[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"item-2331":3},{"id":4,"title":5,"url":6,"summary":7,"summary_zh":8,"content":9,"source_name":10,"source_url":6,"published_at":11,"category":12,"cover_url":9,"hotness":13,"is_selected":14,"score":15,"score_detail":16,"sources":18,"tags":20,"view_count":15,"doi":25,"paper":26,"created_at":41},2331,"Assessment of Seasonal Variations in Groundwater Quality Using Physicochemical Analysis and Water Quality Index in Panna, Madhya Pradesh, India: A Review","https:\u002F\u002Fdoi.org\u002F10.36948\u002Fijfmr.2026.v08i05.87635","Groundwater is one of the most important freshwater resources for domestic, agricultural and institutional requirements, particularly in regions where surface-water availability is seasonal and uneven. In India, increasing dependence on groundwater, rapid urbanization, inadequate drainage and sewage infrastructure, agricultural activities and changing recharge conditions have increased the vulnerability of aquifers to both quantitative and qualitative degradation. Panna District of Madhya Pradesh represents an important area for groundwater-quality assessment because of its varied geological formations, seasonal climatic conditions and increasing dependence on groundwater resources. The present review synthesizes the available information on seasonal groundwater-quality variation in selected locations of Panna using physicochemical analysis and the Water Quality Index (WQI). The documented investigation covers seven sampling locations, namely Diamond Chauraha, Mohan Nivas Chauraha, Gandhi Chowk, Ajaygarh Chauraha, Kishorji Mandir, Baldevji Mandir and Purana Power House. Seven major physicochemical parameters—chloride, calcium hardness, total hardness, pH, electrical conductivity (EC), temperature and total dissolved solids (TDS)—were considered. Groundwater monitoring was conducted from May to August, representing pre-monsoon, monsoon and post-monsoon conditions. The reviewed data indicate considerable spatial and seasonal variability in groundwater chemistry. During May, TDS ranged from 134 to 481.41 mg\u002FL, while total hardness varied from 300 to 370 mg\u002FL. The highest TDS was observed at Purana Power House, whereas Ajaygarh Chauraha showed the lowest TDS. The WQI values reported for the selected locations indicate comparatively better groundwater quality at Ajaygarh Chauraha and deterioration at locations subjected to greater urban and anthropogenic pressure. The review also identifies important research gaps, including limited monitoring duration, restricted sampling density and the absence of several important chemical and microbiological parameters. Integration of long-term monitoring, GIS, remote sensing and expanded hydrochemical analysis is recommended for sustainable groundwater management in Panna.","地下水是满足生活、农业和机构需求的最重要淡水资源之一，在地表水可用性具有季节性和不均衡性的地区尤为如此。在印度，对地下水依赖程度的不断增加、快速城市化、排水和污水处理基础设施不足、农业活动以及补给条件的变化，加剧了含水层在水量和水质两方面退化的脆弱性。中央邦潘纳县因其多样的地质构造、季节性气候条件以及对地下水资源日益增长的依赖，成为地下水质量评估的重要区域。本文综述综合了现有关于潘纳县选定地点季节性地下水质量变化的信息，采用物理化学分析和水质指数（WQI）进行研究。所综述的调查涵盖七个采样点，即Diamond Chauraha、Mohan Nivas Chauraha、Gandhi Chowk、Ajaygarh Chauraha、Kishorji Mandir、Baldevji Mandir和Purana Power House。研究考虑了七项主要物理化学参数——氯化物、钙硬度、总硬度、pH、电导率（EC）、温度和总溶解固体（TDS）。地下水监测于5月至8月进行，涵盖季风前、季风期和季风后条件。所综述的数据表明，地下水化学特征存在显著的空间和季节性变异。5月期间，TDS范围为134至481.41 mg\u002FL，总硬度变化范围为300至370 mg\u002FL。TDS最高值出现在Purana Power House，而Ajaygarh Chauraha的TDS最低。所选地点的WQI值表明，Ajaygarh Chauraha的地下水质量相对较好，而受城市和人为压力较大的地点则出现水质恶化。本综述还指出了重要的研究空白，包括监测持续时间有限、采样密度受限以及若干重要化学和微生物参数缺失。建议整合长期监测、GIS、遥感和扩展的水化学分析，以实现潘纳县地下水的可持续管理。",null,"International Journal For Multidisciplinary Research","2026-09-10T00:00:00Z","论文",10,false,0,{"impact":15,"substance":15,"depth":15,"authority":15,"freshness":15,"relevant":15,"comment":17},"印度区域地下水季节性水质综述，与三农、农业信息化及中国数字乡村议题无直接关联，不建议进入每日精选。",[19],{"name":10,"url":6},[21,22,23,24],"农业水资源","遥感监测","地下水质量","水质指数","10.36948\u002Fijfmr.2026.v08i05.87635",{"doi":25,"openalex_id":27,"authors":28,"venue":10,"cited_by_count":15,"oa_url":6,"card":33,"direction":39,"ingested_from":40},"W7212275142",[29,31],{"name":30,"orcid":9},"Mahendra Singh Tekam",{"name":32,"orcid":9},"D.C. Rahi",{"tldr":34,"method":35,"finding":36,"direction":37,"opportunity":38},"综述印度潘纳地区地下水质量的季节性变化，用理化分析与水质指数评估七个采样点。","综述七点七项理化指标（pH、EC、TDS、硬度等）与WQI，5-8月监测。","地下水化学时空差异明显，城市人为压力大的点位WQI较差，Ajaygarh Chauraha水质较好。","农业绿色发展与碳","可结合GIS、遥感与长期监测，扩展微生物及水化学指标，构建农业区地下水质量预警模型。","农业遥感与作物表型","openalex","2026-09-13T23:30:26.201075Z"]