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To further improve the effectiveness of membrane process and reduce membrane fouling, a highly reactive photocatalytic membrane, Ag-TiO2/hydroxiapiate (HAP, Ca10(PO4)6(OH)2)/Al2O3, was employed to realize microfiltration (MF) coupling photocatalysis for surface water treatment. The effectiveness on the potential of membrane was investigated by removing humic acid (HA) test under different feed total organic carbon (TOC), light intensity and transmembrane pressure (TMP). The HA removal and anti-fouling property of as-prepared membrane was improved under UV irradiation, likely due to photocatalytic degradation of foulants along with filtration simultaneously. Under given feed water composition, increasing the light intensity resulted in increased removal of HA from aqueous solution. However, a limiting TMP seems to exist beyond which the increased HA removal cannot be sustained. Fouling behavior analysis indicated that the transition in fouling mode from initial pore blocking to cake filtration occurred much slower as UV irradiated. Furthermore, a superior efficiency on removal of trace organic contaminants, as well as milder flux reduction, was presented from surface water treatment, which demonstrated that the integrated system with enhanced performance is foreseen as an emerging technique for water treatment. Ͷ¸å×¢ÒâÊÂÏ °æÃæ·Ñ ÎÞ¡¢ Éó¸åÖÜÆÚ 1-2¸öÔ¡¢ ÆÚ¿¯²àÖØÁìÓò Treatment processes for water and wastewaters, municipal, agricultural and industrial, including residuals management. Water quality standards and the analysis, monitoring and assessment of water quality by chemical, physical and biological methods. Studies on inland, tidal or coastal waters and urban waters, including surface and ground waters, and point and non-point sources of pollution. The limnology of lakes, impoundments and rivers. Solid and hazardous waste management, including source characterization and the effects and control of leachates and gaseous emissions. Environmental restoration, including soil and groundwater remediation. Analysis of the interfaces between sediments and water, and water/atmosphere interactions. The application of mathematical and modelling techniques. Public health and risk assessment. 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Ó°ÏìÒò×Ó4µã¶à£¬³¬¹ýEST£¬µ«Ó°ÏìÁ¦Ëƺõ»¹²»¼°EP£¬¿ÉÄÜÊÇ¿¿½ñÄê·¢±íµÄ¼¸Æª×ÛÊöÌá¸ßÁËÆäÓ°ÏìÒò×Ó¡£EI×ÅÖØÓÚ»·¾³½¡¿µ£¬»·¾³¹ý³ÌµÄÎÄÕ½ÏÉÙ£¬»·¾³¹ý³ÌÎÄÕÂÓÐʱֱ½Ó¾Ü¸å¡£Éó¸åÖÜÆÚ¶ÌÓÚEP£¬Ò»°ã2¸öÔ¡£ 3¡¢EST£ºResidues of polybrominated biphenyl ethers in frogs (Rana limnocharis) from a contaminated site, South China: Tissue distribution, biomagnification, and maternal transfer. ESTÊǹ«ÈϵĻ·¾³ÁìÓòȨÍþÆÚ¿¯£¬ËäÈ»ÖпÆÔº°ÑËü»¯Îª2Çø¡£¸ÃÆÚ¿¯ÒªÇóÑо¿ÄÚÈÝÔÚÀíÂÛÉϾßÓд´ÐÂÐÔ£¬¼¼ÊõÉÏÁìÏÈ£¬Ð·½·¨ºÍÐÂÎÛȾÎïµÄ·¢ÏÖÒ²ÊÜ»¶Ó¡£Éó¸åÖÜÆÚ½Ï¶Ì£¬Ò»°ã45-60Ìì¡£ÖµµÃÒ»ÌáµÄÊÇ¸ÃÆÚ¿¯Éó¸åЧÂʷdz£¸ß£¬±à¼Ì¬¶ÈÒ²ºÃ£¬ÎÄÕÂÒ»°ã3-4¸öÔ¾ÍÄÜ·¢±í£¨ÓÐÒ³Â룩¡£ 13 hanko00 ÌâÃû£ºPM2.5 Constituents and Oxidative DNA Damage in Humans ×÷Õß&µ¥Î»£ºYongjie Wei et al. £¬Peking University ÆÚ¿¯Ãû£ºEnviron. Sci. Technol. 2009, 43, 4757¨C4762 Ñо¿ÄÚÈÝ£º´óÆø¿ÉÎüÈë¿ÅÁ£ÎïÓëÈËÌ彡¿µµÄ¹ØÏµ Ͷ¸å×¢ÒâÊÂÏÎÞ°æÃæ·Ñ¡¢Received November 25, 2008. Revised manuscript received March 10, 2009. 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