桉树人工林对林区水库黑水的影响
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国家自然科学基金(51779072,51579071,51569006);国家重点研发计划(20165044902);宁夏回族自治区重点研发计划(20175046802)


Effects of Eucalyptus plantation on black water in forest reservoirs
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    摘要:

    以桉树人工林区水库——南宁市天雹水库周边种植的桉树、马尾松两种主要树种为研究对象,分别对比其凋落叶在蒸馏水、水库表层水样、水库底层水样浸泡下的水质特征,并结合2018年春(3月)、夏(7月)、秋(11月)、冬(12月)4个季节对水库近桉树林与马尾松林径流入库区水质情况,分析桉树凋落叶对林区水库黑水的影响。结果表明:桉树浸泡液呈现黄棕色甚至黑褐色,色度显著大于马尾松浸泡液,其单宁酸与溶解性有机碳(DOC)质量浓度分别达到1.14mg/L和 46.40mg/L,均较马尾松高,水体色度与DOC、单宁酸均呈显著正相关关系,相关系数分别为0.83和0.94;近桉树林区库区的水体的有机质和Mn质量浓度也高于近马尾松林区库区;桉树凋落叶与缺氧的水库底层水体混合后,Fe、Mn质量浓度升高,分别达到1.21mg/L和2.09mg/L。

    Abstract:

    Taking two main tree species, Eucalyptus and Pinus, planted around Tianbao reservoir in Eucalyptus plantation area as the study objects, we compared the water quality characteristics of the distilled water, surface water and bottom water of the reservoir in which the litter leaves soaked. Combined with the water quality in runoff area of the reservoir near Eucalyptus and Pinus forest in spring(March), summer(July), autumn(November)and winter(December)in 2018, this paper analyzed the effects of Eucalyptus Plantation on the black water of reservoir in forest area. The results showed that the soaking solution of Eucalyptus is yellow-brown or even black-brown in color, and its chroma was significantly higher than that of the soaking solution of Pinus. The concentration of tannic acid and dissolved organic carbon(DOC)is 1.14mg/L and 46.40mg/L, respectively, which are higher than that of Pinus. The chroma of water body was positively correlated with DOC and tannic acid, and the correlation coefficients were 0.83 and 0.94, respectively. The organic matter and Mn content of waters flowing into reservoir near Eucalyptus forest area were also higher than that near Pinus forest area. The concentration of Fe and Mn increased to 1.21mg/L and 2.09mg/L, respectively, when the leaves of Eucalyptus litter were mixed with the bottom water of anoxic reservoir.

