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酸沉降强度对马尾松土壤活性铝的影响
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作者 朱君琳 刘敏 +3 位作者 王云琦 李成 郑永林 张晓明 《森林与环境学报》 CSCD 北大核心 2024年第4期376-386,共11页
为探究长期自然环境中酸沉降强度对马尾松林下土壤活性铝的影响,以酸沉降强度依次增大的重庆四面山、缙云山、铁山坪为研究区,选取母质相同的马尾松土壤为研究对象,分析不同酸沉降强度下土壤pH值、营养元素含量、交换性阳离子含量、酶... 为探究长期自然环境中酸沉降强度对马尾松林下土壤活性铝的影响,以酸沉降强度依次增大的重庆四面山、缙云山、铁山坪为研究区,选取母质相同的马尾松土壤为研究对象,分析不同酸沉降强度下土壤pH值、营养元素含量、交换性阳离子含量、酶活性与土壤活性铝的相互作用关系。结果表明:随着酸沉降强度的增大,土壤pH值及全碳(TC)、全氮(TN)、交换性铝(Ex-Al)、单聚体羟基铝(Hy-Al)、酸溶无机铝(Ac-Al)含量显著下降(P<0.05),而交换性Mn^(2+)含量不断上升。研究区活性铝以Ac-Al和腐殖质酸铝(Hu-Al)为主,共占比77.1%~84.9%。酸沉降条件下,土壤各形态活性铝含量与TC含量、TN含量、全硫(TS)含量、铵态氮(NH_(4)^(+)-N)含量、脲酶(UE)活性显著相关(P<0.05),活性铝总量的主要影响因子为NH_(4)^(+)-N含量。酸沉降强度改变影响土壤活性铝的主导因子。在四面山,TC、TN、TS含量与各形态活性铝含量显著正相关(P<0.05);在缙云山,Mg^(2+)含量与Ac-Al含量显著正相关(P<0.05),与Ex-Al、Hy-Al、Hu-Al含量显著负相关(P<0.05);在铁山坪,硝态氮(NO_(3)^(-)-N)含量与Ex-Al含量极显著负相关(P<0.01),与Hy-Al、Ac-Al、Hu-Al含量极显著正相关(P<0.01)。随着酸沉降强度的增大,马尾松土壤碳氮元素流失,活性铝淋溶,交换性Mn^(2+)含量升高。经冗余分析可知,随酸沉降强度增大,影响土壤各形态活性含量的主要因子由TC、TN、TS含量转变为交换性Mg^(2+)含量,后为NO_(3)^(-)-N含量。 展开更多
关键词 酸沉降强度 土壤 土壤交换性阳离子 土壤酶活
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Effects of Different Organic Residues on Rice Yield and Soil Quality 被引量:1
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作者 PENG Li LIU Wei +4 位作者 SU Chunjiang LI Ping FANG Yan WANG Xiaolan SUN Lian 《Journal of Mountain Science》 SCIE CSCD 2012年第5期715-722,共8页
Calcaric regosols are a valuable land resource, distributed widely across western China. Soil quality has deteriorated considerably in recent years owing to the blind pursuit of economic benefits. A 2-year field exper... Calcaric regosols are a valuable land resource, distributed widely across western China. Soil quality has deteriorated considerably in recent years owing to the blind pursuit of economic benefits. A 2-year field experiment was carried out to evaluate the effects of using spent mushroom compost, leguminous plant (Vicia sepium L.) compost, and a combination of the two (at a 1:1 and 2:1 ratio), on rice yield and soil quality in a suburb of China. Vicia sepium L. composted with spent mushroom compost at a 1:1 ratio produced the highest grain and stover yield, grain and stover phosphorus concentration, and phosphorus uptake of rice; they were 56.5%, 93.2%, 89.3%, 198.6% and 22.2% greater than control soil, respectively. The 2:1 ratio (Vicia sepium L.: spent mushroom compost) produced the highest grain N concentration, stover N concentration, and N uptake; they were 31.6%, 31.4%, and 40.7% higher than control, respectively. Soil physical, chemical, and environmental properties were improved with the application of Vicia sepium L. composted with spent mushroom compost at a 2:1 ratio. In particular, soil water-stable aggregates, organic carbon, particulate organic carbon, total nitrogen, available potassium, and cation exchange capacity increased, whereas bulk density, pH, and phytoavailable heavy metals decreased. This organic treatment is beneficial to improve soil quality indicators, and contribute to soil restoration. 展开更多
关键词 CO-COMPOSTING Leguminous plants Soilquality indicators Soil restoration Spent mushroomcompost
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Potential of Industrial Byproducts in Ameliorating Acidity and Aluminum Toxicity of Soils Under Tea Plantation 被引量:42
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作者 LI Jiu-Yu WANG Ning +1 位作者 XU Ren-Kou D. TIWARI 《Pedosphere》 SCIE CAS CSCD 2010年第5期645-654,共10页
It is imperative to choose some low cost, available and effective ameliorants to correct soil acidity in southern China for sustainable agriculture. The present investigation dealt with the possible role of industrial... It is imperative to choose some low cost, available and effective ameliorants to correct soil acidity in southern China for sustainable agriculture. The present investigation dealt with the possible role of industrial byproducts, i.e., coal fly ash (CFA), alkaline slag (AS), red mud (RM) and phosphogypsum (PG) in correcting acidity and aluminum (Al) toxicity of soils under tea plantation using an indoor incubation experiment. Results indicated that CFA, AS and RM increased soil pH, while PG decreased the pHs of an Ultisol and an Alfisol. The increment of soil pH followed the order of RM 〉 AS 〉 CFA. All the industrial byproducts invariably decreased exchangeable Al and hence increased exchangeable Ca, Mg, K and Na and effective cation exchange capacity. RM, AS and lime decreased total soluble Al, exchangeable Al and organically bound Al. Formation and retention of hydroxyl-Al polymers were the principal mechanism through which Al phytotoxicity was alleviated by application of these amendments. In addition, the heavy metal contents in the four industrial byproducts constituted a limited environmental hazard in a short time at the rates normally used in agriculture. Therefore, the short-term use of the byproducts, especially AS and RM, as amendments for soil acidity and AI toxicity in acid soils may be a potential alternative to the traditional use of mined gypsum and lime. 展开更多
关键词 acid soil alkaline slag AMELIORATION coal fly ash red mud
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