首页 | 本学科首页   官方微博 | 高级检索  
文章检索
  按 检索   检索词:      
出版年份:   被引次数:   他引次数: 提示:输入*表示无穷大
  收费全文   196篇
  免费   1篇
  国内免费   29篇
安全科学   19篇
废物处理   4篇
环保管理   14篇
综合类   126篇
基础理论   10篇
污染及防治   46篇
评价与监测   7篇
  2023年   2篇
  2022年   8篇
  2021年   4篇
  2020年   7篇
  2019年   3篇
  2018年   4篇
  2017年   3篇
  2016年   3篇
  2015年   5篇
  2014年   3篇
  2013年   9篇
  2012年   14篇
  2011年   11篇
  2010年   8篇
  2009年   15篇
  2008年   9篇
  2007年   14篇
  2006年   18篇
  2005年   13篇
  2004年   9篇
  2003年   12篇
  2002年   4篇
  2001年   8篇
  2000年   6篇
  1999年   6篇
  1998年   8篇
  1997年   6篇
  1996年   2篇
  1995年   1篇
  1994年   7篇
  1993年   1篇
  1992年   2篇
  1990年   1篇
排序方式: 共有226条查询结果,搜索用时 78 毫秒
81.
Ferrate(VI) salt is an oxidant and coagulant for water and wastewater treatment. It is considered as a possible alternative method in greywater treatment. However, challenges have existed in putting ferrate(VI) technology into full-scale practice in water and wastewater treatment due to the instability of ferrate solution and high production cost of solid ferrate products. This study demonstrated a new approach of greywater treatment with on-line batch production of Fe(VI) to which Fe(III) salt was oxidized at a weak acidity solution. A series of experiments were conducted to investigate the effect of Fe(VI) on light greywater (total organic carbon (TOC) = 19.5 mg/L) and dark greywater (TOC = 55 mg/L) treatment under different conditions with varying pH and Fe(VI) doses. In addition, the combination use of Fe(VI) and Al(III) salts was proved to be more efficient than using the Fe(VI) salts alone at greywater recycling. The optimum dosage of Fe(VI)/Al(III) salts was 25/25 mg/L for light greywater, 90/60 mg/L for dark greywater, respectively. The TOC values of both light greywater and dark greywater were reduced to less than 3 mg/L with the dosages. The cost for treating greywater was 0.06–0.2 $/ton at ferrate(VI) dosage of 25–90 mg/L and 0.008–0.024 $/ton at AlCl3 dosage of 25–60 mg/L. The full operating cost needs further assessment before the Fe(VI)/Al(III) technology could be implemented in greywater treatment.  相似文献   
82.
苯酐生产氧化反应器组火灾爆炸危险性分析与对策   总被引:3,自引:1,他引:2  
为预防苯酐生产中最危险部位氧化反应器组发生火灾、爆炸事故 ,详细分析了苯酐生产中氧化反应器组各部位的火灾、爆炸危险性 ,在危险性分析基础上 ,提出了可行的安全对策与措施 ,对苯酐装置的安全生产和管理具有重要的指导意义和参考价值  相似文献   
83.
钙钛矿CaFeO_3光催化降解大红染料废水性能的研究   总被引:1,自引:0,他引:1  
用柠檬酸络合法制备钙钛矿型复合氧化物CaFeO3,并以其为光催化剂对水溶性染料进行光催化降解实验。讨论了光催化反应时间、催化剂投加量、光照强度、pH值、以及外加氧化剂(H2O2)等因素对光催化活性的影响。实验结果表明:在催化剂投加量0.4g,降解时间180min,pH值2,光照强度200W,H2O2的投加量5mL时,大红染料的降解率可达99.83%。  相似文献   
84.
李永 《环境科技》2008,21(5):54-56
通过对焦作污水处理厂处理工艺特点的研究,分析了其电耗的组成和重点,提出了主要耗电环节的节电措施.每月节约电费12万元。  相似文献   
85.
为实现十一五大庆炼化石油节能减排,扩大再生产需要的高质量循环水和锅炉用水需要,用二次生化后排放污水经碟式过滤器——超滤—高级氧化——动态活性炭——动态生物膜沙滤+反渗透组合工艺处理废水回用生产。该工程规模600t/h,设计循环补充水量280t/h,锅炉用水补充量250t/h,是典型污水工厂管道化处理工程。工艺先进,设备板块简单,适应石油炼化、煤化工、钢铁、铜业电厂和城市污水深加工项目。  相似文献   
86.
