1. 浙江万里学院 生物与环境学院,浙江,宁波,315100
2. 宁波晟乾环境技术开发有限公司,浙江,宁波,315100
纸质出版:2018
移动端阅览
滕丽华, 赵欣园, 王趁义, 等. 盐地碱蓬浮床对海水养殖水体原位修复的效果[J]. 水土保持通报, 2018,38(3):217-221.
TENG Lihua, ZHAO Xinyuan, WANG Chenyi, et al. In-situ Remediation Effect of Suaeda Salsa Floating Bed on Aquaculture Water Body[J]. Bulletin of Soiland Water Conservation, 2018, 38(3): 217-221.
滕丽华, 赵欣园, 王趁义, 等. 盐地碱蓬浮床对海水养殖水体原位修复的效果[J]. 水土保持通报, 2018,38(3):217-221. DOI: 10.13961/j.cnki.stbctb.2018.03.035.
TENG Lihua, ZHAO Xinyuan, WANG Chenyi, et al. In-situ Remediation Effect of Suaeda Salsa Floating Bed on Aquaculture Water Body[J]. Bulletin of Soiland Water Conservation, 2018, 38(3): 217-221. DOI: 10.13961/j.cnki.stbctb.2018.03.035.
[目的]研究盐地碱蓬(Suaeda salsa)由陆地生境转移到浮床盐水生环境后的生长情况及其对海水养殖池塘水体原位修复的效果,为利用盐生植物原位修复海水养殖池塘提供方法。[方法]测定修复期间盐水浮床和陆地两种生境下盐地碱蓬的生长及生理生化指标,并监测海水养殖池塘水体水质。[结果]试验期内浮床生境中盐地碱蓬适应良好,生物量显著增加,其中浮床生境盐地碱蓬根系活力、叶片含氮量分别显著高于同期陆地生境中的盐地碱蓬。水质检测表明,修复后浮床区水体中总氮、总磷、氨氮和化学需氧量分别为3.34,0.20,0.47,0.35 mg/L,均明显低于对照区,去除效果良好。[结论]盐地碱蓬从陆地生境转移到浮床盐水生境后可以适应水生环境,并通过根系吸收部分去除水中的氮、磷等污染元素。盐地碱蓬原位修复海水养殖池塘水体具有较好的潜力。
[Objective] To study the growth of Suaeda salsa transferred from a terrestrial habitat to a floating-bed saline habitat and its effect on the in-situ water remediation of aquaculture ponds
in order to provide methods for aquaculture water body remediation by floating bed.[Methods] The growth
physiological and biochemical indexes of S. salsa under saltwater floating bed and land habitats during the restoration period were measured. Water quality of the aquaculture ponds was monitored as well.[Results] The S. salsa was well-adapted the floating bed habitat during the experiment period. Biomass was increased significantly
and the root activity and leaf nitrogen content of S. salsa in the floating bed habitat were higher than that in the land habitat. The total nitrogen
total phosphorus
ammonia and chemical oxygen demand was 3.34
0.20
0.47
and 0.35 mg/L
respectively
which was lower than the control treatment.[Conclusion] S. salsa can adapt to the aquatic environment after transferred from terrestrial habitat to floating-bed saline habitat
and it can remove nitrogen
phosphorus and other elements in the water through the root absorption. S. salsa has a good potential for in-situ remediation in aquaculture pond water.
赵欣园,于晓磊,滕丽华,等.盐生植物修复海水养殖尾水的研究现状与进展[J].海洋环境科学,2018,37(3):470-474.
Li Wengxiang, Li Wei, Lin Mingli, et al. In situ nutrient removal from aquaculture wastewater by the aquatic vegetable
Ipomoea aquatica
on floating beds[J]. Acta Scientiae Circulmstantiae, 2011,31(8):1670-1675.
宋超,陈家长,戈贤平,等.浮床栽培空心菜对罗非鱼养殖池塘水体中氮和磷的控制[J].中国农学通报,2011,27(23):70-75.
Duguma D, Rugmanjones P, Kaufman M G, et al. Bacterial communities associated with culex mosquito larvae and two emergent aquatic plants of bioremediation importance[J]. Plos One, 2013,8(8):1-10.
