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Geochemical characteristics of soil selenium and evaluation of Serich land resources in the central area of Guiyang City,China 被引量:10
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作者 Ziping Pan shaolin he +3 位作者 Chaojin Li Wei Men Chengzhi Yan Fang Wang 《Acta Geochimica》 EI CAS CSCD 2017年第2期240-249,共10页
Based on the results of multipurpose regional geochemical surveys of the Guizhou Province, geochemical characteristics of soil Se and Se-rich land resources in the central area of Guiyang City were studied and evaluat... Based on the results of multipurpose regional geochemical surveys of the Guizhou Province, geochemical characteristics of soil Se and Se-rich land resources in the central area of Guiyang City were studied and evaluated.Major conclusions are as follows:(1) the Se content in surface soil of the central area of Guiyang City was 0.17–2.89 mg kg^(-1), and the average was 0.78 mg kg^(-1), which were respectively 2.6 and 3.9 times of the national background value of soil and the world background value of soil.The Se content in deep soil was 0.11–1.48 mg kg^(-1), and the average was 0.44 mg kg^(-1), which were respectively 1.5 and2.2 times of the national background value of soil and the world background value of soil. The soil Se content decreased with the increase in the soil depth on the vertical profile, and the surface soil had a higher Se content.(2)Distribution of Se content was mainly affected by parent material, physicochemical properties of soil and other components, soil type, and land use type. Parent material played a key role, as the soil Se content was mainly originated from parent rock and increased with the background value of Se in parent rock, physicochemical properties of soil and other components had certain influences upon the Se content. Se was shown to have a significant linear positive correlation with S and organic carbon but no significant correlation with p H value. Se content varied with different types of soil as follows: skeleton soil > yellow soil > paddy soil > limestone soil > purple soil. Land use type also hadcertain influences upon the soil Se content as follows: dry land > construction land > garden plot > grassland =garden plot > forest land.(3) Taking 0.4 mg kg^(-1)B x(Se) <3.0 mg kg^(-1) as the standard for Se-rich soil, Se-rich soil of the study area covered an area of 2224 km^2 and 92.5% of the total area; the remaining is general soil. The study area had no Se-excess soil. Therefore, the central area of Guiyang City has a high proportion of Se-rich land, a large area of Serich land resources, and a moderate selenium enrichment strength, which have been rarely seen anywhere and provide advantageous resources for the development of Se-rich featured agriculture. 展开更多
关键词 Central area of Guiyang SOILS SELENIUM Geochemical characteristics Evaluation of Se-rich landresource
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我国能源企业生物多样性保护主流化管理路径
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作者 宋阳 柳军 +4 位作者 何少林 徐薇 程琛 刘博 余绩庆 《生物多样性》 北大核心 2025年第1期133-145,共13页
生物多样性是人类赖以生存和社会经济可持续发展的重要基础,多数能源开发空间与生态空间重叠,能源开发利用对生物多样性的影响一直备受关注,特别是可再生能源建设和运营过程兼顾生物多样性保护已经成为能源行业绿色转型的必然要求。对... 生物多样性是人类赖以生存和社会经济可持续发展的重要基础,多数能源开发空间与生态空间重叠,能源开发利用对生物多样性的影响一直备受关注,特别是可再生能源建设和运营过程兼顾生物多样性保护已经成为能源行业绿色转型的必然要求。对我国能源企业而言,参与生物多样性保护既是在应对挑战,也是在寻求机遇,作为生态文明建设的主角之一,能源企业需要探索和落实生物多样性保护主流化的各项举措。本文介绍了能源企业应遵循的国际和国内生物多样性保护政策及监管要求,总结了国内外典型能源企业参与生物多样性保护工作的经验和做法,分析了当前我国能源企业在生物多样性保护方面面临的挑战与不足,提出了我国能源企业实施生物多样性保护的原则和路径。我国现已初步建立了一套由法律法规、综合性政策和专项制度构成的具有中国特色的生物多样性保护管理体系,能源企业主要通过环境影响评价、矿山地质环境保护与土地复垦、水土保持、水资源论证和绿色矿山建设评选等途径,落实生物多样性保护。但是目前我国能源企业仍然存在生物多样性保护理念、资金和人员的三项挑战,生物多样性保护能力和披露水平有待提高。我国能源企业应将生物多样性保护融入企业管理和项目开发运营的各个环节,持续加强生物多样性保护主流化工作;构建生物多样性价值核算与实现体系,将生物多样性价值纳入企业决策;因地制宜落实多层次的保护途径,开展生物多样性监测与成效评估;充分利用国际高层次平台扩大影响力,完善生物多样性披露信息及科学性。通过以上路径积极参与全球生物多样性治理,全面提升生物多样性保护水平,有效应对我国生物多样性保护面临的挑战,促进能源开发与自然生态的和谐共生。 展开更多
关键词 能源行业 生物多样性保护 中国企业 策略
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