed that phenol adsorption was completed after 2 h. Adsorption isotherms were measured for phenol from aqueous solution onto silica gel sludge under various pHs and temperatures. Results showed that the adsorption capacities for phenol was increased as pH decreased from 6.5 to 2. Temperature also was found to affect the adsorption isotherm. As temperature increases from 30 to 50°C, the adsorption capacity increases. The adsorption equilibrium of phenol on silica gel sludge was described by the linear Freundlich and Langmuir models. Furthermore, results showed that the isotherm parameters fit both linearized Langmuir and Freundlich adsorption isotherms. The Freundlich and Langmuir parameters at optimum pH was found as K
f=2.89, 1/n=0.23 and K
d=22.0, q
m=7.98, respectively. Whereas, for those at optimum temperature it was observed as K
f=2.87, 1/n=0.16 and K
d=20.93, q
m=7.91, respectively. 相似文献
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Landscape consequences of aggregation rules for functional equivalence in compensatory mitigation programs
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Mitigation and offset programs designed to compensate for ecosystem function losses due to development must balance losses from affected ecosystems with gains in restored ecosystems. Aggregation rules applied to ecosystem functions to assess site equivalence are based on implicit assumptions about the substitutability of functions among sites and can profoundly influence the distribution of restored ecosystem functions on the landscape. We investigated the consequences of rules applied to the aggregation of ecosystem functions for wetland offsets in the Beaverhill watershed in Alberta, Canada. We considered the fate of 3 ecosystem functions: hydrology, water purification, and biodiversity. We set up an affect‐and‐offset algorithm to simulate the effect of aggregation rules on ecosystem function for wetland offsets. Cobenefits and trade‐offs among functions and the constraints posed by the quantity and quality of restorable sites resulted in a redistribution of functions between affected and offset wetlands. Hydrology and water purification functions were positively correlated with one another and negatively correlated with biodiversity function. Weighted‐average rules did not replace functions in proportion to their weights. Rules prioritizing biodiversity function led to more monofunctional wetlands and landscapes. The minimum rule, for which the wetland score was equal to the worst performing function, promoted multifunctional wetlands and landscapes. The maximum rule, for which the wetland score was equal to the best performing function, promoted monofunctional wetlands and multifunctional landscapes. Because of implicit trade‐offs among ecosystem functions, no‐net‐loss objectives for multiple functions should be constructed within a landscape context. Based on our results, we suggest criteria for the design of aggregation rules for no net loss of ecosystem functions within a landscape context include the concepts of substitutability, cobenefits and trade‐offs, landscape constraints, heterogeneity, and the precautionary principle. 相似文献
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研究不同pH(8.0、6.0和3.0)下金属纳米颗粒(Fe和Fe/Ni)对纺锤芽孢杆菌(BFN)降解苯酚的影响.实验结果发现pH在8.0和6.0时投加2种金属纳米颗粒(Fe和Fe/Ni)对BFN降解苯酚有促进作用,其原因主要是纳米颗粒在水中持续腐蚀产生H2,为BFN降解苯酚提供电子,促进BFN的生长.但在pH=3.0时,只有BFN-纳米Fe耦合体系才使苯酚得到部分降解,主要是因为纳米Fe颗粒与水反应产生OH-,使pH值有所升高,更适宜BFN的生长,同时提供电子供体H2促进BFN对苯酚的利用.扫描电镜(SEM)和能谱分析(EDS)数据证实金属纳米颗粒(Fe和Fe/Ni)在反应后附着在微生物表面,但微生物的表面形态并未发生显著改变.因此,纳米金属颗粒虽然通过附着影响微生物的活性,但其在腐蚀过程中产生的H2将作为电子供体而被BFN所利用,综合作用的结果是有利于BFN的生长进而提高苯酚的降解速率. 相似文献
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菌株Pseudomonas sp. JF122降解苯酚同时还原Cr(VI)的条件优化及生长特性研究 总被引:1,自引:1,他引:0
采用富集培养法,从钢铁厂附近河流污泥中分离筛选到1株能同时降解苯酚与还原Cr(VI)的菌株JF122.在600 mg·L-1苯酚与1.2 mg·L-1 Cr(VI) 的条件下,采用单因素实验考察了温度、初始pH、该菌接种量等因素对其同时降解苯酚与还原Cr(VI)的影响,并通过正交试验L9(33)获得适宜的苯酚降解与Cr(VI)还原条件.结果表明,菌株JF122降解苯酚与还原Cr(VI)的适宜条件为:30 ℃、初始pH=6和接种量1%,此条件下,菌株JF122在56 h内能够降解600 mg·L-1苯酚同时还原1.2 mg·L-1 Cr(VI).应用响应曲面法建立了菌株JF122的生长与温度、初始pH、接种量等因素间关系的数学模型,并对其生长条件进行了优化.结果表明,菌株JF122最优生长条件与其降解苯酚并同时还原Cr(VI)的最优条件具有一致性. 相似文献
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苯酚降解红球菌的分离鉴定及降解特性研究 总被引:1,自引:0,他引:1
采用富集培养的方法,从唐山污水处理厂附近的植物根际土中分离得到1株高效苯酚降解菌11-111。该菌株为革兰氏阳性菌,可以在以苯酚为唯一碳源和能源的无机盐培养基上生长,能够耐受最高浓度为2 000 mg/L的苯酚。对该菌株的降解性能研究表明,在温度24~32℃,pH值6.5~8.5,装液量≤20 mL(100 mL摇瓶)范围内,摇床转速为160 r/min,菌株对初始浓度500~1 500 mg/L的苯酚均能有效降解。根据该菌株的形态、生理生化特性和16S rRNA基因序列同源性分析结果,鉴定为红球菌属(Rhodococcus sp.)菌株。该菌株具有较强的环境适应能力和苯酚降解能力,有较高的研究价值及应用前景。 相似文献