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31.
热等离子体技术销毁日本遗弃化武红弹装填物研究   总被引:3,自引:0,他引:3  
针对二战期间日本侵略军在我国遗弃的大量化学武器的危害性,进行了热等离子体技术销毁含砷毒剂的实验,旨在为评价日本遗弃化武的销毁技术选择提供技术支持.所采用的热等离子体处理固体废弃物的实验装置主要由等离子体发生器、等离子体旋转炉、二次燃烧炉、冷却器、文丘里喷淋塔和洗涤喷淋塔等设备组成.利用该装置对日本遗弃化武红弹和红简装填物二苯氰砷和二苯氯砷进行了销毁实验,并用GC-MS法对销毁产物进行分析.结果显示,经处理后未检测出二苯氯砷和二苯氰砷,根据分析方法的检出下限计算出的二苯氯砷和二苯氰砷的销毁去除率均高达99.999 9%.对熔渣进行砷的浸出毒性实验显示,浸出液中砷的质量浓度均低于0.03 mg/L,远低于我国固体废物砷的浸出毒性鉴别标准值1.5 mg/L.但是,等离子体炉在销毁含砷有机毒剂时,固砷效率很差,因此要发挥等离子体技术的优势,还必须加强固砷方法的研究.  相似文献   
32.
A plant-based bioremediation (phytoremediation) strategy has been developed and shown to be effective for the clean-up of soil contaminated by the breakdown products of the chemical warfare agent (CWA), yperite. The method involves exploiting the plant growth hormone, indole-3-acetic acid (IAA), to intensify the phytoremediation. For determination of the yperite breakdown products, gas chromatography is used. Soil and plant samples were analysed with a gas chromatograph fitted with an atomic emission detector. The method of standard-free determination was employed to identify sulphur-containing substances (SCSs). A series of soil tests was conducted, which showed that the level of SCSs decreased 4, 8, and more than 20-fold compared with that found in contaminated soil. This decrease was dependent upon the IAA concentrations used for plant treatment. The treated plants accumulated 2.7 to 2.9-fold larger amounts of the SCSs than did the untreated plants. Owing to its simplicity, environmental safety and inexpensiveness, the method can be recommended for the restoration of soil fertility in areas of storage and destruction of blister CWAs.  相似文献   
33.
Mining is essentially a destructive developmental activity, where ecology suffers at the altar of economy. Unfortunately, in most regions of the Earth, the underground geological resources are superimposed by biological resources (forests). This is particularly evident in India. Hence mining operations necessarily involve deforestation, habitat destruction, biodiversity erosion and destruction of geological records which contain information about past biodiversity. Extraction and the processing of ores and minerals also lead to widespread environmental pollution.However, mankind cannot afford to give up the underground geological resources which are the basic raw materials for development. An unspoiled nature can provide ecological security to people but cannot bring economic prosperity. Scientific mining operations accompanied by ecological restoration and regeneration of mined wastelands and judicious use of geological resources, with search for eco-friendly substitutes and alternatives must provide the answer.A case study from the Bijolia quarrying area in Rajasthan, India, provides some sensational revelations of the impact of mining on the human ecosystem.  相似文献   
34.
The destruction of toxic organic wastewaters from munitions demilitarization and complex industrial chemical clearly becomes an overwhelming problem if left to conventional treatment processes. Two options, incineration and supercritical water oxidation (SCWO), exist for the complete destruction of toxic organic wastewaters. Incinerator has associated problems such as very high cost and public resentment; on the other hand, SCWO has proved to be a very promising method for the treatment of many different wastewaters with extremely efficient organic waste destruction 99.99% with none of the emissions associated with incineration. In this review, the concepts of SCWO, result and present perspectives of application, and industrial status of SCWO are critically examined and discussed.  相似文献   
35.
This paper presents the performance of the solid-oxide fuel cell/gas turbine hybrid power generation system with heat recovery waste unit based on the energy and exergy analyses. The effect of air inlet temperature and air/fuel ratio on exergy destruction and network output is determined. For the numerical calculations, air inlet temperature and air fuel ratio are increased from 273 to 373 K and from 40 to 60, respectively. The results of the numerical calculations bring out that total exergy destruction quantity increases with the increase of air inlet temperature and air/fuel ratio. Furthermore, the maximum system overall first and second law efficiencies are obtained in the cases of air inlet temperature and air/fuel ratio equal to 273 K and 60, respectively, and these values are 62.09% and 54.91%.  相似文献   
36.
