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松嫩平原苏打盐碱地治理与利用 被引量:124
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作者 李取生 李秀军 +3 位作者 李晓军 王志春 宋长春 章光新 《资源科学》 CSSCI CSCD 北大核心 2003年第1期15-20,共6页
该文介绍了松嫩平原苏打盐碱地的分布及利用现状 ,对苏打盐碱地农业利用中存在的问题进行了分析。根据苏打盐碱化的成因、特性和近年来对其治理方面的最新攻关研究进展 ,实施分类治理 ,分别提出了一些可行有效的方法 :即对低洼易涝盐碱... 该文介绍了松嫩平原苏打盐碱地的分布及利用现状 ,对苏打盐碱地农业利用中存在的问题进行了分析。根据苏打盐碱化的成因、特性和近年来对其治理方面的最新攻关研究进展 ,实施分类治理 ,分别提出了一些可行有效的方法 :即对低洼易涝盐碱地进行高产优势水稻开发 ,采取包括施用土壤改良剂、增施有机肥、以砂压碱等多种形式的土壤改良措施和以盐碱地水稻钵育大苗抗逆栽培技术为核心的栽培措施 ;对地势相对较高的碱化旱田采用微咸水淋洗改良措施等。试验表明 :施用TC 1号苏打盐渍化土壤改良剂 1a后 ,耕层土壤溶液钠离子浓度降低 2 6 2 %~ 3 9 9% ,土壤渗透性增强 ,团聚体增加 12 0 %~ 15 0 % ,水稻单产提高 10 8% ;压砂和施加有机肥则降低了根层土壤的pH值 ,且它们的施加量与pH值的降低速率呈正相关 ;盐碱地水稻钵育大苗抗逆栽培技术使秧苗各项素质指标比普通育苗提高 3 0 %左右 ,平均增产 15 %。碱化旱田微咸水淋洗改良则使 0~ 3 5cm深度的亚粘土壤含盐量降低 2 0 %~ 40 % ,ESP降低 2 6 7% ,使高产高效作物的种植成为可能 。 展开更多
关键词 松嫩平原 苏打盐碱地 物理化学改良 水土资源利用 治理
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Biochar-Induced Changes in Soil Resilience:Effects of Soil Texture and Biochar Dosage 被引量:7
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作者 Ayodele Ebenezer AJAYI Rainer HORN 《Pedosphere》 SCIE CAS CSCD 2017年第2期236-247,共12页
Biochars are, amongst other available amendment materials, considered as an attractive tool in agriculture for carbon sequestration and improvement of soil functions. The latter is widely discussed as a consequence of... Biochars are, amongst other available amendment materials, considered as an attractive tool in agriculture for carbon sequestration and improvement of soil functions. The latter is widely discussed as a consequence of improved physical quality of the amended soil.However, the mechanisms for this improvement are still poorly understood. This study investigated the effect of woodchip biochar amendment on micro-structural development, micro-and macro-structural stability, and resilience of two differently textured soils,fine sand(FS) and sandy loam(SL). Test substrates were prepared by adding 50 or 100 g kg^(-1) biochar to FS or SL. Total porosity and plant available water were significantly increased in both soils. Moreover, compressive strength of the aggregates was significantly decreased when biochar amount was doubled. Mechanical resilience of the aggregates at both micro-and macro-scale was improved in the biochar-amended soils, impacting the cohesion and compressive behavior. A combination of these effects will result in an improved pore structure and aeration. Consequently, the physicochemical environment for plants and microbes is improved. Furthermore, the improved stability properties will result in better capacity of the biochar-amended soil to recover from the myriad of mechanical stresses imposed under arable systems, including vehicle traffic, to the weight of overburden soil. However, it was noted that doubling the amendment rate did not in any case offer any remarkable additional improvement in these properties, suggesting a further need to investigate the optimal amendment rate. 展开更多
关键词 aggregate stability amendment material compressive strength RHEOMETRY shear properties total porosity
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