随着工业化和城市化的发展,工业废水和城市污水成为环境水体的主要污染源.发达国家在实施基于BAT(the best applicable technology,最佳可行技术)的排放政策后,针对成分复杂的有毒排放废水,以排水生物毒性测试为基础,分别建立了WET(whol...随着工业化和城市化的发展,工业废水和城市污水成为环境水体的主要污染源.发达国家在实施基于BAT(the best applicable technology,最佳可行技术)的排放政策后,针对成分复杂的有毒排放废水,以排水生物毒性测试为基础,分别建立了WET(whole effluent toxicity,排水综合毒性)评价技术体系,将生态毒理学测试和毒性指标应用于排放废水的管理.各国和区域组织选用的排放废水生物毒性测试方法存在较大差异:美国、加拿大和澳大利亚国土面积大、气候类型复杂、生物物种差异大,开发了许多本土生物的毒性测试方法;德国、OSPAR(欧洲大陆国家组织《保护东北大西洋海洋环境公约》15国)和COHIBA(波罗的海有害物质控制项目8国)则重视开发标准受试生物的测试方法,并且开发了遗传毒性和内分泌干扰性等新型测试方法,便于不同国家采用统一测试方法和排放限值;英国和新西兰是岛国,河流较短,更加关注海岸带生态系统.我国从20世纪80年代开始开展排水生物毒性测试技术研究,相关测试标准门类和数量不足,应充分借鉴发达国家的经验,分步、分区建立排水综合毒性测试标准体系.展开更多
Cemented paste backfill (CPB) is gaining popularity in many underground mines worldwide. Sufficient water is added into CPB to make a flowable material for pipe transportation. Barricades are built near the drawpoin...Cemented paste backfill (CPB) is gaining popularity in many underground mines worldwide. Sufficient water is added into CPB to make a flowable material for pipe transportation. Barricades are built near the drawpoints to prevent in-rush of the fill slurry. To avoid barricade failures resulting from excessive backfill pressures, backfilling is typically performed with a plug pour followed by a final pour. The interval between the two pours should be shortened or removed to increase mining productivity and avoid pipe clogging. Recently, Li proposed to apply wick drains in backfilled stopes to promote drainage and consolidation. The preliminary simulations by considering an instantaneous filling indicated that the drainage of CPB can be significantly accelerated by using wick drains. Barricade was not considered. Here, some new numerical modeUings are presented with more representative filling sequences, stope geometry, and different draining configurations. The results illustrate that the stope can be backfilled continuously by using wick drains.展开更多
With the rapid development of construction engineering and municipal engineering in recent years, water supply and drainage technology has gradually matured. Building water supply and drainage design contains the desi...With the rapid development of construction engineering and municipal engineering in recent years, water supply and drainage technology has gradually matured. Building water supply and drainage design contains the design of rainwater drainage, sewage drainage design, water supply design and fire water supply design. At present, the research on the life cycle assessment of urban drainage system is mainly focused on the sewage treatment plant, therefore in this paper we introduce the theoretical basis of life cycle assessment. In the era of information network, building information model(BIM) technology is widely applied to the design of building water supply and drainage, which and effectively improves the design effi ciency, and makes up for the traditional water supply and drainage design of a lot of problems. In this paper, we analyze the development trend of water supply and drainage engineering based on life cycle assessment and building information model.展开更多
基金the Natural Sciences and Engineering Research Council of Canada (RGPIN)the Institut de recherche Robert-Sauvé en santé et en sécurité du travail (IRSST)the industrial partners of the Research Institute on Mines and the Environment (RIME UQAT-Polytechnique)
文摘Cemented paste backfill (CPB) is gaining popularity in many underground mines worldwide. Sufficient water is added into CPB to make a flowable material for pipe transportation. Barricades are built near the drawpoints to prevent in-rush of the fill slurry. To avoid barricade failures resulting from excessive backfill pressures, backfilling is typically performed with a plug pour followed by a final pour. The interval between the two pours should be shortened or removed to increase mining productivity and avoid pipe clogging. Recently, Li proposed to apply wick drains in backfilled stopes to promote drainage and consolidation. The preliminary simulations by considering an instantaneous filling indicated that the drainage of CPB can be significantly accelerated by using wick drains. Barricade was not considered. Here, some new numerical modeUings are presented with more representative filling sequences, stope geometry, and different draining configurations. The results illustrate that the stope can be backfilled continuously by using wick drains.
文摘With the rapid development of construction engineering and municipal engineering in recent years, water supply and drainage technology has gradually matured. Building water supply and drainage design contains the design of rainwater drainage, sewage drainage design, water supply design and fire water supply design. At present, the research on the life cycle assessment of urban drainage system is mainly focused on the sewage treatment plant, therefore in this paper we introduce the theoretical basis of life cycle assessment. In the era of information network, building information model(BIM) technology is widely applied to the design of building water supply and drainage, which and effectively improves the design effi ciency, and makes up for the traditional water supply and drainage design of a lot of problems. In this paper, we analyze the development trend of water supply and drainage engineering based on life cycle assessment and building information model.