4/12/2025, 7:53:26 PM 星期六
隔膜压榨废浆处理装置在地质钻探中的应用
作者:
作者单位:

1.烟台海岸带地质调查中心;2.北京探矿工程研究所

基金项目:

1.深地国家科技重大专项课题“绿色高效精准智能化钻探技术集成2.绿色勘查钻探应用示范3.东部地区战略性矿产靶区查证技术支撑(烟台中心)


Application of Diaphragm Pressing Waste Slurry Treatment Device in Geological Drilling
Author:
Affiliation:

1.Yantai Center of Coastal Zone Geological Survey;2.Beijing Institute of Prospecting Engineering

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  • 参考文献 [16]
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    摘要:

    地质钻探过程中产生的废弃冲洗液常含有钻屑、各种化学处理等污染物。这些污染物具有高色度、高COD、高悬浮物等特性,如果直接排放,对周边土壤、水质、生物等环境生态造成影响。随着绿色勘查理念在地质钻探领域的深入贯彻,隔膜压榨废浆处理装置应运而生并发挥着重要作用。本文主要介绍TGYG型隔膜压榨废浆处理装置以小型撬装模块化结构为设计理念,并在河南驻马店地区中深孔地质钻探中成功应用。通过现场开展废弃冲洗液无害化处理,分离固相含液率降低到20%以下,大幅减少了废弃冲洗液的体积和质量,有效降低环境污染,促进资源回收利用,为地质钻探废弃冲洗液无害化处理提供了宝贵实践经验,可有效助力新一轮找矿突破战略行动全面落实绿色勘查工作。

    Abstract:

    The waste flushing fluid generated during geological drilling often contains pollutants such as drill cuttings and various chemical treatments. These pollutants are characterized by high chromaticity, high COD, and high suspended solids. If directly discharged, they will affect the surrounding soil, water quality, and biological environment. With the in - depth implementation of the concept of green exploration in the field of geological drilling, the diaphragm pressing waste slurry treatment device has emerged and played an important role.This paper mainly introduces the TGYG type diaphragm pressing waste slurry treatment device, which is designed based on the concept of a small skid - mounted modular structure. It has been successfully applied in medium - deep hole geological drilling in Zhumadian, Henan. Through on - site harmless treatment of the waste flushing fluid, the liquid content of the separated solid phase is reduced to less than 20%, significantly reducing the volume and mass of the waste flushing fluid, reducing environmental pollution, and promoting resource recycling. It provides valuable practical experience for the harmless treatment of waste flushing fluid in geological drilling and can effectively contribute to the full implementation of green exploration work in the new round of strategic action for breakthroughs in mineral exploration.

    参考文献
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  • 收稿日期:2024-12-29
  • 最后修改日期:2025-03-06
  • 录用日期:2025-03-18
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