Fungal trophic modes and substrates utilization ability was observed in composting. Fungi had the higher diversity and more trophic types in thermophilic phase. Fungi had the higher metabolic potential in fresh swine manure and mature production. Redox potential, organics and moisture are main factors impacting fungal community. Composting reduced pathogenic fungi and enrich dung saprotroph fungi in swine manure. The succession of fungal community, trophic mode and metabolic characteristics were evaluated in 60 days composting of swine manure by high-throughput sequencing, FUNGuild and Biolog method, respectively. The result showed that the fungal community diversity reached to the highest level (76 OTUs) in the thermophilic phase of composting, then sustained decline to 15 OTUs after incubation. There were 10 fungal function groups in the raw swine manure. Pathotroph-saprotroph fungi reached to 15.91% on Day-10 but disappeared on Day-60. Dung saprotroph-undefined saprotroph fungi grown from 0.19% to 52.39% during the treatment. The fungal community had more functional groups but the lower substrate degradation rates in the thermophilic phase. The fungal communities on Day-0 and Day-60 had the highest degradation rates of amino acids and polymers, respectively. Redundancy analysis showed that ORP (49.6%), VS/Ash (45.3%) and moisture (39.2%) were the main influence factors on the succession of fungal community in the swine manure composting process.  相似文献   
87.
湿式催化氧化技术处理高浓度工业废水研究   总被引:1,自引:1,他引:0  
采用日本大阪煤气公司先进的湿式催化氧化技术及其 2 0 0 L/ d小型工业试验装置对高浓度焦化废水、造纸黑液 (原水CODCr分别为 1180 0和 5 0 0 0 0 mg/ L )进行处理试验 ,结果 CODCr去除速率分别达到 5 40 mg/ ( L· min)和 2 412 mg/ ( L· m in)。应用国产化湿式催化氧化技术和 2 0 m3/ d工业装置对同样两种高浓度工业废水进行处理 ,结果 CODCr和 NH3-N的去除率均达 99%以上 ,并使废水经处理后连续稳定地达标排放 ,具有较好的经济效益  相似文献   
88.
More than 2500 measurements of C2–C8 non-methane hydrocarbons (NMHCs) have been conducted at Finokalia sampling station on the island of Crete over a thirty-month period (September 2003–February 2006), to investigate the factors controlling NMHC levels and estimate their role in the oxidizing capacity of the Eastern Mediterranean atmosphere. Atmospheric concentrations of NMHCs range from below the detection limit (5 pptv) to a few ppbv and present a hydroxyl radical (OH) driven seasonal pattern with lower values during summer. The diel variability was also influenced by the reaction of the NMHC with the OH radical, exhibiting a nighttime maximum and a midday or early afternoon minimum. Long-lived compounds demonstrate higher concentrations under the influence of the northern sector (European continent), indicating that besides chemistry, transport significantly contributes to NMHCs levels in the area. Based on the observed NMHCs diurnal cycles, mean OH radical levels of 3.5 × 106 molecules cm−3 have been derived for May–October period.  相似文献   
89.
塑料管中氧化-气相分子吸收光谱法测定水中氨氮   总被引:3,自引:1,他引:2  
建立了塑料管中氧化-气相分子吸收光谱测定水中氨氮的方法,消除了玻璃容器中杂质的干扰。方法空白值低,检出限为0.006mg/L,测定实际水样的精密度≤3.0%,加标回收率为98.4%~104%,与次溴酸盐氧化-分光光度法作比对,结果基本一致。  相似文献   
90.
有效去除垃圾渗滤液中的氮是一项艰巨的任务,传统的先硝化后反硝化处理方法存在的主要问题是反硝化阶段碳源不足和总氮去除效率过低。研究中研究人员提出了好氧反硝化、厌氧氨氧化和短程硝化反硝化等新方法。好氧反硝化菌可以利用硝化过程中充足的碳源进行反硝化;厌氧氨氧化是在缺氧条件下,以NO-2为电子受体,直接把氨氧化成N2;短程硝化反硝化将脱氮过程控制在亚硝化阶段,不但节省了反硝化过程中的碳源,而且减少了能量的消耗。本文对这些方法及其在实践的应用进行了论述。  相似文献   
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号