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三峡库区澎溪河底泥及消落区土壤磷的形态及吸附特性研究 被引量:17
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作者 孙文彬 杜斌 +1 位作者 赵秀兰 何丙辉 《环境科学》 EI CAS CSCD 北大核心 2013年第3期1107-1113,共7页
沉积物是自然水域的重要生态组成部分,是形成湖泊、水库富营养化的关键因素之一.为研究三峡库区澎溪河流域沉积物中磷的赋存形态特征及迁移转化规律,采用连续提取法对澎溪河底泥3个断面及消落区3种土壤类型中磷赋存形态进行分析,并通过... 沉积物是自然水域的重要生态组成部分,是形成湖泊、水库富营养化的关键因素之一.为研究三峡库区澎溪河流域沉积物中磷的赋存形态特征及迁移转化规律,采用连续提取法对澎溪河底泥3个断面及消落区3种土壤类型中磷赋存形态进行分析,并通过等温吸附实验研究了磷的吸附规律,确定了零净吸附磷浓度(EPC0).结果表明,澎溪河底泥中的总磷含量在0.80~1.45 g·kg-1之间,赋存形态以无机磷为主,其中钙结合磷和蓄闭态磷比例在80%以上,铁铝结合磷含量较低,该流域底泥受自然岩石状态及沉积环境的影响较大,而人为活动对其影响较小;消落区土壤总磷含量在0.65~1.16 g·kg-1之间,磷的赋存形态也以无机磷为主,冲积土和紫色土也以钙结合态磷和蓄闭态磷为主,水稻土中则以蓄闭态磷含量最高.澎溪河高阳、黄石和双江3个断面底泥的EPC0分别为0.08、0.13和0.11 mg·L-1,消落区冲积土、紫色土和水稻土的EPC0分别为0.08、0.09和0.04 mg·L-1.EPC0值与沉积物中总磷、pH、Ca-P、黏粒含量呈正相关性,其中与pH和Ca-P相关性显著.根据澎溪河上覆水中磷浓度的季节变化,初步判定底泥及消落区土壤在夏秋季节为磷的"汇",在冬春季节则成为其"源".EPC0高于水体富营养化临界值,底泥及消落区土壤中磷的释放依然是不可忽视的潜在问题. 展开更多
关键词 澎溪河 磷形态 零净吸附磷浓度磷 底泥 消落区土壤
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三峡澎溪河流域消落区与岸边土壤磷形态特征 被引量:11
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作者 黄俊杰 王超 +4 位作者 方博 冯磊 方芳 李哲 郭劲松 《环境科学》 EI CAS CSCD 北大核心 2017年第9期3673-3681,共9页
选取了落干期澎溪河流域6个消落区点位,分析了消落区土壤磷形态分布特征,并探讨了各形态磷之间的相关性.结果表明,(1)采用SMT法测定了消落区土壤总磷、无机磷和有机磷含量,其总磷TP含量均值为575.29 mg·kg^(-1),有机磷OP含量均值为... 选取了落干期澎溪河流域6个消落区点位,分析了消落区土壤磷形态分布特征,并探讨了各形态磷之间的相关性.结果表明,(1)采用SMT法测定了消落区土壤总磷、无机磷和有机磷含量,其总磷TP含量均值为575.29 mg·kg^(-1),有机磷OP含量均值为91.23 mg·kg^(-1).(2)采用Hedley法分析了消落区土壤磷的5种赋存形态,其中WA-Pi、PA-Pi、Fe/Al-Pi等3种易迁移的无机磷形态之和占可提取Pi的11.61%,且低于岸边土壤;WA-Po、PA-Po两种生物可利用性较高的有机磷形态含量之和占可提取Po的22.28%,而中活性有机磷Fe/Al-Po占可提取Po的66.30%,且消落区土壤各形态Po含量均低于岸边土壤,又以Fe/Al-Po含量差异最大.(3)消落区土壤TP与活性较强的WA-Pt、PA-Pt呈显著相关,表明消落区土壤活性磷含量主要受TP影响;各形态磷之间不具有显著相关性,表明不同形态磷的来源可能不同;消落区土壤Fe/Al-Pt与土壤有机质OM呈显著相关,表明土壤有机质的含量可能影响铁铝结合态磷含量.在淹水条件下,消落区土壤磷组分的释放对上覆水体的潜在影响不容忽视. 展开更多
关键词 三峡库 消落区土壤 有机磷 无机磷 形态
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淹水落干下三峡水库消落带土壤无机磷形态转化特征 被引量:13
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作者 周健 李春辉 +4 位作者 张志永 胡红青 万成炎 胡莲 潘晓洁 《环境科学》 EI CAS CSCD 北大核心 2018年第1期130-136,共7页
为探讨三峡水库消落带土壤无机磷的转化规律,通过布置原位浮台,将装有土壤的塑料盆悬挂在不同水深(0、2、5、15m)处,分别淹没30、60、180 d,落干180 d,研究淹没水深和时长对消落带土壤的理化性质及无机磷形态的影响.结果表明,淹水-落干... 为探讨三峡水库消落带土壤无机磷的转化规律,通过布置原位浮台,将装有土壤的塑料盆悬挂在不同水深(0、2、5、15m)处,分别淹没30、60、180 d,落干180 d,研究淹没水深和时长对消落带土壤的理化性质及无机磷形态的影响.结果表明,淹水-落干循环中,土壤pH、有机质、全磷和有效磷含量均呈现先降低后升高的趋势.落干180 d后,土壤pH、有机质和全磷含量降低,有效磷含量升高.土壤淹水后,各形态无机磷占全磷的比例大小为Fe-P>Al-P>Ca8-P>Ca2-P.淹水0 m、2 m时Ca2-P、Ca8-P随淹水时间持续下降,淹水5 m、15 m时随淹水时间先降低后升高.落干180 d后无机磷含量显著增加,随淹水深度的增加无机磷含量呈降低趋势;Al-P含量随淹水时间先降低后持续升高,随淹水深度变化趋势不明显;Fe-P含量随淹水时间和淹水深度变化无明显规律. 展开更多
关键词 三峡水库 消落区土壤 淹水 无机磷形态
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Estimation of soil reinforcement by the roots of four postdam prevailing grass species in the riparian zone of Three Gorges Reservoir, China 被引量:17
