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交换性离子和pH值对酸性土壤腐蚀的影响 被引量:5
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作者 席艳君 孙成 +1 位作者 张淑泉 高立群 《腐蚀科学与防护技术》 CAS CSCD 北大核心 2002年第6期343-345,共3页
研究了交换性酸度总量、交换性H+ 、交换性铝对A3钢在酸性土壤中的腐蚀影响 .结果表明 :深圳土作为酸性土 ,它的缓冲性能很强 ,加不同 pH的硝酸 ,对其 pH值影响不大 ;随硝酸的pH的增加 ,交换性铝、交换性酸度总量、交换性H+ 有相对减小... 研究了交换性酸度总量、交换性H+ 、交换性铝对A3钢在酸性土壤中的腐蚀影响 .结果表明 :深圳土作为酸性土 ,它的缓冲性能很强 ,加不同 pH的硝酸 ,对其 pH值影响不大 ;随硝酸的pH的增加 ,交换性铝、交换性酸度总量、交换性H+ 有相对减小的趋势 ,腐蚀速率增大 .当土壤pH约为 4时 ,阴极过程发生变化 ,由氧放电转为氢放电 . 展开更多
关键词 土壤腐蚀 交换性酸度总量 交换 PH值 交换氢离子
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橡胶树人工林地土壤酸度特征及酸化原因分析 被引量:11
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作者 孙海东 刘备 +4 位作者 吴炳孙 韦家少 何鹏 高乐 吴敏 《西北林学院学报》 CSCD 北大核心 2016年第2期49-54,共6页
以玄武岩发育的砖红壤地带橡胶树人工林地为研究对象,通过测定土壤交换性酸、交换性盐基离子组成和土壤的pH,探究橡胶树人工林地土壤酸化特征以及土壤pH与潜性酸、交换性盐基之间的关系。结果表明:橡胶树人工林地土壤pH范围在4.97~5.77... 以玄武岩发育的砖红壤地带橡胶树人工林地为研究对象,通过测定土壤交换性酸、交换性盐基离子组成和土壤的pH,探究橡胶树人工林地土壤酸化特征以及土壤pH与潜性酸、交换性盐基之间的关系。结果表明:橡胶树人工林地土壤pH范围在4.97~5.77,二代胶园表层土壤pH略高于裸地和一代胶园;交换性铝在交换性酸中所占的比例随交换性酸总量增加而增加,相关系数达到0.987 7,而有机质对交换性酸度影响较小;供试土壤中对应土层的盐基总量大小依次为:裸地土壤>二代胶园>一代胶园,二代胶园中交换性钙的饱和度高于其他盐基离子,而一代胶园中交换性镁占优势;土壤pH与交换性酸度呈极显著正相关性,与盐基总量呈负相关,且主要受交换性钠和交换性镁的影响。交换性铝是橡胶园酸性土壤酸度的主要贡献者,Na+和Mg+盐基离子淋失是加速胶园土壤酸化的一个重要影响因素。 展开更多
关键词 橡胶树人工林 土壤酸化 交换性酸度 盐基离子
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武功山山地草甸土壤磷素分布格局及其与土壤酸度的关系 被引量:10
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作者 赵晓蕊 郭晓敏 +7 位作者 张金远 牛德奎 单连友 张文元 陈伏生 李志 魏晓华 龚霞 《江西农业大学学报》 CAS CSCD 北大核心 2013年第6期1223-1228,共6页
磷是植物生长的限制性营养因子,以江西省武功山山地草甸为研究对象,分析不同海拔高度(1600~1900 m)和不同土壤深度(0~20 cm和20~40 cm)条件下,土壤全磷、有效磷、活性酸度( pH值)、水解性总酸度及交换性酸度的空间分布特征... 磷是植物生长的限制性营养因子,以江西省武功山山地草甸为研究对象,分析不同海拔高度(1600~1900 m)和不同土壤深度(0~20 cm和20~40 cm)条件下,土壤全磷、有效磷、活性酸度( pH值)、水解性总酸度及交换性酸度的空间分布特征,以及土壤酸度与土壤有效磷的相关性。结果表明:(1)武功山山地草甸土壤有效磷和全磷含量随海拔升高而显著增加,有效磷与全磷的变异范围分别为:3.71~17.78 mg/kg及0.46~1.37 g/kg;土壤有效磷与全磷含量呈显著相关性;(2)土壤pH值随海拔升高无显著性变化,土壤交换性酸度和水解性总酸度均随海拔升高而显著增加;(3)土壤有效磷含量与土壤交换性酸度及水解性总酸度显著正相关。研究揭示了武功山山地草甸土壤磷素和土壤酸度的空间分布格局及其相关性,同时也为武功山山地草甸生态系统的植被恢复提供理论依据。 展开更多
关键词 山地草甸 有效磷 水解酸度 交换酸度 酸度
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Characteristics of Soluble and Exchangeable Acidity inan Extremely Acidified Acid Sulfate Soil 被引量:4
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作者 C.Lin M.D.MELVILLE 《Pedosphere》 SCIE CAS CSCD 1999年第4期323-330,共8页
An extremely acidified acid sulfate soil (ASS) was investigated to characterize its soluble and exchangeableacidity. The results showed that soluble acidity of a sample determined by titration with a KOH solutionwas m... An extremely acidified acid sulfate soil (ASS) was investigated to characterize its soluble and exchangeableacidity. The results showed that soluble acidity of a sample determined by titration with a KOH solutionwas much significantly greater than that indicated by pH measured using a PH meter, particularly for theextremely acidic soil samples. This is because the total soluble acidity of the extremely acidic soil sampleswas mainly composed of various soluble Al and Fe species, possibly in forms of Al sulfate complexes (e.g.,AISO4) and ferrous Fe (Fe2+). It is therefore suggested not to use pH alone as an indicator of soluble acidityin ASS, particularly for extremely acidic ASS. It is also likely that AISO4+ actively pericipated in cationexchange reactions. It appears that the possible involvement of this Al sulfate canon in the canon adsorptionhas significant effect on increasing the amount of acidity being adsorbed by the soils. 展开更多
关键词 acid sulfate soils aluminium sulfate complex exchangeable acidity HYDROLYSIS soluble acidity
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Potential of Industrial Byproducts in Ameliorating Acidity and Aluminum Toxicity of Soils Under Tea Plantation 被引量:43
