Jia Binyang, Tang Ya, Tian Liyan, Franz Leander, Alewell Christine, Huang Jen-How
Chengdu Academy of Environmental Sciences, Chengdu 610072, People's Republic China.
College of Architecture and Environment, Sichuan University, Chengdu 610065, People's Republic China.
Sci Rep. 2015 Nov 18;5:16617. doi: 10.1038/srep16617.
Fish farming has seriously influenced the aquatic environment in Sancha reservoir in SW China since 1985 and has been strongly restricted since 2005. Thus, phosphorus speciation in a sediment core dated between 1945 and 2010 at cm-resolution and in surface sediments from Sancha reservoir may allow us track how fish farming impacts phosphorus dynamics in lake sediments. Fish farming shifts the major binding forms of phosphorus in sediments from organic to residual phosphorus, which mostly originated from fish feed. Sorption to metal oxides and association with organic matters are important mechanisms for phosphorus immobilisation with low fish farming activities, whereas calcium-bound phosphorous had an essential contribution to sediment phosphorus increases under intensive fish framing. Notwithstanding the shifting, the aforementioned phosphorus fractions are usually inert in the lake environment, therefore changing phosphorus mobility little. The use of fish feed and water-purification reagents, the most important additives for fish farming, introduce not only phosphorus but also large amounts of sand-sized minerals such as quartz into the lake, to which phosphorus weakly sorbs. The sand-sized minerals as additional sorbents increase the pool of easily mobilisable phosphorus in sediments, which will slow down the recovery of reservoir water due to its rapid re-mobilisation.
自1985年以来,养鱼业严重影响了中国西南部三岔水库的水生环境,自2005年起受到严格限制。因此,对三岔水库1945年至2010年厘米分辨率沉积岩芯及表层沉积物中的磷形态分析,或许能让我们追踪养鱼业如何影响湖泊沉积物中的磷动态变化。养鱼业使沉积物中磷的主要结合形式从有机磷转变为残留磷,后者主要源于鱼饲料。在养鱼活动较少时,磷通过吸附到金属氧化物和与有机物结合的方式固定,而在密集养鱼条件下,钙结合磷对沉积物中磷含量的增加起到了关键作用。尽管存在这种转变,但上述磷组分在湖泊环境中通常是惰性的,因此对磷的迁移性影响不大。养鱼业最重要的添加剂——鱼饲料和水质净化剂,不仅向湖泊中引入了磷,还引入了大量如石英等砂粒大小的矿物质,磷对其吸附较弱。这些砂粒大小的矿物质作为额外的吸附剂,增加了沉积物中易迁移磷的储量,由于其快速再迁移,这将延缓水库水质的恢复。