郑立国.组合型生态浮床对富营养化水体的净化效果及其机理研究[D].长沙:湖南农业大学,2013:83-92.
Buzby K M, West T P, Waterland N L, et al. Remediation of flow-through trout raceway effluent via aquaponics[J]. North American Journal of Aquaculture, 2017,79(1):53-60.
章文贤,韩永和,卢文显,等.植物生态浮床的制备及其对富营养化水体的净化效果[J].环境工程学报,2014,8(8):3253-3258.
Moroyoquirojo L, Floresverdugo F J, Hernándezcarmona G, et al. Nutrient removal using two species of mangrove(
Rhizophora mangle
and
Laguncularia racemosa
)in experimental shrimp(
Litopenaeus vannamei
)culture ponds[J].Ciencias Marinas, 2014,38(2):333-346.
Wang Lei, Zhao Zhenyong, Zhang Ke, et al. Oil content and fatty acid composition of dimorphic seeds of desert halophyte
Suaeda aralocaspica
. African Journal of Agricultural Research, 2012,7(12):13589-13597.
Oueslati S, Trabelsi N, Boulaaba M, et al. Evaluation of antioxidant activities of the edible and medicinal Suaeda species and related phenolic compounds[J]. Industrial Crops & Products, 2012,36(1):513-514.
潘军标,王栋,王趁义,等.碱蓬对富营养化海水养殖水体中氮磷的去除研究[J].环境保护科学,2018,44(2):37-41.
胡杰,王晓俊,王趁义,等.碱蓬浮床对海水养殖尾水的修复效果研究[J].水土保持通报,2018,38(2):281-284, 291.
王学奎.植物生理生化试验原理和技术[M].2版.北京:高等教育出版社,2006.
唐瑜.水培对几种观赏植物形态结构和生理指标的影响[D].合肥:安徽农业大学,2016:27-29.
彭斌,许伟,邵荣,等.盐胁迫对不同生境种源盐地碱蓬幼苗生长、光合色素及渗透调节物质的影响[J].海洋湖沼通报,2017,1(1):63-72.
高奔,宋杰,刘金萍,等.盐胁迫对不同生境盐地碱蓬光合及离子积累的影响[J].植物生态学报,2010,34(6):671-677.
彭益全,谢橦,周峰,等.碱蓬和三角叶滨藜幼苗生长、光合特性对不同盐度的响应[J].草业学报,2012,21(6):64-74.
李焕忠,张吉立.5种微量元素对紫叶矮樱叶绿素a含量影响的研究[J].中国农学通报,2010,26(16):242-245.
肖强,郑海雷,陈瑶,等.盐度对互花米草生长及脯氨酸、可溶性糖和蛋白质含量的影响[J].生态学杂志,2005,24(4):373-376.
简令成,王红.逆境植物细胞生物学[M].北京:科学出版社,2009:115-151.
李建柱,侯杰,张鹏飞,等.空心菜浮床对鱼塘水质和微生物多样性的影响[J].中国环境科学,2016,36(10):3071-3080.
姬芬,张饮江,王芳,等.组合型生态浮床系统脱氮效果的周年变化[J].上海海洋大学学报,2017,26(2):235-242.
Bartucca M L, Mimmo T, Cesco S, et al. Nitrate removal from polluted water by using a vegetated floating system[J]. Science of the Total Environment, 2016,542:803-808.
Liu Junzhuo, Wang Fengwu, Liu Wei, et al. Nutrient removal by up-scaling a hybrid floating treatment bed(HFTB)using plant and periphyton:From laboratory tank to polluted river[J]. Bioresource Technology, 2016,207:142-149.
丁效东.硝态氮在盐生植物体内的渗透调节作用和吸收动力学的研究[D].北京:中国农业大学,2006:10-25.
Guo Yiming, Liu Yunguo, Zeng Guangming, et al. Arestoration-promoting integrated floating bed and its experimental performance in eutrophication remediation[J]. Acta Scientiae Circumstantiae, 2014,26(5):1090-1098.
0
浏览量
1080
下载量
7
CSCD
关联资源
相关文章
相关作者
相关机构
京公网安备11010802024621