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Systems thinking on intensification and sustainability: systems boundaries, processes and dimensions

机译:关于集约化和可持续性的系统思考:系统边界,过程和规模

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'Sustainable intensification' is gaining popularity among academics and donor agencies without much examination of the ambiguities in both terms, made worse by combining them. The terms can be made more serviceable by distinguishing between definitions by extension and definitions by intension. Difficulties with the term 'intensification' are addressed by considering the System of Rice Intensification (SRI). This reverses Green Revolution thinking about intensification as a matter of increasing material inputs. Changes in crop management can raise food output by reducing such inputs, with increased reliance on knowledge and management that use available resources more productively and sustainably. Its initial increases in labor inputs are usually transitory.Conjunctions of different disciplines and different levels of analysis and action are considered with reference to the factors of nestedness and contingence. Subjects bearing on sustainable intensification which can benefit from disciplinary convergence include: biogeochemistry to address problems of climate change; part-time farming to adapt to changing economic opportunities; and symbiotic endophytes that can enhance crop health and growth. The concept of 'causation' is disaggregated to consider 'processual' as distinguished from 'mechanistic' causation. Systems thinking is likely to be more productive for addressing interactions within and between subsystems rather than for theorizing about systems as a whole.
机译:“可持续集约化”在学者和捐助机构中越来越流行,而没有对这两个方面的模棱两可进行过多检查,而将它们结合起来变得更糟。通过区分扩展定义和内涵定义,可以使这些术语更有用。考虑到“稻米集约化制度”(SRI)来解决“集约化”一词的困难。这逆转了绿色革命关于增加物质投入的关于集约化的思考。作物管理的变化可通过减少此类投入来增加粮食产量,从而更加依赖知识和管理方式,从而更有效地利用现有资源。它最初的劳动力投入通常是暂时的。结合嵌套和偶然性因素,考虑不同学科,不同分析和行动水平的结合。可以从学科融合中受益的涉及可持续集约化的主题包括:解决气候变化问题的生物地球化学;兼职农业以适应不断变化的经济机会;以及可以增强作物健康和生长的共生内生菌。 “因果关系”的概念被分解为将“过程性”因果关系与“机械性”因果关系区分开。对于解决子系统内部和子系统之间的交互,而不是对整个系统进行理论化,系统思考可能会更有效率。

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