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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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Ternary PtRuTe alloy nanofibers as an efficient and durable electrocatalyst for hydrogen oxidation reaction in alkaline media 被引量:4
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作者 Si-Yue Ma Tao Ma +2 位作者 Qi Hu Heng-Pan Yang Chuan-Xin He 《Science China Materials》 SCIE EI CAS CSCD 2022年第12期3462-3469,共8页
Sluggish kinetics of anodic hydrogen oxidation reaction(HOR)in alkaline media,which arises from the two orders of magnitude lower HOR activity in alkali than that in acid media for platinum group metals,hinders the co... Sluggish kinetics of anodic hydrogen oxidation reaction(HOR)in alkaline media,which arises from the two orders of magnitude lower HOR activity in alkali than that in acid media for platinum group metals,hinders the commercial implementation of anion exchange membrane fuel cells(AEMFCs).Consequently,the development of platinum-based catalysts combined with high efficiency and durability is urgently required.Herein,we report a facile route for the synthesis of ternary PtRuTe alloy nanofibers with Pt atomic ratio of only 11%via a simple galvanic replacement reaction.We optimize the adsorption strength of platinum and ruthenium towards hydrogen and hydroxyl species by regulating the electron donation from tellurium to platinum and ruthenium.Hence,the obtained trimetallic alloy catalyst exhibits an impressive kinetic current density of 30.6 mA cm^(−2)_(geo) at 50 mV and an exchange current density of 0.426 mA cm^(−2)_(metal),which shows 3.0-and 2.5-fold enhancement compared with the commercial Pt/C in alkaline electrolyte,respectively.Moreover,the catalyst also demonstrates excellent stability with merely 5%activity attenuation after 2000 potential cycles.This work offers new pathways to boost alkaline HOR by rationally designing multicomponent alloys. 展开更多
关键词 alkaline fuel cells hydrogen oxidation reaction ELECTROCATALYSTS Pt-based alloy NANOFIBERS
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Soil Acidification of Alfisols as Influenced by Tea Cultivation in Eastern China 被引量:49
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作者 WANG Hui XU Ren-Kou +1 位作者 WANG Ning LI Xing-Hui 《Pedosphere》 SCIE CAS CSCD 2010年第6期799-806,共8页
Soil acidification is an important process in land degradation around the world as well as in China.Acidification of Alfisols was investigated in the tea gardens with various years of tea cultivation in the eastern Ch... Soil acidification is an important process in land degradation around the world as well as in China.Acidification of Alfisols was investigated in the tea gardens with various years of tea cultivation in the eastern China.Cultivation of tea plants caused soil acidification and soil acidity increased with the increase of tea cultivation period.Soil pH of composite samples from cultivated layers decreased by 1.37,1.62 and 1.85,respectively,after 13,34 and 54 years of tea plantation,as compared to the surface soil obtained from the unused land.Soil acidification rates at early stages of tea cultivation were found to be higher than those at the later stages.The acidification rate for the period of 0-13 years was as high as 4.40 kmol H + ha ?1 year ?1 for the cultivated layer samples.Soil acidification induced the decrease of soil exchangeable base cations and base cation saturation and thus increased the soil exchangeable acidity.Soil acidification also caused the decrease of soil cation exchange capacity,especially for the 54-year-old tea garden.Soil acidification induced by tea plantation also led to the increase of soil exchangeable Al and soluble Al,which was responsible for the Al toxicity to plants. 展开更多
关键词 ALUMINUM base cations cation exchange capacity soil exchangeable acidity tea garden
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