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11.
简要介绍了等离子体的相关概念及其处理污染物的工作原理,阐述了等离子体技术在固体废弃物治理方面的应用研究概况,并对等离子体在固体废弃物治理中的应用作了市场前景分析,说明了该技术在固体废弃物治理中具有一定的应用前景。  相似文献   
12.
 This paper deals with the present scenario of hazardous waste management practices in Thailand, and gives some insights into future prospects. Industrialization in Thailand has systematically increased the generation of hazardous waste. The total hazardous waste generated in 2001 was 1.65 million tons. It is estimated that over 300 million kg/year of hazardous waste is generated from nonindustrial, community sources (e.g., batteries, fluorescent lamps, cleansing chemicals, pesticides). No special facilities are available for handling these wastes. There are neither well-established systems for separation, storage, collection, and transportation, nor the effective enforcement of regulations related to hazardous wastes management generated from industrial or nonindustrial sectors. Therefore, because of a lack of treatment and disposal facilities, these wastes find their way into municipal wastewaters, public landfills, nearby dump sites, or waterways, raising serious environmental concern. Furthermore, Thailand does not have an integrated regulatory framework regarding the monitoring and management of hazardous materials and wastes. In addition to the absence of a national definition of hazardous wastes, limited funding has caused significant impediments to the effective management of hazardous waste. Thus, current waste management practices in Thailand present significant potential hazards to humans and the environment. The challenging issues of hazardous waste management in Thailand are not only related to a scarcity of financial resources (required for treatment and disposal facilities), but also to the fact that there has been no development of appropriate technology following the principles of waste minimization and sustainable development. A holistic approach to achieving effective hazardous waste management that integrates the efforts of all sectors, government, private, and community, is needed for the betterment of human health and the environment. Received: February 26, 2001 / Accepted: October 11, 2002  相似文献   
13.
油田废污泥治理研究   总被引:5,自引:0,他引:5  
冀东油田废水池地处环境敏感区域,对其废污泥采用固化法进行处理。在大量实验的基础上优选出了三种固化剂体系并通过多次浸泡实验、淋洗实验和静态浸出实验对固化效果进行了分析。  相似文献   
14.
从废感光胶片中回收银   总被引:2,自引:0,他引:2  
研究了以Fe3 -乙二胺四乙酸二钠-N a2S2O3体系为浸取剂从废感光胶片中回收银的方法,考察了浸出银的最佳工艺条件。实验表明,当浸取剂中FeC l3.6H2O质量浓度为35g/L、N a2S2O3.5H2O质量浓度为150g/L、pH为7、固液质量比为3∶10时,浸取剂可重复使用6次,胶片上银的浸出率可达99%以上;浸取液中的银采用硼氢化钠还原回收,粗银粉配以熔剂高温熔炼可得到纯度达99.78%的银,银回收率达96.88%,回收银后的浸取液可循环使用。  相似文献   
15.
加碱混凝沉淀工艺在处理含磷废水中的应用   总被引:1,自引:0,他引:1  
介绍了加碱混凝沉淀法处理含磷废水的工艺。采用工艺处理效果好,出水稳定,经监测废水中总磷的去除效率可达96%,实际运行证明,该工艺是切实可行的。  相似文献   
16.
Municipal solid wastes generated each year contain potentially useful and recyclable materials for composites. Simultaneously, interest is high for the use of natural fibers, such as flax (Linum usitatissimum L.), in composites thus providing cost and environmental benefits. To investigate the utility of these materials, composites containing flax fibers with recycled high density polyethylene (HDPE) were created and compared with similar products made with wood pulp, glass, and carbon fibers. Flax was either enzyme- or dew-retted to observe composite property differences between diverse levels of enzyme formulations and retting techniques. Coupling agents would strengthen binding between fibers and HDPE but in this study fibers were not modified in anyway to observe mechanical property differences between natural fiber composites. Composites with flax fibers from various retting methods, i.e., dew- vs. enzyme-retting, behaved differently; dew-retted fiber composites resulted in both lower strength and percent elongation. The lowest level of enzyme-retting and the most economical process produces composites that do not appear to differ from the highest level of enzyme-retting. Flax fibers improved the modulus of elasticity over wood pulp and HDPE alone and were less dense than glass or carbon fiber composites. Likely, differences in surface properties of the various flax fibers, while poorly defined and requiring further research, caused various interactions with the resin that influenced composite properties.  相似文献   
17.
