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首页> 外文期刊>The Journal of Applied Ecology >Urban cultivation in allotments maintains soil qualities adversely affected by conventional agriculture
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Urban cultivation in allotments maintains soil qualities adversely affected by conventional agriculture

机译:城市在分配维护的土壤种植品质由传统的不利影响农业

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1. Modern agriculture, in seeking to maximize yields to meet growing global food demand, has caused loss of soil organic carbon (SOC) and compaction, impairing critical regulating and supporting ecosystem services upon which humans also depend. Own-growing makes an important contribution to food security in urban areas globally, but its effects on soil qualities that underpin ecosystem service provision are currently unknown. 2. We compared the main indicators of soil quality;SOC storage, total nitrogen (TN), C:N ratio and bulk density (BD) in urban allotments to soils from the surrounding agricultural region, and between the allotments and other urban greenspaces in a typical UK city. A questionnaire was used to investigate allotment management practices that influence soil properties. 3. Allotment soils had 32% higher SOC concentrations and 36% higher C:N ratios than pastures and arable fields and 25% higher TN and 10% lower BD than arable soils. 4. There was no significant difference between SOC concentration in allotments and urban non-domestic greenspaces, but it was higher in domestic gardens beneath woody vegetation. Allotment soil C:N ratio exceeded that in non-domestic greenspaces, but was lower than that in garden soil. 5. Three-quarters of surveyed allotment plot holders added manure, 95% composted biomass on-site, and many added organic-based fertilizers and commercial composts. This may explain the maintenance of SOC, C:N ratios, TN and low BD, which are positively associated with soil functioning. 6. Synthesis and applications. Maintenance and protection of the quality of our soil resource is essential for sustainable food production and for regulating and supporting ecosystem services upon which we depend. Our study establishes, for the first time, that small-scale urban food production can occur without the penalty of soil degradation seen in conventional agriculture, and maintains the high soil quality seen in urban greenspaces. Given the involvement of over 800 million people in urban agriculture globally, and its important contribution to food security, our findings suggest that to better protect soil functions, local, national and international urban planning and policy making should promote more urban own-growing in preference to further intensification of conventional agriculture to meet increasing food demand.
机译:1. 产量,以满足日益增长的全球粮食需求造成土壤有机碳(SOC)损失压实,影响关键的调节支持人类生态系统服务也取决于。在城市地区对粮食安全的贡献在全球范围内,但其对土壤质量的影响支撑生态系统服务条款目前未知。土壤质量指标;SOC存储、总数氮(TN)、C: N比和体积密度(BD)城市分配从周围的土壤农业地区,和之间的分配在一个典型的英国城市和其他城市greenspaces。一份调查问卷用于调查分配影响土壤的管理实践属性。浓度和高36% C: N比草地和耕地字段和TN和高出25%BD比耕地土壤低10%。SOC浓度显著区别在分配和城市非国内greenspaces,但这是更高的国内花园下木本植物。在国外greenspaces的依赖度超过,但是在花园的土壤是低于。四分之三的受访分配图添加肥料,堆肥生物质能现场95%,许多添加有机肥料和捕集商业堆肥。维护SOC, C: N比率,TN和较低的双相障碍,哪些是积极与土壤有关功能。维护和保护我们的质量土壤资源可持续食品是至关重要的生产和管理和支持我们依赖的生态系统服务。研究建立了,第一次小规模的城市粮食生产可能发生没有处罚的土壤退化传统农业,和维护高土壤质量在城市greenspaces看到。超过8亿人参与的城市全球农业,及其重要对食品安全的贡献,我们的发现建议,为了更好地保护土壤功能,地方、国家和国际城市规划和决策应该促进更多的城市为了进一步满足国内日益增长的偏好传统农业的集约化满足粮食需求增加。

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