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首页> 外文期刊>The Science of the Total Environment >Intensify production, transform biomass to energy and novel goods and protect soils in Europe-A vision how to mobilize marginal lands
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Intensify production, transform biomass to energy and novel goods and protect soils in Europe-A vision how to mobilize marginal lands

机译:集约化生产,将生物质转化为能源和新型商品并保护欧洲的土壤-远景如何动员边缘土地

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HighlightsChallenges for smart intensification of marginal land are manifoldTools for precise agriculture will aid to detect pollutant hotspots and poor soilsCrop rotation and adapted crop choice will yield biomassAmendments will sequester carbon and release fertilizer when neededPotentials of marginal soils can be unlocked and lead to ecological and economical successGraphical abstractDisplay OmittedAbstractThe rapid increase of the world population constantly demands more food production from agricultural soils. This causes conflicts, since at the same time strong interest arises on novel bio-based products from agriculture, and new perspectives for rural landscapes with their valuable ecosystem services. Agriculture is in transition to fulfill these demands. In many countries, conventional farming, influenced by post-war food requirements, has largely been transformed into integrated and sustainable farming. However, since it is estimated that agricultural production systems will have to produce food for a global population that might amount to 9.1 billion by 2050 and over 10 billion by the end of the century, we will require an even smarter use of the available land, including fallow and derelict sites. One of the biggest challenges is to reverse non-sustainable management and land degradation. Innovative technologies and principles have to be applied to characterize marginal lands, explore options for remediation and re-establish productivity. With view to the heterogeneity of agricultural lands, it is more than logical to apply specific crop management and production practices according to soil conditions. Cross-fertilizing with conservation agriculture, such a novel approach will provide (1) increased resource use efficiency by producing more with less (ensuring food security), (2) improved product quality, (3) ameliorated nutritional status in food and feed products, (4) increased sustainability, (5) product traceability and (6) minimized negative environmental impacts notably on biodiversity and ecological functions. A sustainable strategy for future agriculture should concentrate on production of food and fodder, before utilizing bulk fractions for emerging bio-based products and convert residual stage products to compost, biochar and bioenergy. The present position paper discusses recent developments to indicate how to unlock the potentials of marginal land.
机译: 突出显示 边际土地智能集约化的挑战多种多样 用于精确农业的工具将有助于检测污染物热点和贫瘠的土壤 轮作和适应作物的选择将产生生物量 修正案将隔离碳并在需要时释放肥料 < / ce:list-item> 边际土壤的潜力可以解锁并带来生态和经济上的成功 图形摘要 省略显示 摘要 世界人口的迅速增长不断要求农业生产更多的粮食文化土壤。这引起了冲突,因为与此同时,人们对来自农业的新型生物基产品以及对农村景观及其有价值的生态系统服务的新观点产生了浓厚的兴趣。为了满足这些需求,农业正在转型。在许多国家,受战后粮食需求的影响,常规农业在很大程度上已转变为一体化和可持续农业。但是,由于估计农业生产系统将必须为全球人口生产粮食,到2050年可能达到91亿,到本世纪末将超过100亿,因此我们将需要更明智地利用可利用的土地,包括休耕地和废弃地。最大的挑战之一是扭转不可持续的管理和土地退化。必须应用创新技术和原则来表征边缘土地,探索补救方案和恢复生产力。考虑到农业用地的异质性,根据土壤条件应用特定的作物管理和生产方法是合乎逻辑的。这种与保护性农业交叉施肥的新方法将(1)通过少花钱多生产(确保粮食安全)来提高资源利用效率;(2)提高产品质量;(3)改善食品和饲料产品的营养状况, (4)增加可持续性,(5)产品可追溯性,(6)最小化对环境的负面影响,特别是对生物多样性和生态功能的负面影响。未来农业的可持续战略应集中于粮食和饲料的生产,然后再将散装部分用于新兴的生物基产品,并将剩余阶段的产品转化为堆肥,生物炭和生物能源。本立场文件讨论了最近的发展,以指示如何释放边缘土地的潜力。

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