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101.
医院安全保障体系的技术构成包括安全的诊疗救护技术、后勤供养技术和安全保卫技术。其技术特点是以人为本 ,服务健康 ,应急性强 ,发展迅速 ,互相影响。本文提出了医院安全保障体系改革的构想和建立医院安全保障体系中应考虑的技术因素。  相似文献   
102.
High strength refractory organic stream is produced during the production of 2-phenylamino-3-methyl-6-di-n-butylaminofluoran (One Dye Black 2, abbr. ODB 2), a novel heat-sensitive material with a promising market. In this study, a combination of acidificationprecipitation, primary biological treatment, Fenton's oxidation and another biological treatment was successfully used for the removal of COD from 18000-25000 mg/L to below 200 mg/L from the ODB 2 production wastewater in a pilot experiment. A COD removal of 70%-80% was achieved by acidification-precipitation under a pH of 2.5-3.0. The first step biodegradafion permitted an average COD removal of 70% under an hydraulic residence time (HRT) of 30 h. By batch tests, the optimum conditions of Fenton's oxidation were acquired as: Fe^2+ dose 6.0 mmol/L; H2O2 dose 3000 mg/L; and reaction time 6 h. The second step biological treatment could ensure an effluent COD below 200 mg/L under an HRT of 10 h following the Fenton's treatment.  相似文献   
103.
造纸漂白废水中有机氯化物处理技术   总被引:4,自引:0,他引:4  
在调研国内外文献资料的基础上,对有关制浆造纸漂白废水污染控制技术研究现状从物化法,化学法,生化法等方面进行了综述,对系统开发研究高效,经济,节能的漂白废水处理工艺有重要的参考作用。  相似文献   
104.
黄河支流非点源污染物(N、P)排放量的估算   总被引:7,自引:0,他引:7  
为了估算黄河支流域非点源污染物的排放量,为今后黄河流域的治理提供科学的依据,对黄河流域的6个子流域(渭河流域、泾河流域、洛河流域、无定河流域、窟野河流域、黄甫川流域)进行了水样、土样和泥沙样的采集分析;结合6个子流域的多年水文资料,利用已经被证明了的平均浓度法对黄河6个子流域的氮磷污染物进行了定量描述,估算出各个流域的氮磷排放量.结果表明,95%的全磷、大于53%的全氮来自于非点源污染,非点源污染是造成黄河污染的主要原因.各流域非点源污染的发生具有明显的地域分异特征.硝态氮主要来自于渭河,铵态氮主要来自于泾河,其次是渭河.从全氮看,绝大部分氮来自于渭河和泾河.全磷则主要来自于泾河,其次是渭河.泾河和渭河是6条河流中对黄河污染物排放量贡献最大的2条河流.  相似文献   
105.
The removal efficiency of copper(Cu(Ⅱ)) from an actual acidic electroplating effluent by biochars generated from canola,rice,soybean and peanut straws was investigated.The biochars simultaneously removed Cu(Ⅱ) from the effluent,mainly through the mechanisms of adsorption and precipitation,and neutralized its acidity.The removal efficiency of Cu(Ⅱ) by the biochars followed the order:peanut straw char > soybean straw char > canola straw char > rice straw char a commercial activated carbonaceous material,which is consistent with the alkalinity of the biochars.The pH of the effluent was a key factor determining the removal efficiency of Cu(Ⅱ) by biochars.Raising the initial pH of the effluent enhanced the removal of Cu(Ⅱ) from it.The optimum pyrolysis temperature was 400°C for producing biochar from crop straws for acidic wastewater treatment,and the optimum reaction time was 8 hr.  相似文献   
106.
厌氧颗粒污泥的培养和保持是EGSB反应器使用中的关键问题.通过改变常规EGSB反应器出水回流方式,将出水与回流水在沉淀区分离,能得到更好的水力条件,离散率更高,并且反应器内的死区减少,有效颗粒污泥的质量分数能提高13%,出水SS最大降低65 mg/L,从而有利于厌氧反应器内有效颗粒污泥的生长和更有效地去除污染物.  相似文献   
107.
