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91.
氧化亚铁硫杆菌对黄铜矿的生物氧化研究   总被引:1,自引:0,他引:1  
针对矿区硫化矿氧化产生的酸性矿山废水(AMD)对生态环境造成严重影响的问题,以矿区常见的黄铜矿(CuFeS2)为研究对象,采用已筛选的氧化亚铁硫杆菌(Acidithiobacillus ferrooxidans,简称A.f菌)为实验菌株,探讨在A.f菌作用下黄铜矿的氧化过程。实验结果表明,A.f菌可显著促进黄铜矿的氧化,第18天有菌体系中的铜离子浓度是无菌体系中的5倍;同时细菌可促进溶液中Fe2+氧化为Fe3+,使氧化还原电位升高,从而对黄铜矿保持较高的氧化速率,并导致体系的pH值降低;还发现黄铜矿的氧化过程中可形成中间产物方黄铜矿(CuFe2S3),而细菌氧化还可产生硫磷化钴(CoPS),中间产物的形成并没有明显延缓黄铜矿的氧化速率;生物氧化可造成矿样表面侵蚀多坑,可能是细菌对黄铜矿的直接氧化作用造成的。由于黄铜矿的生物氧化明显控制其氧化进程,抑制黄铜矿的生物氧化对酸性矿山废水的源头治理具有十分重要的意义。  相似文献   
92.
“十一五”期间松花江肇源江段高锰酸盐指数分析研究   总被引:1,自引:0,他引:1  
高锰酸盐指数是反应水域污染状况的一个重要指标,本文对"十一五"期间肇源境内的干流三个断面和支流两个断面的高锰酸盐指数监测数据进行研究分析,结果显示:"十一五"期间,松花江肇源境内高锰酸盐指数浓度呈现出显著的下降趋势;各水期肇源境内松花江干流的两大支流拉林河和嫩江主要污染因子高锰酸盐指数浓度也呈下降趋势;2010年肇源境内松花江干流高锰酸盐指数浓度出境段面高于入境断面,支流河口浓度低于松花江干流肇源江段。  相似文献   
93.
为进一步加强建设项目施工期的环境管理,中国在生态环境影响突出的国家13个重点建设项目中开展工程环境监理试点。石化工程相比其它工程项目具有建设规模大,对周边生态环境影响大,污染物排放总量大,潜在安全隐患大等特点。本文结合作者自身的工作体会对石化工程开展环境监理工作进行了探讨。包括石化工程在施工组织设计、施工准备阶段、施工期、试生产及竣工等各阶段的环境监理工作内容,并提出了工作中存在的一些问题及建议,为石化项目环境监理工作提供理论及实践依据。  相似文献   
94.
TFT-LCD制造企业节能减排管理模式研究   总被引:1,自引:0,他引:1  
节能减排是企业可持续发展的重要保障.TFT-LCD制造企业以合肥某光电科技有限公司第8.5代TFT-LCD项目为例,通过强化组织、领导,加强节能宣传和培训,提高节能减排意识,通过建立健全节能减排管理体系,从能源计量、节能奖惩、加强重点能源消耗管控等方面完善体制,层层剖析节能减排管理,使节能减排工作见到实效.  相似文献   
95.
钢结构建筑是一种新型的节能环保的建筑体系,大多数大型钢结构产品在生产过程中均需要进行抛丸除锈、喷涂处理,使用油漆进行喷涂过程中将不可避免地产生含TVOC(主要为甲苯、二甲苯和非甲烷总烃)的有机废气。大型钢构类生产项目喷涂废气的收集和处理尤为困难。文章结合某大型钢结构生产企业实际采取的喷涂废气治理方法进行喷涂废气污染防治可行性分析,旨在为同类项目喷涂废气污染治理及进一步改良涂装废气治理工艺和技术提供参考依据。  相似文献   
96.
建立了热脱附-毛细管气相色谱法测定空气中苯、甲苯、乙酸丁酯、乙苯、对/间二甲苯、邻二甲苯、苯乙烯和十一烷等挥发性有机物的检测方法。九种挥发性有机物在一定浓度范围内标准曲线线性良好,相关系数均在0.997~0.999之间。检出限在0.002~0.005 mg/m3(采样体积1.0 L计)。用该方法检测了企业产生的有机废气及厂区周边环境空气,实验结果表明该方法灵敏度高、操作简单、重现性好、准确可靠,能够满足对实际样品的分析要求。  相似文献   
97.