This article reports the operational results of the effective utilization of hospital waste molten slag produced using a high-temperature melting system, and being operated at a hospital in Selangor, Malaysia. The hospital waste is incinerated and subsequently melted at 1200°C. Scanning election microscope (SEM)/EDX results showed that the slag produced after melting contained amounts of SiO2, CaO, and Al2O3 in excess of 53%, 9%, and 16%, respectively. The results from a leaching analysis on the slag produced proved that the melting process had successfully stabilized the heavy metals. The use of this slag as an alternative material to replace conventional aggregates for road construction was studied. The results from aggregate and asphalt mix tests showed that the slag produced fulfills all the requirements of an alternative aggregate. The average asphalt content, or the optimum asphalt content to be mixed with hospital waste molten slag, was found to be about 5.53%.  相似文献   
18.
城市垃圾焚烧飞灰特性及水泥固化试验研究   总被引:12,自引:5,他引:7  
试验分析了重庆市某城市垃圾焚烧发电厂飞灰的化学成分,研究了原飞灰的浸出毒性,考察了水泥对原飞灰和酸洗预处理飞灰中重金属的固化效果. 结果表明:飞灰中重金属Pb和Zn的浸出质量浓度均超过《危险废物浸出毒性鉴别标准》(GB5085.3-2007),因而被认为是危险废物,必须对之进行稳定化处理;酸洗预处理飞灰固化试块的抗压强度得到了一定程度的提高,其重金属Pb和Zn的浸出毒性均较相同配比、相同养护时间的原飞灰固化试块有明显降低;酸洗预处理飞灰固化试块抗压强度随掺入飞灰比例的降低和养护时间的延长而加大,在养护28 d时其抗压强度最高,达4.25 MPa;酸洗预处理飞灰固化试块在养护28 d时,其重金属Pb和Zn的浸出质量浓度分别比原飞灰所制固化试块降低了10.6%~59.0%和7.4%~73.7%.   相似文献   
19.
青霉素废菌丝体是一种制药行业的危险固体废弃物。利用其富含蛋白质的特点,采用微波加热水解法制备一种新型建筑石膏缓凝剂(WPM缓凝剂),同时将制备缓凝剂后的滤渣用于制备活性炭。经过实验研究,确定的缓凝剂制备适宜工艺条件为:温度80 ℃,pH值11,时间10 min。得到滤渣制备活性炭的最佳工艺条件为:炭化时间为1 h,炭化温度为300 ℃,活化剂ZnCl2浓度为20%,液固比为3.0。 本工艺较好地解决了焚烧处置、堆放填埋或直接生产活性炭等处理方法造成的环境二次污染问题以及用作动物饲料可能导致的抗生素滥用问题,实现了青霉素废菌丝体的安全、清洁利用。  相似文献   
20.
添加炭基材料对蔬菜废物好氧堆肥进程和腐熟度的影响   总被引:3,自引:0,他引:3  
以蔬菜废弃物辣椒秸秆和树叶为堆肥原料(CK),采用密闭式好氧堆肥工艺,研究了添加5%木本泥炭(T1)、5%活性炭(T2)和10%木本泥炭(T3)等炭基材料对堆肥pH、EC、CO2累积量、物料损失率、T值、C/N和发芽率指数的影响。结果显示,T2处理的pH在60 d后维持在8~9之间;EC值随着堆肥进行呈现先下降后升高再下降的趋势,最终CK、T1、T2和T3处理的EC值(mS/cm)分别降低了1.02、0.76、0.33和0.48;T2和T3处理的CO2累积量一直高于其他处理;所有处理的物料损失率均在20%以上;4个处理堆肥产品的T值分别为0.56、0.65、0.68和0.69;堆肥产品的发芽率指数分别为63.2%、69.3%、93.5%和86.1%。T值和发芽率指数显示T2和T3处理达到了腐熟阶段。结果表明,在蔬菜堆肥处理中添加炭基材料可改善堆肥产品的理化性质,加速堆肥物料的分解,有效地缩短堆肥周期和提高堆肥产品的腐熟度。  相似文献   
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