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111.
家用洗涤剂的特征污染物磷与表面活性剂随废水排入环境水体造成水体溶解氧下降、富营养化,破坏水生生态环境。从北京市三个具有代表性的市场购买洗衣液、洗衣粉、洗衣皂和洗洁精四种形态的家用洗涤剂共40个样本,并对其中磷与阴离子表面活性剂(LAS)含量进行检测。结果显示,所有衣用洗涤剂总P2O5含量均小于1.1%,符合无磷洗涤剂国家标准(GB/T 13171.2-2009);而LAS含量差异较大,范围为6.9%~31.4%,基本趋势是洗洁精洗衣液洗衣粉;经估算,洗涤等量衣物,洗衣液的LAS排放量比洗衣粉高49.1%,北京市每年家用洗涤剂LAS产生量至少为1.23万吨;经检测蓟运河北京段水样,61.5%的样点水样中LAS含量达到III类水质标准,但局部地区污染仍较为严重,污染风险不可忽视。  相似文献   
112.
白银天然沸石对磷的吸附机理及性能研究   总被引:1,自引:0,他引:1  
为探明天然沸石对磷的吸附机理,首先利用扫描电镜、X射线衍射、X荧光分析等对甘肃白银产天然沸石进行了表征,然后通过静态实验探讨了吸附时间、磷初始浓度、pH值等因素对沸石除磷性能的影响.研究结果表明:沸石对水溶液中磷的吸附动力学过程符合Pseudo second-order模型;Freudlich和Langmuir模型均可较好地描述沸石对磷的吸附特征;沸石对磷的吸附量随pH值增大而明显减小.  相似文献   
113.
有机物对亚硝化颗粒污泥中功能菌活性的影响   总被引:2,自引:2,他引:0  
为探明易降解有机物短期冲击对全自养亚硝化颗粒污泥(PNG)中不同功能菌活性的影响,本研究采用多批次连续实验,系统考察了PNG在有机物胁迫与恢复阶段,氮素转化性能与溶解氧(DO)利用情况的演化规律.结果表明,基质C/N比越高,亚硝态氮比累积速率[q(NO-2-N)]的降幅就越大.期间,异养菌(He B)活性的增强,加快了PNG对DO的消耗速率,使得氧亲和力较差的亚硝酸盐氧化菌(NOB)活性得到了有效抑制.当重新采用无机碳源配水时,q(NO-2-N)数值明显增大,同时He B与NOB的活性均处于较低水平.因此,易降解有机物对全自养PNG系统的冲击具有一定可逆性,该过程有助于巩固氨氧化菌(AOB)的相对优势,提升亚硝化反应的稳定性.  相似文献   
114.
秋夏季黄河三角洲湿地土壤汞和甲基汞的变化   总被引:4,自引:0,他引:4  
汞在湿地中的行为对湿地水生生物健康具有重要影响.于2011年和2012年分别采集干(夏初)湿(秋季)季节黄河三角洲湿地土壤样品,分析不同季节汞与甲基汞的含量差异和垂直变化.秋季总汞平均含量为0.064 mg·kg-1;夏季为0.027 mg·kg-1,总汞含量平均减少57%,湿地由积水到干旱过程中导致汞的释放.秋季各点位0~10 cm深甲基汞平均含量为0.28μg·kg-1,夏季甲基汞平均含量为0.066μg·kg-1,各点位含量平均减少76%.在秋季受湿地淹水影响,利于甲基汞的形成,水分减少和湿地干旱导致土壤中的甲基汞减少.在垂直方向上,夏季与秋季相比总汞在0~10 cm深度都有减少,土壤中的汞发生释放,因此,湿地在秋季表现为汇,而在春夏季为大气汞的源.硫酸盐还原细菌的含量秋季远高于夏季,在夏季硫酸盐还原菌与甲基汞和甲基化率均显著相关,硫酸盐还原菌、淹水环境、有机物质都会影响甲基汞产生和分布.  相似文献   
115.
钙、氯对磷酸盐稳定污染土壤中铅的促进作用研究   总被引:1,自引:0,他引:1  
为探讨促进磷酸盐稳定污染土壤中铅的方法,在全铅含量为517 mg·kg-1的铅冶炼污染土壤中加入5 mmol·kg-1磷酸盐,同时加入10mmol·kg-1硝酸钙或5 mmol·kg-1氯化钾,在15%或30%的含水率下培养40 d,之后种植黑麦草.结果表明,与单独施用磷酸盐相比,采用磷酸盐与钙、氯结合或增加培养期间的土壤含水率后,土壤DTPA-Pb含量下降3.92%~26.1%;对于同一添加剂处理,培养期间土壤含水率从15%增加到30%,土壤有效铅(DTPA-Pb)含量下降8.83%~24.4%.增加土壤含水率后,土壤有效磷(Olsen-P)含量均显著升高(p0.05).土壤铅的EXAFS分析表明,与未施用磷酸盐的对照相比,土壤中加入磷酸盐后矿物态铅的比例由57%上升至81%,加施钙、氯或增加土壤含水率后,多数处理矿物态铅的比例有所下降,而有机结合态铅比例上升.与对照相比,污染土壤中施用磷酸盐后,植物产量大幅增加,但施用钙、氯或增加培养期间含水率后,部分处理植物产量有所下降.以上结果表明,在铅冶炼污染土壤中加入磷酸盐时,加入钙、氯或者增加土壤含水率均有利于铅的稳定,但以上措施可能对植物生长产生不利影响.  相似文献   
116.