    参考文献
    [1] YANG X,LI D,MCGROUTHER K,et al.Effect of Eucalyptus forests on understory vegetation and soil quality[J].Journal of Soils & Sediments,2017,17(9):2383-2389.
    [2] 王贺亚.基于3S技术的广西典型水库集水区桉树人工林及其生态系统服务功能的时空动态格局研究[D].上海:东华大学,2016.
    [3] 李一平,罗凡,李荣辉,等.桉树人工林区水体泛黑机理研究进展[J].河海大学学报(自然科学版),2019,47(5):393-401.(LI Yiping,LUO Fan,LI Ronghui,et al.Review on the mechanism of blackwater in Eucalyptus plantation[J].Journal of Hohai University(Natural Sciences),2019,47(5):393-401.(in Chinese)).
    [4] 徐磊,逄勇,黄亚文,等.壳聚糖改性黏土作用下湖泛致黑悬浮物的沉降特性研究[J].水资源保护,2016,32(5):97-102.(XU Lei,PANG Yong,HUANG Yawen,et al.Study on deposition of algal bloom-induced black suspended matter using chitosan-modified clay[J].Water Resources Protection,2016,32(5):97-102.(in Chinese))
    [5] 陈荷生.太湖宜兴近岸水域“湖泛”现象初析[J].水利水电科技进展,2011,31(4):33-37.(CHEN Hesheng.Black water aggregation in Yixing inshore water area of Taihu Lake[J].Advances in Science and Techology of Water Resoures,2011,31(4):33-37.(in Chinese)
    [6] 李佐琛,段洪涛,申秋实,等.藻源性湖泛发生过程CDOM变化对水色的影响[J].湖泊科学,2015,27(4):616-622.(LI Zuoshen,DUAN Hongtao,SHEN Qiushi,et al.Major progress in microbial ecology of hypoxia in the shallow eutrophic lakes The changes of water color induced by chromophoric dissolved organic matter(CDOM)during the formation of black blooms[J].Journal of Lake Science,2015,27(4):616-622.(in Chinese))
    [7] KERRY J,BELLWOOD D.The effect of coral morphology on shelter selection by coral reef fishes[J].Coral Reefs,2012,31(2):415-424.
    [8] 申秋实,范成新,王兆德,等.湖泛水体沉积物-水界面 Fe2+/∑S2-迁移特征及其意义[J].湖泊科学,2016,28(6):1175-1184.(SHEN Qiushi,FAN Chengxin,WANG Zhaode,et al.Effects of Fe2+ and ∑S2- transportation at sediment-water interface to the black bloom for mation[J].Journal of Lake Science,2016,28(6):1175-1184.(in Chinese))
    [9] 刘国锋,范成新,张雷,等.藻源性黑水团环境效应Ⅲ:对水-沉积物界面处Fe-S-P循环的影响[J].中国环境科学,2014,34(12):3199-3206.(LIU Guofeng,FAN Chengxin,ZHANG Lei,et al.Environment effects of algae-caused black spots Ⅲ:impacts on Fe- S- P cycle in water-sediment interface[J].China Environmental Science,2014,34(12):3199-3206.(in Chinese))
    [10] 张娟,逄波,计融,等.什邡地震灾区茶水变黑现象分析及处理方法[J].环境与健康杂志,2008(6):471.(ZHANG Yuan,PANG Bo,JI Rong,et al.Analysis and Treatment of black tea in Shifang earthquake-stricken area[J].Journal of Environment and Health,2008,25(6):471.(in Chinese))
    [11] 连成叶.蓝黑墨水字迹褪变机理探讨[J].福建师范大学学报(自然科学版),2008,24(2):47-49.(LIAN Chengye.Study on color fading mechanism in blue-black ink handwriting[J].Journal of Fujian Normal University(Natural Science Edition),2008,24(2):47-49.(in Chinese))
    [12] HERNÁNDEZ J,PINO A D,SALVO L,et al.Nutrient export and harvest residue decomposition patterns of a Eucalyptus dunnii Maiden plantation in temperate climate of Uruguay[J].Forest Ecology & Management,2009,258(2):99.
    [13] 杨钙仁.桉树人工林对林区地表水的影响[D].南宁:广西大学,2012.
    [14] 杨钙仁,于婧睿,苏晓琳,等.桉树人工林黑水发生环境及其对鱼类的影响[J].西南农业学报,2016,29(2):445-450.(YANG Gairen,YU Jingrui,SU Xiaolin,et al.Occurrence of black water in cut-over areas of Eucalyptus plantation and its effect on fish[J].Southwest China Journal of Agricultural Sciences,2016,29(2):445-450.(in Chinese))
