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不同配水周期人工土快滤系统对城市污水的净化效果 被引量:7
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作者 刘英 李国学 崔理华 《农业环境保护》 CAS CSCD 2000年第6期332-335,共4页
在土柱内装填人工土滤料 ,利用中国农业大学排放的混合污水进行了3种配水时间4种湿干比污水处理试验。结果表明 ,在人工土运行过程中 ,短的配水周期和干化时间可恢复较大的渗滤速率 ,而较长时间淹灌 ,需要相应地延长其干化时间 ;春、夏... 在土柱内装填人工土滤料 ,利用中国农业大学排放的混合污水进行了3种配水时间4种湿干比污水处理试验。结果表明 ,在人工土运行过程中 ,短的配水周期和干化时间可恢复较大的渗滤速率 ,而较长时间淹灌 ,需要相应地延长其干化时间 ;春、夏、秋、冬4个季节人工土滤出水COD、BOD 5 和SS值均以配水8h去除率最高。全磷含量的配水8h最低 ,去除率一般在40 %~68 %。对氮的去除能力 ,湿干比越小 ,干化时间越长 ,则越有利于氮的去除。 展开更多
关键词 人工土快滤系统 配水周期 净化效果 城市污
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Energy and exergy recovery from exhaust hot water using organic Rankine cycle and a retrofitted configuration 被引量:8
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作者 SUN Wen-qiang YUE Xiao-yu +1 位作者 WANG Yan-hui CAI Jiu-ju 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1464-1474,共11页
Exhaust hot water (EHW) is widely used for various industrial processes. However, the excess heat carried by EHW is typically ignored and discharged into the environment, resulting in heat loss and heat pollution. A... Exhaust hot water (EHW) is widely used for various industrial processes. However, the excess heat carried by EHW is typically ignored and discharged into the environment, resulting in heat loss and heat pollution. An organic Rankine cycle (ORC) is an attractive technology to recycle heat from low-temperature energy carriers. Herein, ORC was used to recycle the heat carried by EHW. To investigate the energy and exergy recovery effects of EHW, a mathematical model was developed and a parametric study was conducted. The energy efficiency and exergy efficiency of the EHW-driven ORC system were modeled with R245fa, Rl13 and R123 as the working fluids. The results demonstrate that the EHW and evaporation temperatures have significant effects on the energy and exergy efficiencies of the EHW-driven ORC system. Under given EHW conditions, an optimum evaporation temperature exists corresponding to the highest exergy efficiency. To further use the low-temperature EHW, a configuration retrofitted to the ORC by combining with flash evaporation (FE) was conducted. For an EHW at 120 ~C and 0.2 MPa, the maximum exergy efficiency of the FE-ORC system is 45.91% at a flash pressure of 0.088 MPa. The FE-ORC performs better in exergy efficiency than the basic FE and basic EHW-driven ORC. 展开更多
关键词 exhaust hot water (EHW) organic Rankine cycle (ORC) energy efficiency exergy efficiency flashevaporation (FE)
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