Based on the observation by a Regional Air Quality Monitoring Network including 16 monitoring stations, temporal and spatial variations of ozone(O3), NO2and total oxidant(Ox) were analyzed by both linear regression and cluster analysis. A fast increase of regional O3concentrations of 0.86 ppbV/yr was found for the annual averaged values from 2006 to 2011 in Guangdong, China. Such fast O3increase is accompanied by a correspondingly fast NOx reduction as indicated by a fast NO2 reduction rate of 0.61 ppbV/yr. Based on a cluster analysis, the monitoring stations were classified into two major categories – rural stations(non-urban) and suburban/urban stations. The O3concentrations at rural stations were relatively conserved while those at suburban/urban stations showed a fast increase rate of 2.0 ppbV/yr accompanied by a NO2 reduction rate of 1.2 ppbV/yr. Moreover, a rapid increase of the averaged O3 concentrations in springtime(13%/yr referred to 2006 level) was observed, which may result from the increase of solar duration, reduction of precipitation in Guangdong and transport from Eastern Central China. Application of smog production algorithm showed that the photochemical O3production is mainly volatile organic compounds(VOC)-controlled. However, the photochemical O3production is sensitive to both NOx and VOC for O3pollution episode. Accordingly, it is expected that a combined NOx and VOC reduction will be helpful for the reduction of the O3 pollution episodes in Pearl River Delta while stringent VOC emission control is in general required for the regional O3 pollution control.  相似文献   
98.
This study investigated the bacterial regrowth in drinking water distribution systems receiving finished water from an advanced drinking water treatment plant in one city in southem China. Thirteen nodes in two water supply zones with different aged pipelines were selected to monitor water temperature, dissolved oxygen (DO), chloramine residual, assimilable organic carbon (AOC), and heterotrophic plate counts (HPC). Regression and principal component analyses indicated that HPC had a strong correlation with chloramine residual. Based on Chick-Watson's Law and the Monod equation, biostability curves under different conditions were developed to achieve the goal of HPC 100 CFU/mL. The biostability curves could interpret the scenario under various AOC concentrations and predict the required chloramine residual concentration under the condition of high AOC level. The simulation was also carded out to predict the scenario with a stricter HPC goal (≤50 CFU/mL) and determine the required chloramine residual. The biological regrowth control strategy was assessed using biostability curve analysis. The results indicated that maintaining high chloramine residual concentration was the most practical way to achieve the goal of HPC ≤ 100 CFU/mL. Biostability curves could be a very useful tool for biostability control in distribution systems. This work could provide some new insights towards biostability control in real distribution systems.  相似文献   
99.
An organo-montmorillonite-supported nanoscale zero-valent iron material(M-NZVI) was synthesized to degrade decabromodiphenyl ether(BDE-209). The results showed that nanoscale zero-valent iron had good dispersion on organo-montmorillonite and was present as a core-shell structure with a particle size range of nanoscale iron between 30–90 nm, characterized by XRD, SEM, TEM, XRF, ICP-AES, and XPS. The results of the degradation of BDE-209 by M-NZVI showed that the efficiency of M-NZVI in removing BDE-209 was much higher than that of NZVI. The efficiency of M-NZVI in removing BDE-209 decreased as the pH and the initial dissolved oxygen content of the reaction solution increased, but increased as the proportion of water in the reaction solution increased.  相似文献   
100.
Water supply is the primary element of an urban system. Due to rapid urbanization and water scarcity, maintaining a stable and safe water supply has become a challenge to many cities, whereas a large amount of water is lost from the pipes of distribution systems. Water leakage is not only a waste of water resources, but also incurs great socio-economic costs. This article presents a comprehensive review on the potential water leakage control approaches and specifically discusses the benefits of each to environmental conservation. It is concluded that water leakage could be further reduced by improving leakage detection capability through a combination of predictive modeling and monitoring instruments, optimizing pipe maintenance strategy, and developing an instant pressure regulation system. The environment could benefit from these actions because of water savings and the reduction of energy consumption as well as greenhouse gas emissions.  相似文献   
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