|
|
Purification effects of Sonneratia apetala simulated wetland system on wastewater |
LI Mei1, LIAO Bao-wen1, LIU Jin-ling2, ZHANG Jia-en2, ZHOU Guang-yi1, SU Juan3 |
1. Research Institute of Tropical Forestry, CAF, Guangzhou 510520, China; 2. South China Agricultural University, Guangzhou 510520, China; 3. Forestry Administration of Guangzhou, Guangzhou 510030, China |
|
|
Abstract A simulated mangrove Sonneratia apetala wetland was set up in a greenhouse.Through wastewater irrigating test,the purifying effects of simulated wetland system were studied.The synthetic wastewater SW had the characteristics and strength similar to normal domestic wastewater,while FW and TW had the nutrients and heavy metals as five and ten times as those in SW,respectively.Wastewater was irrigated quantitatively and regularly for 4 months.The average purifying rates of Sonneratia apetala simulated wetland system on the nutrients and heavy metals in synthetic wastewater were: N 84.6%,P 91.2%,Cd 91.2%,Pb 94.8%,Zn 84.9% and Cu 87.1%,in which the purifying rates of soil subsystem were: N 54.5%,P 76.5%,Cd 99.3%,Ni 99.2%,Pb 99.6%,Zn 99.3% and Cu 99.2%.These indicated that the soil subsystem played an important role on purification and that plants could avoid the damage of pollutants.But the purifying efficiency of soil subsystem on nutrients where plant had been grown was lower than that without plant growth because of the adsorption of N and P by S.apetala.
|
Received: 25 February 2008
|
|
|
|
|
[1] Clough B F,Boto K G,Attiwill P M.1983.Mangrove and sewage:a re-evalution[A].In:Teas H J (ed.).Biology and Ecology of Mangroves[C].Lancaster:Tasks for Vegetation Science Series,Vol.8.Lancaster:Dr W Junk Publishers,151-162.
[2] Boto K G,Wellington J T.1983.Nitrogen and phosphorus nutritional status of a northern Australian mangrove forest[J].Mar.Ecol.,11:63-69.
[3] Sansanayuth P,Phadungchep A,Ngammontha S,et al.1996.Shrimp pond effluent pollution problems and treatment by constructed wetlands[J].War.Sci.Tech,34(11):93-98.
[4] Tam F Y,Wong Y S.2000.Spatial variation of heavy metals in surface sediments of Hong Kong mangrove swamps[J].Environ.Pollut,110:195-205.
[5] 马骅.1996.人工合成污水对桐花树模拟湿地的影响及湿地净化效应研究[D].广州:中山大学,53-59.
[6] 陈桂珠,缪绅裕,黄玉山,等.1996.人工污水中的N在模拟秋茄湿地系统中的分配循环及其净化效果[J].环境科学学报,16(1):44-50.
[7] 陈桂葵,陈桂珠,黄玉山,等.1996.人工污水对白骨壤幼苗生理生态特性的影响[J].应用生态学报,10(1):95-98.
[8] 缪绅裕,陈桂珠,黄玉山,等.1999.人工污水中的磷在模拟秋茄湿地系统中的分配与循环[J].生态学报,1(2):236-241.
[9] 国家环境保护局污染管理司.1991.水污染防治管理手册[M].北京:中国环境科学出版社,95-114.
[10] 中国科学院南京土壤研究所.1978.土壤理化分析[M].上海:上海科学技术出版社,67-375.
[11] 缪绅裕.1994.模拟条件下排污对秋茄湿地的影响及系统的净化效应[D].广州:中山大学,1-3.
[12] 陈桂珠,陈桂葵,谭凤仪,等.2000.白骨壤模拟湿地系统对污水的净化效应[J].海洋环境科学,19(4):23-26.
[13] 陈桂珠,缪绅裕,黄玉山,等.1998.重金属在模拟秋茄湿地生态系统的分布迁移及其净化效应[A].陆健健等.中国湿地研究和保护[C].上海:华东师范大学出版社,279-285 |
[1] |
. [J]. Ecological Science, 2018, 37(5): 1-6. |
|
|
|
|