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1.
水泥负载TiO2光催化降解染料水溶液的研究 总被引:18,自引:0,他引:18
研究了以TiO2为催化剂,且将TiO2涂布在模拟工业水处理浅池的水泥质池底表面,以直管高压汞灯为光源,对有机染料酸性玫瑰红B和晒化绿B进行光催化降解的可行性。结果表明,在实验条件下,本系统对以上染料有显著的光降解作用,浓度为25mg/L的上述二种染料溶液,经30min光照,其降解率分别达88.2%,此外,还探讨了染料浓度,染料体积、染料溶液PH值等因素对光降解的影响。 相似文献
2.
水泥行业二氧化碳排放统计——以贵阳市为例 总被引:1,自引:1,他引:0
本文从水泥行业二氧化碳的排放统计出发,研究二氧化碳排放的重要影响因素、二氧化碳排放的指标体系,从而得出一套水泥行业二氧化碳排放统计的核算方法.以贵阳市为例,从三种不同活动水平的统计数据对水泥行业生产工艺过程中产生的CO2排放量进行估算比较,验证统计核算方法的有效性,为贵阳市乃至全国水泥行业CO2的减排提供一个可行的科学依据. 相似文献
3.
Lei Zheng Xingbao Gao Wei Wang Zifu Li Lingling Zhang Shikun Cheng 《Frontiers of Environmental Science & Engineering》2020,14(1):5
4.
根据我国水泥工业的现状及存在的主要问题,分析了水泥行业清洁生产的内容、指标,提出了推行水泥行业的清洁生产,不仅可以加快产业结构调整和新型干法水泥的发展,同时也是保护环境的重要途径。 相似文献
5.
Amit Kapur Hendrik G. van Oss Gregory Keoleian Stephen E. Kesler Alissa Kendall 《Journal of Material Cycles and Waste Management》2009,11(2):155-165
A country-level stock and flow model for cement, an important construction material, was developed based on a material flow
analysis framework. Using this model, the contemporary cement cycle of the United States was constructed by analyzing production,
import, and export data for different stages of the cement cycle. The United States currently supplies approximately 80% of
its cement consumption through domestic production and the rest is imported. The average annual net addition of in-use new
cement stock over the period 2000–2004 was approximately 83 million metric tons and amounts to 2.3 tons per capita of concrete.
Nonfuel carbon dioxide emissions (42 million metric tons per year) from the calcination phase of cement manufacture account
for 62% of the total 68 million tons per year of cement production residues. The end-of-life cement discards are estimated
to be 33 million metric tons per year, of which between 30% and 80% is recycled. A significant portion of the infrastructure
in the United States is reaching the end of its useful life and will need to be replaced or rehabilitated; this could require
far more cement than might be expected from economic forecasts of demand for cement. 相似文献
6.
Solid waste management is one of the major environmental concerns around the world. Cement kiln dust (KKD), also known as by-pass dust, is a by-product of cement manufacturing. The environmental concerns related to Portland cement production, emission and disposal of CKD is becoming progressively significant. CKD is fine-grained, particulate material chiefly composed of oxidized, anhydrous, micron-sized particles collected from electrostatic precipitators during the high temperature production of clinker. Cement kiln dust so generated is partly reused in cement plant and landfilled. The beneficial uses of CKD are in highway uses, soil stabilization, use in cement mortar/concrete, CLSM, etc.Studies have shown that CKD could be used in making paste/mortar/concrete. This paper presents an overview of some of the research published on the use of CKD in cement paste/mortar/concrete. Effect of CKD on the cement paste/mortar/concrete properties like compressive strength, tensile strength properties (splitting tensile strength, flexural strength and toughness), durability (Freeze–thaw), hydration, setting time, sorptivity, electrical conductivity are presented. Use of CKD in making controlled low-strength materials (CLSM), asphalt concrete, as soil stabilizer, and leachate analysis are also discussed in this paper. 相似文献
7.
韶钢水泥厂在进行干法生产时,会产生大量的粉尘,严重影响生产和厂区周围居民的正常生活,危害严重。通过一些综合防治措施,不仅保护了环境,而且还可回收数量可观的有价原料、成品或半成品。 相似文献
8.
9.
以浸出毒性、表面浸出率、抗日晒能力和抗压强度为指标考察了纤维改性硫酸亚铁还原铬渣水泥固化体的性能。实验结果表明:纤维改性硫酸亚铁还原铬渣水泥固化体养护7d和28d后的浸出毒性均低于国家标准、抗压强度均大于10MPa,可以做最终处置或进行综合利用;与普通铬渣水泥固化体相比,纤维改性硫酸亚铁还原铬渣水泥固化体在加入植物纤维为0.8g时的处理效果最好,浸出毒性、表面浸出率分别降低了76.I%和76.8%;抗日晒能力、抗压强度分别提高了36.4%和52.1%。 相似文献
10.
Carbon dioxide is the major greenhouse gas responsible for global warming. Man-made CO2 emissions contribute approximately 63% of greenhouse gases and the cement industry is responsible for approximately 5% of CO2 emissions emitting nearly 900 kg of CO2 per 1000 kg of cement. CO2 from a cement plant was captured and purified to 98% using the monoethanolamine (MEA) based absorption process. The capture cost was $51 per tonne of CO2 captured, representing approximately 90% of total cost. Steam was the main operating cost representing 39% of the total capture cost. Switching from coal to natural gas reduces CO2 emissions by about 18%. At normal load, about 36 MW of waste heat is available for recovery to satisfy the parasitic heat requirements of MEA process; however, it is very difficult to recover. 相似文献