    [15] 杨钙仁,张秀清,蔡德所,等.广西主要人工林凋落物分解过程及其对淋溶水质的影响[J].应用生态学报,2012,23(1):9-16.(YANG Gairen,ZHANG Xiuqing,CAI Desuo,et al.Litter decomposition of dominant plantations in Guangxi and its effects on leachate quality.[J].Chinese Journal of Applied Ecology,2012,23(1):9-16.(in Chinese))
    [16] FRANCIS C,SHEIDON F.River red gum(Eucalyptus camaldulensis Dehnh.)organic matter as a carbon source in the lower Darling River,Australia[J].Hydrobiologia,2002,481:113-124.
    [17] HOWITT J A,BALDWIN D S,REES G N,et al.Modelling blackwater:predicting water quality during flooding of lowland river forests[J].Ecological Modelling,2007,203(3/4):229-242.
    [18] 伍琪,任世奇,项东云,等.四种南方常见速生树种凋落叶浸泡实验研究[J].生态科学,2018,37(6):60-66.(WU Qi,REN Shiqi,XIANG Dongyun,et al.Comparative study on soak characteristic of litters in four different southern fast-growing tree species[J].Ecological Science,2018,37(6):60-66.(in Chinese))
    [19] 刘小为.单宁酸与给水处理过程相关的若干化学行为研究[D].哈尔滨:哈尔滨工业大学,2007.
    [20] SOARES J V,ALMEIDA A C.Modeling the water balance and soil water fluxes in a fast growing Eucalyptus plantation in Brazil[J].Journal of Hydrology,2001,253(1):130-147.
    [21] DUAN H,LOISELLE S A,LI Z,et al.A new insight into black blooms:synergies between optical and chemical factors[J].Estuarine Coastal & Shelf Science,2016,175:118-125.
    [22] VITHANA C L,SULLIVAN L A,SHEPHERD T.Effect of schwertmannite and jarosite on the formation of hypoxic blackwater during inundation of grass material[J].Water Research,2017,124C:1-10.
    [23] POZO J,BASAGUREN A,ELÓSEGUI A,et al.Afforestation with Eucalyptus globulus and leaf litter decomposition in streams of northern Spain[J].Hydrobiologia,1998,373-374:101-110.
    [24] JANSSEN M A,WALKER K F.Processing of riparian and wetland plant litter in the River Murray,South Australia[J].Hydrobiologia,1999,411:53-64.
    [25] 陈书秀,江明喜.三峡地区香溪河流域不同树种叶片凋落物的分解[J].生态学报,2006,26(9):2905-2912.(CHEN Shuxiu,JIANG Mingxi.Leaf litter decomposition dynamics of different tree species in Xiangxi River watershed,the Three Gorges region[J].Acta Ecologica Sinica,2006,26(9):2905-2912.(in Chinese))
    [26] 施媛媛,李一平,罗凡,等.桉树人工林区水库底泥氮、磷和有机质时空分布特征[J].水资源保护,2018,34(5):69-75(SHI Yuanyuan,LI Yiping,LUO Fan,et al.Distribution of nitrogen,phosphorus and organic matter in sediments of reservoir in Eucalyptus plantation[J].Water Resources Protection,2018,34(5):69-75.(in Chinese))
    [27] 李一平,罗凡,郭晋川,等.我国南方桉树(Eucalyptus)人工林区水库突发性泛黑形成机理初探[J].湖泊科学,2018,30(1):15-24.(LI Yiping,LUO Fan,GUO Jinchuan,et al.Mechanism of “black-water” occurrence in the reservoirs with Eucalyptus plantation,southern China[J].Journal of Lake Sciences,2018,30(1):15-24.(in Chinese))
    [28] 盛东,徐兆安,高怡.太湖湖区“黑水团”成因及危害分析[J].水资源保护,2010,26(3):41-44.(SHENG Dong,XU Zhaoan,GAO Yi.Case and impact analysis of black water cluster in Taihu Lake[J].Water Resources Protection,2010,26(3):41-44.(in Chinese))
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罗凡,李一平,李燕,等.桉树人工林对林区水库黑水的影响[J].水资源保护,2020,36(3):98-104.(LUO Fan, LI Yiping, LI Yan, et al. Effects of Eucalyptus plantation on black water in forest reservoirs[J]. Water Resources Protection,2020,36(3):98-104.(in Chinese))

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  • 收稿日期:2019-06-12
  • 在线发布日期: 2020-05-13
  • 出版日期: 2020-05-20