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作者 ZHONG Rong-hua HE Xiu-bin +5 位作者 BAO Yu-hai TANG Qiang GAO Jin-zhang YAN Dan-dan WANG Ming-feng LI Yu 《Journal of Mountain Science》 SCIE CSCD 2016年第3期508-521,共14页
Soil erosion and bank degradation is a major post-dam concern regarding the riparian zone of the Three Gorges Reservoir. The development and succession of vegetation is a main countermeasure,especially to enhance bank... Soil erosion and bank degradation is a major post-dam concern regarding the riparian zone of the Three Gorges Reservoir. The development and succession of vegetation is a main countermeasure,especially to enhance bank stability and mitigate soil erosion by the root system. In this study, the roots of four prevailing grass species, namely, Cynodon dactylon, Hemarthria altissima, Hemarthria compressa, and Paspalum paspaloides, in the riparian zone were investigated in relation to additional soil cohesion. Roots were sampled using a single root auger. Root length density(RLD) and root area ratio(RAR) were measured by using the Win RHIZO image analysis system. Root tensile strength(TR) was performed using a manualdynamometer, and the soil reinforcement caused by the roots was estimated using the simple Wu's perpendicular model. Results showed that RLD values of the studied species ranged from 0.24 cm/cm3 to20.89 cm/cm3 at different soil layers, and RLD were significantly greater at 0–10 cm depth in comparison to the deeper soil layers(&gt;10 cm). RAR measurements revealed that on average 0.21% of the reference soil area was occupied by grass roots for all the investigated species. The measured root tensile strength was the highest for P. paspaloides(62.26MPa) followed by C. dactylon(51.49 MPa), H.compressa(50.66 MPa), and H. altissima(48.81MPa). Nevertheless, the estimated maximum root reinforcement in this investigation was 22.5 k Pa for H.altissima followed by H. compressa(21.1 k Pa), P.paspaloides(19.5 k Pa), and C. dactylon(15.4 k Pa) at0–5 cm depth soil layer. The root cohesion values estimated for all species were generally distributed at the 0–10 cm depth and decreased with the increment of soil depth. The higher root cohesion associated with H. altissima and H. compressa implies their suitability for revegetation purposes to strengthen the shallow soil in the riparian zone of the Three Gorges Reservoir. Although the soil reinforcement induced by roots is only assessed from indirect indicators, the present results still useful for species selection in the framework of implementing and future vegetation recovery actions in the riparian zone of the Three Gorges Reservoir and similar areas in the Yangtze River Basin. 展开更多
关键词 Bank stabilization Root area ratio Root tensile strength Soil reinforcement Riparian zone Three Gorges Reservoir
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