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921.
为了得到一株具有降解微囊藻毒素一RR(MC—RR)特性的产芽孢菌株,采用加热富集芽孢菌的方法,从太湖分离到一株MC.RR降解菌CMl,该菌对MC—RR具有强烈的降解特性。通过形态学特征、生理生化特征及16SrDNA序列分析鉴定该菌株属于耐硼赖氨酸芽孢杆菌(Lysinibacillusb oronitolerans)。通过研究温度和pH值对菌株CMl降解MC—RR能力的影响,发现菌株CMl在60h将MC—RR由12.77μg/mL降解到1.67μg/mL,降解率达86.90%,最适降解温度为37℃,最适pH值为7.0。CMl菌株的胞外物质和胞内物质均能降解MC—RR,但胞内物质具有更强烈的降解特性,12h可以将7.27μg/mL的MC-RR完全降解。为丰富MC-RR降解菌纯菌种研究以及在去除水体中MC—RR应用研究方面提供了理论基础。 相似文献
922.
磁性纳米吸附剂Fe3O4·ZrO(OH)2的合成及对水中氟和砷的吸附性能 总被引:1,自引:0,他引:1
用共沉淀法将ZrOCl2·8H2O包裹在磁性纳米Fe3O4表面,合成了一种针对高浓度含砷含氟废水的高效新型磁性纳米吸附剂Fe3O4·ZrO(OH)2.研究考察了吸附剂对氟和砷的吸附容量、反应平衡时间以及pH对吸附效果的影响.实验表明,磁性纳米Fe3O4·ZrO(OH)2吸附剂对水中F-和As(Ⅲ/Ⅴ)等温吸附模型符合Langmuir和Freundlich模型.对溶液中总氟和总砷的吸附容量分别可达70.42 mg/g和133.33 mg/g.通过拟二级动力学方程可得知吸附过程在20 min左右即可达到平衡.随着pH的不断增加,吸附剂对氟的吸附容量逐渐降低,而对砷的吸附量则是先增加后减少. 相似文献
923.
一株荧蒽降解菌的筛选鉴定及降解特性 总被引:1,自引:0,他引:1
采用富集培养方法,从多环芳烃污染的土壤中分离筛选到一株能以高分子量的多环芳烃荧蒽为惟一碳源和能源且生长状况良好的菌株DN002。通过形态观察、生理生化指标及16S rRNA同源序列分析比对,结果表明,该菌株为木糖氧化产碱菌(Achromobacter xylosoxidans),最适生长温度为32℃,最适生长pH为7~7.5。该菌株对荧蒽有较强的降解能力,在14 d内对500 mg/L的荧蒽的降解率为92.8%。菌株细胞蛋白SDS-PAGE结果显示,经荧蒽诱导后,在分子量为18~66 kDa范围内有显著的差异蛋白条带。 相似文献
924.
固定化活性污泥实现短程硝化反硝化处理畜禽废水 总被引:4,自引:1,他引:3
以畜禽废水为处理对象,通过分别控制水力停留时间(HRT)、溶解氧(DO)、pH值、温度和碳氮比(C/N)等影响亚硝化的主要单因子,以使固定化活性污泥颗粒实现短程硝化反硝化反应,在连续流运行模式下进行废水脱氮实验,实验结果表明,单因子HRT为10 h,溶解氧为4 mg/L,pH值为8.5,温度为30℃,碳氮比为10时,对TN和COD的去除率分别为81.98%、93.79%;87.32%、98.35%;83.82%、93.93%;85%、97%;85.37%、97.28%,达到了理想的去除效果。 相似文献
925.
在温室盆栽条件下,通过单独种植紫茉莉、单独接种多环芳烃(PAHs)模式化合物芘的专性降解菌ZQ5和两者的联合修复的3种处理,对芘污染土壤的修复效果进行了研究。结果表明,经90 d修复后,植物-微生物联合修复可将人工污染土壤中的芘降解81.1%,将石油污染土壤中的芘降解50.3%,其修复效率明显高于其他2种处理,是紫茉莉修复的1.98倍,是降解菌ZQ5修复的1.39倍。ZQ5的不同接菌量对于修复60 d后的降解率影响不大。外源生物修复条件下,10~20 cm土壤的修复效率要高于5 cm土壤;自然降解条件下,5 cm土层降解率略高于其他土层。 相似文献
926.