采用umu遗传毒性测试方法考察了消毒剂投加量、反应时间和消毒剂氯氮比对某饮用水厂臭氧-生物活性炭出水加氯或氯胺消毒前后遗传毒性的影响.结果表明,炭后水具有一定的遗传毒性(20~70 ng/L),加氯或氯胺消毒后遗传毒性增加.反应时间为24 h,在相同投加量下氯消毒遗传毒性(40~95 ng/L)高于氯胺消毒遗传毒性(20~40 ng/L);当氯初始投加量从0 mg/L增加到10 mg/L时,炭后水的遗传毒性先迅速增加,在0.5~1 mg左右达到极大值,然后再降低,在3~5 mg左右达到极小值后缓慢上升,但是氯胺消毒后水样遗传毒性变化规律不如氯消毒的明显.当投加量为3 mg/L时,随着反应时间从0 h延长至72 h,无论是氯消毒还是氯胺消毒,炭后水遗传毒性均是先迅速增加,在2 h时达到极大值后再下降,在18 h左右达到极小值然后缓慢上升,而且任意反应时间内,氯胺消毒的遗传毒性(20~62 ng/L)均小于氯消毒(83~120 ng/L).本试验还研究了消毒剂氯氮比对炭后水氯消毒后遗传毒性的影响.在本试验条件下,从遗传毒性的角度看,对于饮用水消毒氯胺比氯更安全,而且2种消毒方式的遗传毒性的变化规律均不同于总HAAs的变化规律.  相似文献   
108.
Constructed wetland (CW) is the preferred means of controlling water quality because of its natural treatment mechanisms and function as a secondary or tertiary treatment unit. CW is increasingly applied in Korea for secondary effluent of livestock wastewater treatment. This study was conducted to recognize the characteristics of contaminants in the accumulated sediment at the bottom soil layer and to reduce the phosphorus release from sediments of the free water surface CW for the treatment of secondary piggery wastewater effluent from a livestock wastewater treatment facility. The results revealed that the dominant phosphorus existence types at near the inlet of the CW were non-apatite phosphorus (59%) and residual phosphorus (32%) suggesting that most of the particles of the influent are made up of inorganic materials and dead cells. Sediment accumulation is important when determining the long-term maintenance requirements over the lifetime of CW. Continuous monitoring will be performed for a further assessment of the CW system and design.  相似文献   
109.
采用固定化微生物技术处理渗滤液DTRO出水中氨氮,考察不同HRT、DO以及温度对反应体系脱氮的影响。结果表明:反应器驯化周期短,能够有效地去除反应体系中的氨氮和COD,其去除率分别为98.68%、78.19%。驯化后期,反应体系中出现轮虫、累枝虫、寡毛类动物。不同水力停留时间(HRT)、溶解氧(DO)、温度影响固定化微生物脱氮效果,通过试验得出最佳工艺条件为:HRT为5 d,ρ(DO)为4.0 mg/L,温度为25~30℃。在最佳工艺条件下,出水ρ(NH_4~+-N)为13.01~19.96 mg/L,ρ(COD)为6.78~12.07 mg/L,达GB 16889—2008《垃圾填埋场污染控制标准》。  相似文献   
110.
● Properties and performance relationship of CSBT photocatalyst were investigated. ● Properties of CSBT were controlled by simply manipulating glycerol content. ● Performance was linked to semiconducting and physicochemical properties. ● CSBT (W:G ratio 9:1) had better performance with lower energy consumption. ● Phenols were reduced by 48.30% at a cost of $2.4127 per unit volume of effluent. Understanding the relationship between the properties and performance of black titanium dioxide with core-shell structure (CSBT) for environmental remediation is crucial for improving its prospects in practical applications. In this study, CSBT was synthesized using a glycerol-assisted sol-gel approach. The effect of different water-to-glycerol ratios (W:G = 1:0, 9:1, 2:1, and 1:1) on the semiconducting and physicochemical properties of CSBT was investigated. The effectiveness of CSBT in removing phenolic compounds (PHCs) from real agro-industrial wastewater was studied. The CSBT synthesized with a W:G ratio of 9:1 has optimized properties for enhanced removal of PHCs. It has a distinct core-shell structure and an appropriate amount of Ti3+ cations (11.18%), which play a crucial role in enhancing the performance of CSBT. When exposed to visible light, the CSBT performed better: 48.30% of PHCs were removed after 180 min, compared to only 21.95% for TiO2 without core-shell structure. The CSBT consumed only 45.5235 kWh/m3 of electrical energy per order of magnitude and cost $2.4127 per unit volume of treated agro-industrial wastewater. Under the conditions tested, the CSBT demonstrated exceptional stability and reusability. The CSBT showed promising results in the treatment of phenols-containing agro-industrial wastewater.  相似文献   
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