土壤污染物中毒死蜱物质含量检测数据
收藏浙江省数据知识产权登记平台2024-12-05 更新2024-12-06 收录
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通过检测数据分析研判,我们可以判断土壤污染物中毒死蜱物质是否超标,避免因毒死蜱物质持续污染而产生的污染问题,有以下几点作用。一、进行土壤污染治理可以减少农作物中的该有害物质含量,确保食品的质量和安全;二、根据检测结果可有针对的改善士壤质量,提高土壤的生产力,可以为农业发展提供可持续的基础,同时也有利于保护和改善环境。另外可结合地理信息系统(GIS)技术,将各地点的土壤地理数据和污染物含量信息进行深度整合和分析,绘制位置-污染物含量地图,以直观的可视化形式呈现给用户,增强地理位置与污染物含量关系的理解,构建起一个包含污染源、污染物种类、污染程度、污染扩散路径等多维度信息的地理图谱。这一图谱不仅能够提供实时的监测数据,还能够通过数据之间的关联性,揭示潜在的污染风险和趋势。数据采集:对各地区不同地点进行土壤采集,不同地点采集的土壤按样品编号进行划分,对采集的土壤污染物中毒死蜱物质进行含量检测。数据判定:按X= C2* V0*D/ Vw 公式中X为土壤污染物中毒死蜱物质含量,式中C2为萃取液中浓度;V0为萃取液体积,D为稀释倍数,Vw为取样量。毒死蜱物质含量标准要求为0.1mg/kg,若土壤污染物中毒死蜱物质含量不大于0.1mg/kg,则该土壤的检测结果为合格,否则检测结果为不合格,另外当月X含量与相同地理位置上月X含量相比,污染程度可分为加重、减轻和持平。
Based on detection data analysis and evaluation, we can determine whether the chlorpyrifos content in soil pollutants exceeds the standard, thereby preventing pollution issues caused by persistent chlorpyrifos contamination. This dataset has the following functions:
1. Soil pollution remediation can reduce the content of this harmful substance (chlorpyrifos) in crops, ensuring food quality and safety;
2. Targeted soil quality improvement can be implemented based on detection results, enhancing soil productivity, providing a sustainable foundation for agricultural development, and contributing to environmental protection and improvement.
Additionally, by integrating Geographic Information System (GIS) technology, we can deeply integrate and analyze soil geographic data and pollutant content information from various locations, and generate location-pollutant content maps to present to users in an intuitive visual format, thereby strengthening the understanding of the correlation between geographic location and pollutant content. This will establish a geographic knowledge graph that covers multi-dimensional information including pollution sources, pollutant types, pollution levels, and pollution diffusion paths. This knowledge graph not only provides real-time monitoring data, but also reveals potential pollution risks and trends through the interrelationships between datasets.
Data Collection: Soil samples are collected from different locations across various regions, and the samples from different locations are classified by their sample numbers. The chlorpyrifos content in the collected soil pollutants is then detected.
Data Evaluation: The formula $X = (C_2 imes V_0 imes D) / V_w$ is adopted, where $X$ represents the chlorpyrifos content in soil pollutants, $C_2$ is the concentration of chlorpyrifos in the extract, $V_0$ is the volume of the extract, $D$ is the dilution factor, and $V_w$ is the sample volume. The standard limit for chlorpyrifos content is 0.1 mg/kg. If the chlorpyrifos content in soil pollutants is ≤ 0.1 mg/kg, the detection result of the soil sample is qualified; otherwise, it is unqualified. Furthermore, when comparing the current month's $X$ content with that of the same geographic location in the previous month, the pollution level can be categorized into three grades: aggravated, alleviated, and unchanged.
提供机构:
杭州晟倬双博科技有限公司
创建时间:
2024-10-28
搜集汇总
数据集介绍

背景与挑战
背景概述
该数据集包含7536条土壤中毒死蜱物质含量检测记录,每月更新,涵盖检测时间、地点、含量等关键信息,用于土壤污染治理和食品安全保障。
以上内容由遇见数据集搜集并总结生成



