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1.
四氯化碳的生产与应用及其淘汰策略   总被引:2,自引:0,他引:2  
四氯化碳是一种消耗臭氧层物质,其生产和消费都面临着严峻的淘汰形势。简要叙述了四氯化碳的生产技术,以四氯化碳为原料生产大宗化学品和精细化学品的转化技术,四氯化碳作为化工助剂在我国的应用情况以及相应的淘汰方法和技术进展。  相似文献   

2.
正2007年7月1日,我国全面停止氯氟烃(CFCs)、哈龙的生产和进口,提前两年半实现《关于消耗臭氧层物质的蒙特利尔议定书》的履约目标。2008年底,我国共实施了400多个多边基金项目和17个行业计划,淘汰的消耗臭氧层物质(ODS)涵盖5大类12种,受益企业3000多家,获得赠款8亿多美元。2010年1月1日,我国停止了四氯化碳(CTC)和含三氯乙烷(TCA)清洗溶剂的生产和使用。于2010年6月1日开始实施《消耗臭氧层物质管理条例》。截至目前,我国共在生产领域淘汰ODS超过10万ODP t(ODP:消耗臭氧潜能值),在消费领域淘汰11万ODP t,淘汰量占发展中国家的50%。  相似文献   

3.
正在过去的20多年里,世界银行与中国合作逐步淘汰消耗臭氧层物质(以下简称ODS)。中国第4批消耗臭氧层物质项目(以下简称ODS-IV)(1997—2013年)帮助中国全面淘汰了10万t以上ODS生产量和11万t ODS消费量,确保中国提前完成了《关于消耗臭氧层物质的蒙特利尔议定书》的履约义务,为缓解气候变化做出了巨大贡献。挑战随着快速的工业化和城市化进程,中国在1986-1997年期间ODS消费量每年增长12%以上,生产ODS约95 800t,消费约87 600 t,成为ODS的最大生产国和消费国。氯氟烃(CFC-11、CFC-12等)、四氯化碳(CTC)和哈龙1211是中国生产和消费的主  相似文献   

4.
随着科学技术和工农业生产的发展,化学品的品种和使用量迅速增加.与此同时,大量化学品进入环境造成污染,严重影响人体健康和生态环境.根据美国化学文摘社的统计,目前世界上已知的化学品已达几百万种,常用的超过6万多种.化学品的年产量达数亿吨,而且每年还有大量新的化学品投入市场.  相似文献   

5.
某市南郊水源地土壤四氯化碳污染特征   总被引:1,自引:0,他引:1  
含四氯化碳废水在排放的过程中沿排污渠侧壁和底部的渗漏对土壤造成污染.在对某市南郊受四氯化碳污染的水源地进行钻孔检测的过程中发现,土壤四氯化碳污染的特征:靠近排污沟的钻孔均检测出四氯化碳,而远离排污沟的钻孔则未检出;四氯化碳的垂向分布存在不连续性,且受降雨影响较大;大部分钻孔浅层土壤中基本未检测到四氯化碳,而在3 m以下的土层和基岩中检测到四氯化碳;抽水井的抽水行为导致抽水井附近土壤中四氯化碳明显高于其他钻孔点位检测结果.  相似文献   

6.
四氯化碳的生产和使用,给人类带来了较大危害.为此,采用纳米铁粉这一新方法对其进行脱氯处理.试验以纳米级铁粉对四氯化碳的脱氯率为考察指标,选用L25(56)正交试验方案,考察了降解介质的初始pH值、纳米铁粉的质量、降解温度、摇床转速和脱氯时间5个影响因素.结果表明,pH值这一因素有极显著影响;在得出的纳米铁粉对四氯化碳脱氯的最佳工艺条件下,获得了99.5%的脱氯率,为有机氯化物脱氯开辟了一条新途径.  相似文献   

