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基于BIM技术的管综模块化深化设计落地应用
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作者 张永嘉 《中文科技期刊数据库(全文版)工程技术》 2021年第11期76-78,共3页
随着BIM技术在越来越多项目的管综中得到应用,BIM技术得到了更高的关注与认可。但由于BIM管综应用在实际实施过程中存在落地困难,落地效果差等问题。本文以深化落地为目标,通过标准化流程、表单化管理以及深化手册的应用,同时结合项目... 随着BIM技术在越来越多项目的管综中得到应用,BIM技术得到了更高的关注与认可。但由于BIM管综应用在实际实施过程中存在落地困难,落地效果差等问题。本文以深化落地为目标,通过标准化流程、表单化管理以及深化手册的应用,同时结合项目的应用案例,形成一套BIM管综深化落地应用的经验总结,可为其他项目的深化设计落地提供指导与借鉴。 展开更多
关键词 BIM技术 管综应用 管综流程 落地实施
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Soil-Plant-Microbe Interactions in Stressed Agriculture Management:A Review 被引量:28
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作者 Shobhit Raj VIMAL Jay Shankar SINGH +1 位作者 Naveen Kumar ARORA Surendra SINGH 《Pedosphere》 SCIE CAS CSCD 2017年第2期177-192,共16页
The expected rise in temperature and decreased precipitation owing to climate change and unabated anthropogenic activities add complexity and uncertainty to agro-industry. The impact of soil nutrient imbalance, misman... The expected rise in temperature and decreased precipitation owing to climate change and unabated anthropogenic activities add complexity and uncertainty to agro-industry. The impact of soil nutrient imbalance, mismanaged use of chemicals, high temperature, flood or drought, soil salinity, and heavy metal pollutions, with regard to food security, is increasingly being explored worldwide. This review describes the role of soil-plant-microbe interactions along with organic manure in solving stressed agriculture problems. Beneficial microbes associated with plants are known to stimulate plant growth and enhance plant resistance to biotic (diseases) and abiotic (salinity, drought, pollutions, etc.) stresses. The plant growth-promoting rhizobemteria (PGPR) and mycorrhizae, a key component of soil microbiota, could play vital roles in the maintenance of plant fitness and soil health under stressed environments. The application of organic manure as a soil conditioner to stressed soils along with suitable microbial strains could further enhance the plant-microbe associations and increase the crop yield. A combination of plant, stress-tolerant microbe, and organic amendment represents the tripartite association to offer a favourable environment to the proliferation of beneficial rhizosphere microbes that in turn enhance the plant growth performance in disturbed agro-ecosystem. Agriculture land use patterns with the proper exploitation of plant-microbe associations, with compatible beneficial microbial agents, could be one of the most effective strategies in the management of the concerned agriculture lands owing to climate change resilience. However, the association of such microbes with plants for stressed agriculture management still needs to be explored in greater depth. 展开更多
关键词 beneficial microbes FUNGI microbial agents rnycorrhiza organic manure PATHOGEN plant health plant growth-promoting rhizobacteria
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