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国家自然科学基金(51108196)

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Characteristics of Phosphorus Adsorption with Boiler Slag and Process Optimization被引量:3
2012年
[Objective] This study aimed to investigate the characteristics of phosphorus adsorption on boiler slag and optimize the adsorption process. [Method] Boiler slag was used as an adsorbent in the single-grade adsorption process to dispose the rural domestic sewage. During the course, phosphorus adsorption kinetics and thermodynamics, adsorption operating curve and the minimum boiler slag dosage were analyzed and calculated. [Result] Langmuir adsorption isotherm could be applied to describe the absorption of phosphorus with boiler slag, and the absorption kinetics was confirmed with the pseudo second-order equation. The maximum absorption quantity and the initial absorption rate increased with the rise of temperature, reaching up to 0.159 1 mg/g and 0.169 8 mg/(g·min) respectively at 40 ℃. Thermodynamic variables ΔG0<0 and ΔH0>0 indicated that the entire process was a spontaneous endothermic reaction, and high temperature would facilitate the reaction of absorption. In the single grade adsorption, the minimum adsorbent dosage decreased as the temperature rose; at 40 ℃ the optimum mass ratio of boiler slag to wastewater was 3.31 kg/m3. [Conclusion] The adsorption process with boiler slag as adsorbent is an economical and effective approach for treating rural domestic sewage.
梁思华余光伟林佩祯种云霄崔理华邱兰
关键词:PHOSPHORUSKINETICSTHERMODYNAMICS
污染河流底泥亚铁氧化硝酸盐还原菌分离及代谢特性被引量:7
2015年
采用常规分离培养方法,从富含亚铁厌氧还原态底泥中分离得到多株亚铁氧化硝酸还原菌,并从中选取1株:FX-Fe5菌株进行详细分析研究.经革兰氏染色、光学显微镜及扫描电镜观察,该菌为革兰氏染色阴性长杆菌,经16Sr RNA测序分析确定为:拉乌尔菌属种类(Raoultella sp.).利用亚铁作为单独电子供体和亚铁与不同比例乙酸作为共同电子供体反硝化反应液,研究了FX-Fe5菌株对亚铁、硝酸盐氮和有机物的代谢特点.结果表明,FX-Fe5在24h内可对亚铁进行较大幅度的去除,去除率(%)分别为:89.77±0.47a(亚铁与乙酸盐比例1:1)、87.01±0.22b(亚铁与乙酸盐比例3:1)、86.96±0.07b(仅亚铁)、72.97±0.53c(亚铁与乙酸盐比例1:3),高于文献报道大部分纯菌的亚铁氧化率;亚铁和乙酸盐为共同电子供体时,乙酸和亚铁在硝酸还原过程中同步减少;重复反应的结果发现FX-Fe5菌株在不提供乙酸盐时,不能持续地利用亚铁进行硝酸还原反应.FX-Fe5菌株利用亚铁对硝酸还原过程中没有出现明显的亚硝酸盐氮和氨的积累,各反应体系反应气体中都含有N2O的存在,所占比例都不高,最高的情况不超过0.5%(5000×10-6),但不同电子供体间差别非常大.利用Biology对碳源代谢特点分析表明,FX-Fe5菌株但对单糖/糖苷/聚合糖类优先利用且利用程度较高.
谢小兰余光伟种云霄龙新宪
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