农文旅融合乡村振兴背景下重金属土壤修复技术的创新实践

Juan Wu, Teng Wan
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摘要

随着农村经济的发展和现代化的推进,农业、文化旅游等领域的融合逐渐成为推动乡村振兴的新动力。然而,近年来,矿山开发和资源利用导致农田土壤重金属污染严重,造成了重大的食品安全风险和经济损失,给农业、文化、旅游等领域的融合发展带来了严峻挑战。因此,中国对解决农村废弃矿区土壤修复问题投入了大量关注。本研究以某地区受镉、锌、铜等重金属污染的废弃矿区为研究对象。在污染区的土壤中添加了生物炭和堆肥两种材料,生物炭和堆肥的重量比分别设置为 0:100、10:90、20:80、40:60、60:40 和 100:0。通过高温混合两种材料制备了一种新型生物炭,并探讨了其对重金属污染农村废弃矿区土壤 pH 值和有机碳含量的影响。此外,还研究了生物炭对土壤中重金属的有效去除和吸附,以及对土壤区域作物生长的促进作用。这表明,使用生物炭和堆肥可以显著修复矿区受重金属污染的土壤,提高土壤利用率。同时,研究发现,农业、文化和旅游的融合为土壤修复技术提供了独特的视角,这可能涉及到保持乡村文化传统、增强乡村旅游吸引力、确保食品安全和农业可持续发展等方面。因此,修复技术的选择和实施需要考虑多重因素,以确保经济、社会和环境的三重效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Innovative Practice of Heavy Metal Soil Remediation Technology under the Background of Rural Revitalization by Integrating Agriculture, Culture and Tourism
With the development and modernization of rural economies, the integration of agriculture, cultural tourism, and other fields has gradually become a new driving force for promoting rural revitalization. However, in recent years, the development of mines and the utilization of resources have led to severe heavy metal pollution of farmland soil, causing significant food safety risks and economic losses, which pose serious challenges to the integration of agriculture, culture, and tourism. Therefore, China has invested a lot of attention in addressing the issue of soil remediation in abandoned rural mining areas. The study focuses on an abandoned mining area polluted by heavy metals such as Cd, Zn, and Cu in a certain area. Two materials, biochar and compost, were added to the soil in the polluted area, and the weight ratios of biochar and compost were set to 0:100, 10:90, 20:80, 40:60, 60:40, and 100:0. A new type of biochar was prepared by mixing two materials at high temperatures, and its effects on the pH and organic carbon content of soil in heavy metal polluted rural abandoned mining areas were explored. The effective removal and adsorption of heavy metals in the soil were also investigated, as was the promotion of crop growth in the soil area. This indicates that the use of biochar and compost can significantly repair heavy metal contaminated soil in mining areas and improve soil availability. Meanwhile, research has found that the integration of agriculture, culture, and tourism provides a unique perspective on soil remediation technology, which may involve maintaining rural cultural traditions, enhancing the attractiveness of rural tourism, and ensuring food safety and agricultural sustainability. Therefore, the selection and implementation of repair technologies need to consider multiple factors to ensure the triple benefits to the economy, society, and environment.
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