通过盆栽实验研究不同纳米修复剂(羟基磷灰石HAP、赤泥RM、Fe3O4、胡敏酸-Fe3O4)对2种不同污染土壤Cd吸收、转运的影响。结果表明,上述纳米修复剂均可显著增加胡萝卜植株生物量,显著提高植株Cd胁迫的耐受指数;不同土壤施用不同纳米修复剂均显著降低胡萝卜植株Cd的含量,并且随着修复剂施加浓度的增加而显著降低;与对照相比,植株茎叶Cd含量最大降低达78.8%,根中Cd的含量最大降低67.8%;添加不同修复剂能不同程度地降低了土壤中Cd的转运系数和富集系数,这可能与施用不同纳米修复剂促进了土壤中非残留态Cd向残留态Cd的转化有关,总体而言,不同纳米型修复剂对降低Cd的有效性顺序为:RM~HAP>胡敏酸-Fe3O4>Fe3O4。 相似文献
927.
928.
Yingnan Jiang Ming Hua Bian Wu Hongrui Ma Bingcai Pan Quanxing Zhang 《Environmental science and pollution research international》2014,21(10):6729-6735
Effective arsenic removal from highly laden industrial wastewater is an important but challenging task. Here, a combined coprecipitation/nano-adsorption process, with ferric chloride and calcium chloride as coprecipitation agents and polymer-based nanocomposite as selective adsorbent, has been validated for arsenic removal from tungsten-smelting wastewater. On the basis of operating optimization, a binary FeCl3 (520 mg/L)–CaCl2 (300 mg/L) coprecipitation agent could remove more than 93 % arsenic from the wastewater. The resulting precipitate has proved environmental safety based on leaching toxicity test. Fixed-bed column packed with zirconium or ferric-oxide-loaded nanocomposite was employed for further elimination of arsenic in coprecipitated effluent, resulting in a significant decrease of arsenic (from 0.96 to less than 0.5 mg/L). The working capacity of zirconium-loaded nanocomposite was 220 bed volumes per run, much higher than that of ferric-loaded nanocomposite (40 bed volumes per run). The exhausted zirconium-loaded nanocomposite could be efficiently in situ regenerated with a binary NaOH–NaCl solution for reuse without any significant capacity loss. The results validated the combinational coprecipitation/nano-adsorption process to be a potential alternative for effective arsenic removal from highly laden industrial effluent. 相似文献
929.
Zulin Hua Wenqiang Ma Xue Bai Ranran Feng Lu Yu Xiaoyuan Zhang Zhangyan Dai 《Environmental science and pollution research international》2014,21(12):7737-7745
A new method for the degradation of bisphenol A (BPA) in aqueous solution was developed. The oxidative degradation characteristics of BPA in a heterogeneous Fenton reaction catalyzed by Fe3O4/graphite oxide (GO) were studied. Transmission electron microscopic images showed that the Fe3O4 nanoparticles were evenly distributed and were ~6 nm in diameter. Experimental results suggested that BPA conversion was affected by several factors, such as the loading amount of Fe3O4/GO, pH, and initial H2O2 concentration. In the system with 1.0 g L?1 of Fe3O4/GO and 20 mmol L?1 of H2O2, almost 90 % of BPA (20 mg L?1) was degraded within 6 h at pH 6.0. Based on the degradation products identified by GC–MS, the degradation pathways of BPA were proposed. In addition, the reused catalyst Fe3O4/GO still retained its catalytic activity after three cycles, indicating that Fe3O4/GO had good stability and reusability. These results demonstrated that the heterogeneous Fenton reaction catalyzed by Fe3O4/GO is a promising advanced oxidation technology for the treatment of wastewater containing BPA. 相似文献
930.
Xiao-Song He Bei-Dou Xi Dan Li Xu-Jing Guo Dong-Yu Cui Hong-Wei Pan Yan Ma 《Environmental science and pollution research international》2014,21(12):7522-7529
Compost leachates were collected to investigate the influence of the composition and removal of volatile fatty acids (VFAs), humic-like substances (HSs), and dissolved organic nitrogen (DON) on heavy metal distribution during the leachate treatment process. The results showed that acetic and propionic acids accounted for 81.3 to 93.84 % of VFAs, and that these acids were removed by the anaerobic-aerobic process. Humic- and fulvic-like substances were detected by excitation–emission matrix spectroscopy coupled with parallel factor analysis, and their content significantly decreased after the anaerobic and membrane treatments. DON in compost leachates ranged from 26.53 mg L-1 to 919.46 mg L-1, comprised of dissolved free amino acids and the protein-like matter bound to humic- and fulvic-like substances, and was removed by the aerobic process. Correlation analysis showed that Mn, Ni, and Pb were bound to VFAs and protein-, fulvic-, and humic-like substances in the leachates. Co was primarily bound to fulvic- and humic-like matter and inorganic sulfurs, whereas Cu, Zn, and Cd interacted with inorganic sulfur. 相似文献