硫酸盐还原菌生理特性及其在废水处理中的应用   总被引:11,自引:0,他引:11  
硫酸盐还原菌(SRB)是一类利用硫酸盐或者其他氧化态硫化物作为电子受体来异化有机物质的严格厌氧菌.介绍了SRB的生理特性及检测方法,在阐明SRB降解水中污染物原理的基础上,充分探讨了SRB在处理重金属废水、无机和有机废水中的应用现状及研究进展,指出SRB固定化技术是其发展的必经之路.  相似文献   
117.
含锌废水处理技术的研究进展   总被引:9,自引:0,他引:9  
综述了传统的物理化学法和生物法处理含锌废水的原理,系统阐述了其研究进展.微生物固定技术是一种新兴而有效的生物处理技术,尤其是硫酸盐还原菌固定化技术,将厌氧活性污泥包埋,构建稳定高效的微生物体系,以加强其抗毒性和处理效率.因此,在含锌废水处理方面具有很大的发展潜力,有望得到广泛应用.  相似文献   
118.
Effect of humic substances on the precipitation of calcium phosphate   总被引:2,自引:0,他引:2  
For phosphorus (P) recovery from wastewater, the effect of humic substances (HS) on the precipitation of calcium phosphate was studied. Batch experiments of calcium phosphate precipitation were undertaken with synthetic water that contained 20 mg/L phosphate (as P) and 20 mg/L HS (as dissolved organic carbon, DOC) at a constant pH value in the range of 8.0-10.0. The concentration variations of phosphate, calcium (Ca) and HS were measured in the precipitation process; the crystalline state and compositions of the precipitates were analysed by powder X-ray diffraction (XRD) and chemical methods, respectively. It showed that at solution pH 8.0, the precipitation rate and removal efficiency of phosphate were greatly reduced by HS, but at solution pH ≥9.0, the effect of HS was very small. The Ca consumption for the precipitation of phosphate increased when HS was added; HS was also removed from solution with the precipitation of calcium phosphate. At solution pH 8.0 and HS concentrations ≤3.5 mg/L, and at pH ≥ 9.0 and HS concentrations ≤ 10 mg/L, the final precipitates were proved to be hydroxyapatite (HAP) by XRD. The increases of solution pH value and initial Ca/P ratio helped reduce the influence of HS on the precipitation of phosphate.  相似文献   
119.
• Magnetotactic bacteria (MTB) synthesize magnetic nanoparticle within magnetosomes. • The morphologic and phylogenetic diversity of MTB were summarized. • Isolation and mass cultivation of MTB deserve extensive research for applications. • MTB can remove heavy metals, radionuclides, and organic pollutants from wastewater. Magnetotactic bacteria (MTB) are a group of Gram-negative prokaryotes that respond to the geomagnetic field. This unique property is attributed to the intracellular magnetosomes, which contains membrane-bound nanocrystals of magnetic iron minerals. This review summarizes the most recent advances in MTB, magnetosomes, and their potential applications especially the environmental pollutant control or remediation. The morphologic and phylogenetic diversity of MTB were first introduced, followed by a critical review of isolation and cultivation methods. Past research has devoted to optimize the factors, such as oxygen, carbon source, nitrogen source, nutrient broth, iron source, and mineral elements for the growth of MTB. Besides the applications of MTB in modern biological and medical fields, little attention was made on the environmental applications of MTB for wastewater treatment, which has been summarized in this review. For example, applications of MTB as adsorbents have resulted in a novel magnetic separation technology for removal of heavy metals or organic pollutants in wastewater. In addition, we summarized the current advance on pathogen removal and detection of endocrine disruptor which can inspire new insights toward sustainable engineering and practices. Finally, the new perspectives and possible directions for future studies are recommended, such as isolation of MTB, genetic modification of MTB for mass production and new environmental applications. The ultimate objective of this review is to promote the applications of MTB and magnetosomes in the environmental fields.  相似文献   
120.
• The SRAO phenomena tended to occur only under certain conditions. • High amount of biomass and non-anaerobic condition is requirement for SRAO. • Anammox bacteria cannot oxidize ammonium with sulfate as electron acceptor. • AOB and AnAOB are mainly responsible for ammonium conversion. • Heterotrophic sulfate reduction mainly contributed to sulfate conversion. For over two decades, sulfate reduction with ammonium oxidation (SRAO) had been reported from laboratory experiments. SRAO was considered an autotrophic process mediated by anammox bacteria, in which ammonium as electron donor was oxidized by the electron acceptor sulfate. This process had been attributed to observed transformations of nitrogenous and sulfurous compounds in natural environments. Results obtained differed largely for the conversion mole ratios (ammonium/sulfate), and even the intermediate and final products of sulfate reduction. Thus, the hypothesis of biological conversion pathways of ammonium and sulfate in anammox consortia is implausible. In this study, continuous reactor experiments (with working volume of 3.8L) and batch tests were conducted under normal anaerobic (0.2≤DO<0.5 mg/L) / strict anaerobic (DO<0.2 mg/L) conditions with different biomass proportions to verify the SRAO phenomena and identify possible pathways behind substrate conversion. Key findings were that SRAO occurred only in cases of high amounts of inoculant biomass under normal anaerobic condition, while absent under strict anaerobic conditions for same anammox consortia. Mass balance and stoichiometry were checked based on experimental results and the thermodynamics proposed by previous studies were critically discussed. Thus anammox bacteria do not possess the ability to oxidize ammonium with sulfate as electron acceptor and the assumed SRAO could, in fact, be a combination of aerobic ammonium oxidation, anammox and heterotrophic sulfate reduction processes.  相似文献   
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