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51.
本研究对特难处理的煤气洗涤废水,采用混凝──电化学氧化处理,可获得良好的处理效果.其COD、油、酚分别由10322mg/L、15000mg/L、1570mg/L降至289mg/L、100mg/L、0.5mg/L.去除率分别为97.2%,93.3%,99.97%. 相似文献
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微电解法处理印染废水的研究 总被引:2,自引:0,他引:2
本文对微电解法处理印染废水进行了试验研究.对含有直接、活性和硫化染料的印染废水,COD去除率可达70%以上,脱色率可达90%以上.得出了电压、停留时间与处理效率和能耗之间的关系.试验说明,微电解法处理印染废水是一种高效、低耗、经济可行的方法. 相似文献
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The formulation and scale-up of batch processes is one of the major challenges in the development of pharmaceutical dosage forms and at the same time a significant resource demanding process which is generally overlooked in environmental sustainability assessments. First, this paper proposes general trends in the experience curve of cumulative resource consumption of pharmaceutical tablet manufacturing of PREZISTA® 800 mg through wet granulation (WG) at four consecutive scales in both R&D and manufacturing environments (resp. WG1 = 1 kg/h, WG5 = 5 kg/h, WG30 = 30 kg/h and WG240 = 240 kg/h). Second, the authors aim at evaluating the environmental impact from a life cycle perspective of a daily consumption of PREZISTA® 2× 400 mg tablets versus the bioequivalent PREZISTA® 800 mg tablet which was launched to enhance patient compliance. Environmental sustainability assessment was conducted at three different system boundaries, which enables identification, localization and eventually reduction of burdens, in this case natural resource extraction. Exergy Analysis (EA) was used at process level (α) and plant level (β) while a cradle-to-gate Exergetic Life Cycle Assessment (ELCA) was conducted at the overall industrial level (γ) by means of the CEENE method (Cumulative Exergy Extraction from the Natural Environment). Life cycle stages taken into account are Active Pharmaceutical Ingredient (API) production, Drug Product (DP) production and Packaging. At process level (α), the total resource extraction for the manufacturing of one daily dose of PREZISTA® (800 mg tablet) amounted up to 0.44 MJex at the smallest scale (WG1) while this amount proved to be reduced by 58%, 79% and 83% at WG5, WG30 and WG240 respectively. Expanding the boundaries to the overall industrial level (γ) reveals that the main resource demand is at the production of the Active Pharmaceutical Ingredient (API), excipients, packaging materials and cleaning media used in DP production. At the largest scale (WG240) the use of cleaning media during DP production contributes considerably less to the total resource extraction. Overall, the effect of scale-up and learning on resource consumption during DP production showed to possess a power-law experience curve y = 2.40 * x−0.57 when shifting from WG1 (smallest lab scale) to WG240 (industrial manufacturing). Tablet dosage (2× 400 mg versus 1× 800 mg) did not significantly affect the absolute environmental burden. However, the relative contribution of resource categories did change due to the different production technology. It could be concluded that in meeting social and economic demands by launching the PREZISTA® 800 mg tablet, no trade-off in environmental burden occurred. On the long term, future research should strive to take into account R&D processes and all services related to pipeline activities taking place prior to market launch and eventually to allocate impacts to the final product. 相似文献
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臭氧氧化法处理汽车制造厂综合废水的试验研究 总被引:5,自引:0,他引:5
汽车制造厂综合废水因含有多种有机物和有毒物故可生化性差,因此有必要对其进行生物降解和脱毒处理,鉴于臭氧是一种高效氧化剂且工业废水中的许多污染物具有较好的可氧化性,研究采用臭氧对雷诺汽车制造公司法国某分厂的综合废水进行氧化处理实验,以提高其可生化性。实验结果表明臭氧氧化法可以用来改善汽车制造厂综合废水的可生化性。 相似文献
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纳米材料与TiO_2光催化废水处理技术 总被引:3,自引:0,他引:3
结合纳米技术和纳米材料的基本原理和特性 ,介绍了TiO2 光催化氧化处理废水的反应原理、TiO2 的材料使用及主要影响因素 ,指出了今后的研究方向。 相似文献
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