期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Advanced Phosphorus Removal and Needs for Recovery by Enhanced Filtration of Municipal Wastewater 被引量:1
1
作者 Stig Morling Mattias Feldthusen 《Journal of Water Resource and Protection》 2019年第5期626-637,共12页
The need for an advanced and even far reaching phosphorus removal at municipal WWTPs may soon get stipulations in relation to a reuse of phosphorus (P). This paper discusses the possible ways to remove phosphorous fro... The need for an advanced and even far reaching phosphorus removal at municipal WWTPs may soon get stipulations in relation to a reuse of phosphorus (P). This paper discusses the possible ways to remove phosphorous from municipal wastewater. This is already an established demand in many countries. However, as P is a limited raw material, this need for a reuse of P will become an example of what now is labelled “cyclic economy”. For instance, a national demand from the German state is already put in force. In this perspective the advanced filtration techniques will play an interesting role, and most possibly a crucial role. Examples are presented from several municipal WWTPs already in operation with a final polishing treatment step based on chemical precipitation and separation of phosphorus. Typical stable discharge P levels are found at these plants at levels < 0.05 to 0.10 ppm. The new demands on phosphorus recovery will also call for modified process concepts for the WWTP;for instance, a refined biological phosphorus removal (EBP) attains more attention and he needed very low discharge levels of P, where the enhanced P-removal will include different smart filtration techniques. 展开更多
关键词 PHOSPHORUS Advanced REMOVAL Chemical PRECIPITATION FILTRATION Techniques reuse of purified water
下载PDF
延迟焦化装置的能耗分析及节能优化实践 被引量:4
2
作者 龚朝兵 周雨泽 +1 位作者 宋金宝 王金刚 《中外能源》 CAS 2013年第1期84-88,共5页
中国海油惠州炼油分公司420×104t/a延迟焦化装置通过停用解吸塔上重沸器3.5MPa蒸汽、停用柴油汽提塔1.0MPa汽提蒸汽、降低循环比、采用先进控制(APC)提高加热炉热效率、降低高压水泵和罐区减渣原料泵电耗、提高水的回用率、加大装... 中国海油惠州炼油分公司420×104t/a延迟焦化装置通过停用解吸塔上重沸器3.5MPa蒸汽、停用柴油汽提塔1.0MPa汽提蒸汽、降低循环比、采用先进控制(APC)提高加热炉热效率、降低高压水泵和罐区减渣原料泵电耗、提高水的回用率、加大装置处理量等工艺优化措施,装置综合能耗比设计能耗39.03kg标油/t原料降低3kg标油/t原料。为了进一步降低装置能耗,达到国内其他先进装置的能耗水平,该装置在2011年利用检修时机,通过加热炉节能改造降低排烟温度、利用柴油低温热发生0.45MPa蒸汽、焦化富气压缩机叶轮更换、焦炭塔区特阀汽封线改造等节能改造措施,加热炉热效率由89%提高至91.5%,节约3.5MPa蒸汽用量约6.5t/h,同时减少了燃料气、蒸汽和电的消耗,使装置能耗总体降低3.16kg标油/t原料。装置节能改造每年可增加4000万元的经济效益。 展开更多
关键词 延迟焦化 装置综合能耗 节能改造 加热炉 热效率 余热利用 净化水回用
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部