脉冲电晕放电降解CH2Cl2的初步研究   总被引:13,自引:0,他引:13  
郑雷  姜玄珍 《环境科学》1997,18(5):62-64
对高压脉冲电晕放电降解CH2Cl2进行初步研究,比较了正负脉冲电晕降解的活性,正脉冲电晕优于负脉冲电晕。探讨了脉冲形成电容Cp之值及反应器的电晕线材料对降解反应活性的影响。为进一步提高室温下CH2Cl2的降解,在反应器中加入BaTiO3为催化剂,在高压脉冲电场下,BaTiO3受激产生局部电晕,增强了电晕放电流性,提高了反应活性,CH2Cl2的转化率达90%以上。  相似文献   
37.
为给冷冻取芯过程中瓦斯解吸模拟试验提供依据,依托自主研制的取芯管管壁温度自动采集装置,研究不同取芯深度及煤体破坏类型下取芯过程管壁温度变化特性。结果表明:在原生结构煤中取芯时,取芯过程管壁温度变化主要分为3个阶段,即稳定不变阶段、快速上升阶段与缓慢下降阶段,分别对应进钻、取芯与退钻过程;在构造煤中取芯时,管壁温度变化可分为缓慢上升阶段、快速上升阶段与缓慢下降阶段,分别对应进钻、取芯与退钻过程。在构造煤中,取芯深度越大,取芯管管壁升温幅度越大,取样过程中管壁温度峰值越大,且在取芯过程中,取芯管管壁温度传感器B1,B2,B3存在温升滞后现象;同一取芯深度,煤体破碎程度越大,取芯管管壁升温幅度越小,取芯结束时取芯管管壁温度越低。  相似文献   
38.
Abstract

A high‐intensity short‐wavelength UV light system was studied for its ability to degrade the pesticides carbofuran, fenamiphos sulfoxide (nemacur sulfoxide), and propazine in aqueous solutions. Half‐lives, rate constants, and breakdown products were determined for all chemicals. The presence of hydrogen peroxide, an oxidant and potential source of hydroxyl radicals, had no effect on the rate of breakdown of any of the chemicals investigated. Short‐wavelength UV light appears to be solely responsible for the observed pesticide breakdown. The breakdown of all three pesticides followed first order kinetics. Carbofuran, nemacur sulfoxide, and propazine had half lives of 3.9, 1.1, and 3.9 minutes, respectively. Breakdown product analysis was performed using capillary gas chromatography/mass spectrometry.  相似文献   
39.
非典型环境案件法律适用问题初探   总被引:1,自引:0,他引:1  
实践中一些非典型环境案件的法律适用问题存在争议。对此,必须明确:生态破坏侵权属于一般侵权行为,应当适用《侵权责任法》对一般侵权行为的规定;家庭生活污染和劳动环境污染属于环境污染,受害者在法律适用上有选择权;室内装修污染不属于环境污染,其责任属于产品责任,不适用环境污染侵权规则。  相似文献   
40.
Wastewater produced from a metal plating is a major environmental problem. Industrial auditing revealed that the main source of pollution mainly originated from rinsing water. The characterization of final effluent showed that it is highly contaminated with hazardous heavy metals and cyanide. The concentration of copper, hexavalent chromium, nickel, and cyanide in the rinsing water of metal plating department was 14.8, 40.9, 13.3, and 19 mg/l, respectively. The concentration of cyanide and zinc from the galvanizing department reached 60 and 80 mg/l. The remediation scheme included the application of in-plant control measures via changing the rinsing process followed by the destruction of cyanide and reduction of hexavalent chromium bearing wastes. The pretreated wastes were then mixed with other industrial wastes prior to a combined chemical coagulation-sedimentation using lime and/or lime in combination with ferric chloride. The results indicated that, after applying the waste minimization measures alone at the source, prior to final treatment of industrial waste, removal rates of cyanide, copper, nickel, and chromium concentrations were 23.2%, 14.9%, 32.3%, and 55.3%, respectively in the rinse water from metal plating department. Furthermore, the removal rates of cyanide and zinc in the galvanizing department reached 59.7% and 24.3. The integrated control measures and treatment scheme led to more than 99% removal of copper, nickel, chromium, and zinc, while the complete removal of cyanide was achieved in the final effluent.  相似文献   
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