7.
“碳中和”目标下,废弃生物质制备可再生化学品成为落实碳中和、减污降碳等国家重大战略需求的重要技术之一。其中,微生物碳链延长技术生产中链脂肪酸(MCFAs)是高值化回收废弃碳源的一个重要方向。MCFAs作为生物基化学品新星,兼具经济、环保与实用性优势,可部分地替代化石原料合成环保型燃料与化学品,降低传统化石资源依赖与碳排放,助力经济社会发展绿色转型。为此,系统梳理了碳链延长技术的反应机理、功能菌群,以及MCFAs生产应用存在的关键瓶颈和研究进展,以期为相关领域研究者开展创新研究、突破技术瓶颈提供参考。  相似文献   

8.
中国淘汰滴滴涕的环境影响分析   总被引:8,自引:2,他引:8  
目前中国仍在生产滴滴涕(DDT),并以其为原料生产三氯杀螨醇作为杀虫剂使用.为评价淘汰DDT对于中国生态环境的影响,采用情景分析的方法,估算了在采取不同的淘汰策略下土壤中DDT残留浓度的变化,以此来评价淘汰DDT的环境影响.与基线情景相比,三种控制情景下DDT的累积生产量都有不同程度的减少,相应土壤中的残留浓度也有不同的下降,且淘汰的速度越快土壤中DDT浓度下降的幅度越大.  相似文献   

9.
自然衰减监控技术在农药污染场地的实践应用较少,作用机制尚不明确.为此,以农药污染场地监控自然衰减实际工程案例为基础,对地下水中氯代甲烷烃的自然衰减能力、作用机制及降解时间进行了分析.Mann-Kendall趋势检验结果表明,作为污染源的MW1-17点位地下水中的四氯化碳和氯仿随时间呈现下降趋势,在4 a内降解率分别在95%和94%以上.经计算,四氯化碳和氯仿的降解速率常数分别为0.002 d-1和0.001 3 d-1.随着时间的延长,有充足的证据表明MW1-17点位存在微生物降解.四氯化碳与NO3-、DOC的相关性分析结果表明,MW1-17的四氯化碳在2016年8月-2018年12月期间以微生物共代谢降解为主,而在2018年12月以后以还原脱氯降解为主.微生物多样性的结果也表明,从2016年到2021年,地下水中微生物群落结构发生变化,逐渐向厌氧型转化,还原脱氯功能细菌丰度有所增加.  相似文献   

10.
一、环境优先污染物的概念随着化学工业的迅猛发展和化学品的大量使用,越来越多的化学品已经或正在广泛地进入环境的各个领域。目前,美国《化学文摘》登记的化学品已逾700万种,并以每年1000种的速度递增。据专家测算,进入环境的化学品约有十万种,其中潜在有毒化学品约1万种。我国生产的化学品有3万余种,浙江省生产的化学品在2千种以上。化学品在给人们带来便利和利益的同时,其中的有毒有害物质造成的污染也给环境、生态和人体健康带来了危害和潜在威胁。而现有的作为了解、控制环境中这些  相似文献   

11.
Carbon tetrachloride (CTC), tetrachloroethylene (PCE), trichloroethylene (TCE) and 1,1,1-trichloroethane (TCA) were four of the most widely used cleaning and degreasing solvents in the United States. These compounds were also used in a wide variety of other applications. The history of the production and use of these four compounds is linked to the development and growth of the United States' synthetic organic chemical industry, and historical events that affected the development and use of chlorinated solvents in general. Part 1 of this article includes a discussion of the historical background common to each of the four solvents, followed by discussion on the history of CTC and PCE. In the early years of the 20th century, CTC became the first of the four solvents to come into widespread use. CTC was used as a replacement for petroleum distillates in the dry-cleaning industry, but was later replaced by PCE. In the 1990s, CTC was phased out under the Montreal Protocol due to its role in stratospheric ozone depletion.  相似文献   

