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361.
This work aims to help improve the electrostatic safety design and explosion prevention of medical facilities. In this study, the minimum ignition energies (MIEs) of Florfenicol, Tilmicosin and mixtures of Florfenicol and Tilmicosin at ratios of 1:1, 1:2, 2:1 and 1:4 were measured in a Hartmann apparatus. The results demonstrated that the MIEs for Florfenicol, Tilmicosin and mixtures of Florfenicol and Tilmicosin at ratios of 1:1, 1:2, 2:1 and 1:4 are 200, 70, 180, 150, 200 and 110 mJ, respectively. Tilmicosin is more sensitive to static electricity, which is more dangerous than the other two powders examined in this paper. Furthermore, the MIEs of the mixtures are proportional to the Florfenicol content. For all powders, the MIE first decreased with the powder mass and later reached its minimum value. In addition, scanning electron microscopy (SEM), differential scanning calorimetry (DSC) were used to investigate the morphological specificity and thermal decomposition of the powders to elucidate the parameters governing the powder explosions further.  相似文献   
362.
This paper experimentally investigated the relation between the minimum ignition energy (MIE) of magnesium powders as well as the effect of inert nitrogen (N2) on the MIE. The modified Hartmann vertical-tube apparatus and four kinds of different-sized pure magnesium powders (median particle size, D50; 28.1 μm–89.8 μm) were used in this study. The MIE of the most sensitive magnesium powder was 4 mJ, which was affected by the powder particle size (D50; 28.1 μm). The MIE of magnesium powder increased with an increase in the N2 concentration for the inerting technique. The magnesium dust explosion with an electrostatic discharge of 1000 mJ was suppressed completely at an N2 concentration range of more than 98%. The experimental data presented in this paper will be useful for preventing magnesium dust explosions generated from electrostatic discharges.  相似文献   
363.
As an important intermediate product, short-chain fatty acids(SCFAs) can be generated after hydrolysis and acidification from waste activated sludge, and then can be transformed to methane during anaerobic digestion process. In order to obtain more SCFA and methane,most studies in literatures were centered on enhancing the hydrolysis of sludge anaerobic digestion which was proved as un-efficient. Though the alkaline pretreatment in our previous study increased both the hydrolysis and acidification processes, it had a vast chemical cost which was considered uneconomical. In this paper, a low energy consumption pretreatment method, i.e. enhanced the whole three stages of the anaerobic fermentation processes at the same time, was reported, by which hydrolysis and acidification were both enhanced, and the SCFA and methane generation can be significantly improved with a small quantity of chemical input. Firstly, the effect of different pretreated temperatures and pretreatment time on sludge hydrolyzation was compared. It was found that sludge pretreated at 100°C for 60 min can achieve the maximal hydrolyzation. Further, effects of different initial p Hs on acidification of the thermal pretreated sludge were investigated and the highest SCFA was observed at initial p H 9.0with fermentation time of 6 d, the production of which was 348.63 mg COD/g VSS(6.8 times higher than the blank test) and the acetic acid was dominant acid. Then, the mechanisms for this new pretreatment significantly improving SCFA production were discussed. Finally,the effect of this low energy consumption pretreatment on methane generation was investigated.  相似文献   
364.
《环境质量管理》2018,27(4):107-113
A study was conducted at the Jaipur railway station in Jaipur, India, to give the perspectives of the actual waste management practices there. Required information was collected from the stakeholders by means of semi‐structured questionnaires, individual and group interviews, and recorded, official data regarding waste generation, collection, transportation, and disposal. Further quantitative and compositional analyses were performed by means of surveys and measurements. Field visits were made for collection of waste samples for quantification and for the study of its management. The field data were compiled and analyzed by sorting the waste into different components. It was found that 1.8 tons of solid waste is collected per day, and a considerable percentage of it comprises paper, plastic, and glass. Excluding the inerts, which are irrelevant from the point of view of energy saving and recovery potential, the average moisture content was found to be 3.38%. From the perspective of life cycle analysis, the option of composting or recycling would give savings of 28.33 gigajoules (GJ) per day over landfilling, while combustion would give savings of 2.97 GJ per day in comparison to landfilling. Analysis based on a compositional model gives a heat value of 8,157.87 kilojoules per kilogram, which amounts to 14.68 GJ of energy per day.  相似文献   
365.
Defining better methodologies of accurate predictions of the amount of monthly mean daily global and diffuse solar irradiation exposed is of utmost importance in order to determine the potential for utilizing the solar energy. This study compares and discusses the main methodologies, databases, and software that are used in estimating the solar irradiation to be used for the short- and long-term performances and feasibilities of solar energy systems, especially photovoltaic power plants in Turkey, and addresses the best one to be used to make the most accurate estimations. The comparisons are carried out between the recent methodologies developed by the authors, some models taken from the related literature that are concluded to be better, a widely used database, namely Meteonorm, and a widely used software, namely EU PVGIS. The reference data to develop the methodologies and to make comparison are provided from the State Meteorological Service of Turkey, which is the responsible body in Turkey to make measurements of solar irradiation. The comparisons are based on monthly mean daily values of global and diffuse solar irradiation and are carried out by statistical errors: mean bias error and root mean square error. The results showed that the methodology developed by the authors has shown better performances in estimating the monthly mean daily global and diffuse solar irradiation amount for Turkey.  相似文献   
366.
市政污泥是污水生物处理过程中产生的城市固废,产量巨大、污染严重."十三五"期间中国污泥无害化处理任务艰巨,常规的污泥处理处置在二次污染、占地、能耗等方面具有局限,影响了在中国的广泛应用.污泥的能源化利用是兼具污泥量削减和新附加值产生的发展方向,本文围绕当前市政污泥能源化的研究、应用领域的发展加以讨论,探讨了污泥能源利用的潜能和存在的主要问题.  相似文献   
367.
中国目前面临着严峻的节能减碳目标,在中国的总能耗中建筑能耗占了三分之一以上。然而低碳住宅在中国刚刚起步,评估体系尚不完善,建设技术方法也未成熟,低碳住宅的普及率很低。本文通过对国内现有的绿色住宅评价体系的分析,结合中国自身的国情,初步提出一套大众能够接受的低碳住宅的建设方案,为今后低碳住宅的建设评估和推广提供参考。  相似文献   
368.
某氮肥企业通过开展清洁生产审核,确定以节水、减少废水及水污染物排放量为目标,将企业供排水系统作为本轮清洁生产审核的重点,针对审核重点制定了定量的清洁生产审核目标,通过清洁生产方案的实施实现了环境效益、社会效益与经济效益的统一,为氮肥企业实施清洁生产提供了良好的借鉴。  相似文献   
369.
概述了电解铝行业清洁生产实践,分析说明企业实施清洁生产后,能够达到污染减排、节能降耗、提高企业经济效益的目的。  相似文献   
370.
建筑能耗在北京市能耗总量中是关键的一部分,推广节能建筑对于北京市的低碳发展具有重要意义。在当前北京市建筑节能工作中,采暖能耗是节能减排的重点,公共建筑能耗增加需要控制。在北京市低碳建筑推进工作中遇到了评测标准、检验方法的不完善,企业与个人的动力不足以及相关技术创新能力较低的障碍。针对这些问题,政府应从加强宣传与干预、建立低碳建筑标准规范和技术体系角度实施相应的应对措施,鼓励企业和个人选择低碳建筑,完善检测标准,健全技术创新体系,促进低碳建筑的推广。  相似文献   
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