12.
Carbon tetrachloride (CTC), tetrachloroethylene (PCE), trichloroethylene (TCE) and 1,1,1-trichloroethane (TCA) were four of the most widely used cleaning and degreasing solvents in the United States. These compounds were also used in a wide variety of other applications. The history of the production and use of these four compounds is linked to the development and growth of the United States' synthetic organic chemical industry, and historical events that affected the development and use of chlorinated solvents in general. Part 1 of this article includes a discussion of the historical background common to each of the four solvents, followed by discussion on the history of CTC and PCE. In the early years of the 20th century, CTC became the first of the four solvents to come into widespread use. CTC was used as a replacement for petroleum distillates in the dry-cleaning industry, but was later replaced by PCE. In the 1990s, CTC was phased out under the Montreal Protocol due to its role in stratospheric ozone depletion.  相似文献   

13.
Background Different types of indicators have been developed to describe the impact of chemicals on society and environment. Due to the high number of substances and their different types of use, most of these indicators are directed to specific areas of interest – regarding workplace safety, environmental health or consumer health. They address a specific subset of chemicals and can be used for monitoring enterprise-specific, national or international management measures. Main Features A survey of existing indicators for chemicals has shown that indicators already exist for a remarkable number of problem fields. As soon as the release and the environmental fate of chemicals are taken into account, the complexity of the approaches increases considerably. The distinction between indicators for drivers, pressures, state, impacts and responses, as proposed by the European Environmental Agency, supports the identification of proper indicators for a specific type of problem. Discussion and Conclusions. No single indicator exists which is able to cover the whole range of chemicals and their applications. Several indicator approaches cover at least a subset of the most relevant substances. If they are intended to be used for European monitoring, robust data must be provided by EU Member States. Chemicals in enterprises (ancillary inputs as well as process chemicals) are an important element of in-plant material flow management – in terms of occupational safety and health as well as environmental protection. Existing indicators for hazardous chemicals can be a valuable tool for process and product refinement regarding hazardous chemicals, especially for enterprises. Outlook Indicators for production and impact of chemicals, as well as policy performance indicators, are essential elements in order to monitor the management of chemicals. They have to be established for the national and for the EU level.  相似文献   

14.
The land application of aged chortetracycle (CTC) and tylosin-containing swine manure was investigated to determine associated impacts to soil microbial respiration, nutrient (phosphorus, ammonium, nitrate) cycling, and soil microbial community structure under laboratory conditions. Two silty clay loam soils common to southeastern South Dakota were used. Aerobic soil respiration results using batch reactors containing a soil-manure mixture showed that interactions between soil, native soil microbial populations, and antimicrobials influenced CO(2) generation. The aged tylosin treatment resulted in the greatest degree of CO(2) inhibition, while the aged CTC treatment was similar to the no-antimicrobial treatment. For soil columns in which manure was applied at a one-time agronomic loading rate, there was no significant difference in soil-P behavior between either aged CTC or tylosin and the no-antimicrobial treatment. For soil-nitrogen (ammonium and nitrate), the aged CTC treatment resulted in rapid ammonium accumulation at the deeper 40cm soil column depth, while nitrate production was minimal. The aged CTC treatment microbial community structure was different than the no-antimicrobial treatment, where amines/amide and carbohydrate chemical guilds utilization profile were low. The aged tylosin treatment also resulted in ammonium accumulation at 40 cm column depth, however nitrate accumulation also occurred concurrently at 10 cm. The microbial community structure for the aged tylosin was also significantly different than the no-antimicrobial treatment, with a higher degree of amines/amides and carbohydrate chemical guild utilization compared to the no-antimicrobial treatment. Study results suggest that land application of CTC and tylosin-containing manure appears to fundamentally change microbial-mediated nitrogen behavior within soil A horizons.  相似文献   

15.
The land application of aged chortetracycle (CTC) and tylosin-containing swine manure was investigated to determine associated impacts to soil microbial respiration, nutrient (phosphorus, ammonium, nitrate) cycling, and soil microbial community structure under laboratory conditions. Two silty clay loam soils common to southeastern South Dakota were used. Aerobic soil respiration results using batch reactors containing a soil-manure mixture showed that interactions between soil, native soil microbial populations, and antimicrobials influenced CO2 generation. The aged tylosin treatment resulted in the greatest degree of CO2 inhibition, while the aged CTC treatment was similar to the no-antimicrobial treatment. For soil columns in which manure was applied at a one-time agronomic loading rate, there was no significant difference in soil-P behavior between either aged CTC or tylosin and the no-antimicrobial treatment. For soil-nitrogen (ammonium and nitrate), the aged CTC treatment resulted in rapid ammonium accumulation at the deeper 40cm soil column depth, while nitrate production was minimal. The aged CTC treatment microbial community structure was different than the no-antimicrobial treatment, where amines/amide and carbohydrate chemical guilds utilization profile were low. The aged tylosin treatment also resulted in ammonium accumulation at 40 cm column depth, however nitrate accumulation also occurred concurrently at 10 cm. The microbial community structure for the aged tylosin was also significantly different than the no-antimicrobial treatment, with a higher degree of amines/amides and carbohydrate chemical guild utilization compared to the no-antimicrobial treatment. Study results suggest that land application of CTC and tylosin-containing manure appears to fundamentally change microbial-mediated nitrogen behavior within soil A horizons.  相似文献   

16.
Li  Dan  Bi  Ran  Chen  Hongxing  Mu  Lei  Zhang  Lina  Chen  Qin  Xie  Haibo  Luo  Yongju  Xie  Lingtian 《Environmental science and pollution research international》2017,24(30):23872-23879
Environmental Science and Pollution Research - Risk assessing newly synthesized chemicals prior to their applications is extremely important, if we want to ensure substitution of risky chemicals...  相似文献   

17.

Background, goals, and scope

In response to increasing concerns regarding the potential of chemicals to interact with the endocrine system of humans and wildlife, various national and international programs have been initiated with the aim to develop new guidelines for the screening and testing of these chemicals in vertebrates. Here, we report on the validation of an in vitro assay, the H295R steroidogenesis assay, to detect chemicals with the potential to inhibit or induce the production of the sex steroid hormones testosterone (T) and 17??-estradiol (E2) in preparation for the development of an Organization for Economic Cooperation and Development (OECD) test guideline.

Methods

A previously optimized and pre-validated protocol was used to assess the potential of 28 chemicals of diverse structures and properties to validate the H295R steroidogenesis assay. These chemicals are comprised of known endocrine-active chemicals and ??negative?? chemicals that were not expected to have effects on the targeted endpoints, as well as a number of test chemicals with unknown modes of action at the level of the steroidogenic pathway. A total of seven laboratories from seven countries participated in this effort. In addition to effects on hormone production, confounding factors, such as cell viability and possible direct interference of test substances with antibody-based hormone detection assays, were assessed. Prior to and during the conduct of exposure experiments, each laboratory had to demonstrate that they were able to conduct the assay within the margin of predefined performance criteria.

Results

With a few exceptions, all laboratories met the key quality performance parameters, and only 2% and 7% of all experiments for T and E2, respectively, were excluded due to exceedance of these parameters. Of the 28 chemicals analyzed, 13 and 14 tested affected production of T and E2, respectively, while 11 and 8 did not result in significant effects on T and E2 production, respectively. Four and six chemicals produced ambiguous results for effects on T and E2 production, respectively. However, four of these cases each for T and E2 were associated with only one laboratory after a personnel change occurred. Significant interference of test chemicals with some of the antibody-based hormone detection systems occurred for four chemicals. Only one of these chemicals, however, significantly affected the ability of the detection system to categorize the chemical as affecting E2 or T production.

Discussion and conclusions

With one exception, the H295R steroidogenesis assay protocol successfully identified the majority of chemicals with known and unknown modes of interaction as inducers or inhibitors of T and E2 production. Thus it can be considered a reliable screen for chemicals that can alter the production of sex steroid hormones. One of the remaining limitations associated with the H295R steroidogenesis assay protocol is the relatively small basal production of E2 and its effect on quantifying the decreased production of this hormone with regard to the identification of weak inhibitors. An initial comparison of the data produced in this study with those from in vivo studies from the literature demonstrated the potential of the H295R steroidogenesis assay to identify chemicals affecting hormone homeostasis in whole organisms. Particularly promising was the lack of any false negatives during the validation and the very low number of false positives (1 out of 28 chemicals for each T and E2).

Perspectives

Based on the results obtained during this validation study and the accordingly revised test protocols, an OECD draft test guideline was developed and submitted to the OECD working group of the national coordinators of the test guidelines program (WNT) for comments in December 2009.  相似文献   

18.
The environmental characteristics of Waste Foundry Sands (WFS), including chemicals in WFS and its leachate, are essential in understanding the environmental impact, rational disposal and potential development of beneficial applications of this solid industrial waste. This paper presents an assessment of broad-spectrum chemicals (metallic, non-metallic and organic chemicals) in aspects of their statistics (mean, median and the 95th percentile) in dry-weight WFS and WFS leachates based on laboratory measurements of 594 WFS samples from 123 foundry facilities in the USA. Results indicate that WFS is basically not hazardous except a risk associated with WFS from copper-based foundry facilities. Leachability of metallic chemicals varies among investigated WFS. A clear delineation between different leaching protocols is implicated.  相似文献   

19.

The health and environmental consciousness of waste tires has increased tremendously over the years. This has motivated efforts to develop secondary applications that will utilize tire when they reach the end of their life cycle and limit their disposal in landfills. Among the applications of waste tires which are discussed in this review, the use of rubber crumbs in artificial turf fields has gained worldwide attention and is increasing annually. However, there are serious concerns regarding chemicals that are used in the manufacturing process of tires, which ultimately end up in rubber crumbs. Chemicals such as polycyclic aromatic hydrocarbons (PAH) and heavy metals which are found in rubber crumbs have been identified as harmful to human health and the environment. This review paper is intended to highlight some of the methods which have been used to manage waste tire; it also looks at chemicals/materials used in tire compounding which are identified as possible carcinogenic.

  相似文献   

20.
BACKGROUND, AIM AND SCOPE: With respect to the enormous increase of chemical production in the last decades and the tens of thousands of individual chemicals on the market, the permanent improvement of chemical management is a permanent target to achieve the goals of sustainable consumption and production set by the WSSD in Johannesburg 2002. MAIN FEATURES: Several approaches exist to describe sustainability of chemistry. However, commonly agreed criteria are still missing. There is no doubt that products of modern chemistry help to achieve important goals of sustainability and that significant improvements have occurred regarding direct releases from production sites, but several facts demonstrate that chemistry is far from being sustainable. Still too many chemicals exhibit hazardous characteristics and pose a risk to health and environment. Too many resources are needed to produce chemicals and finished products. RESULTS AND CONCLUSION: Therefore, a strategy for sustainability of chemistry should be developed which comprises the following main elements: 1. Sustainable chemicals: sustainable chemical management includes a regulatory framework which makes no difference between new and existing chemicals, contains efficient information flow through the supply chain which allows users to handle chemicals safely and offers an authorisation procedure and/or an efficient restriction procedure for substances of high concern. This regulatory scheme should promote the development of inherently safe chemicals. 2. Sustainable chemical production: Sustainable chemical production needs the development and implementation of emerging alternative techniques like selective catalysis, biotechnology in order to release less CO2 and less toxic by-products, to save energy and to achieve higher yields. Information exchange on best available techniques (BAT) and best environmental practices (BEP) may help to promote changes towards more sustainability. 3. Sustainable products: An integrated product policy which provides a framework for sustainable products promotes the development of products with a long-term use phase, low resource demand in production and use, low emission of hazardous substances and properties suitable for reuse and recycling. This may be promoted by eco-labelling, chemical leasing concepts and extended information measures to enhance the demand of consumers and various actors in the supply chain for sustainable products. RECOMMENDATION AND PERSPECTIVE: Important tools for the promotion of sustainable chemistry are the abolition of barriers for innovation in legislation and within the chemical industry, more transparency for all users of chemical products, a new focus on sustainability in education and research, and a new way of thinking in terms of sustainability.  相似文献   

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