Mapping and identifying heavy metals in water use as chemicals of potential concerns in upper watershed

Publish Year: 1402
نوع سند: مقاله ژورنالی
زبان: English
View: 85

This Paper With 24 Page And PDF Format Ready To Download

  • Certificate
  • من نویسنده این مقاله هستم

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این Paper:

شناسه ملی سند علمی:

JR_GJESM-9-4_008

تاریخ نمایه سازی: 16 اردیبهشت 1402

Abstract:

BACKGROUND AND OBJECTIVES: Excessive presence of heavy metals in water sources can reduce water quality and harm human health. However, research on heavy metals from water sources for sanitation and hygiene purposes and drinking water in the Upper Citarum Watershed remains limited. This study focuses on the distribution of heavy metals and chemicals that have potential health risks.METHODS: Ten heavy metals, namely, lead, cadmium, chromium, copper, cobalt, iron, mercury, manganese, arsenic, and zinc, were analyzed. Groundwater samples were collected from ۱۶۰ locations, and drinking water samples (for respondents who do not drink groundwater) were collected from ۹۸ locations. Heavy metal concentrations were detected using inductively coupled plasma optical emission spectrometry.FINDINGS: The levels of arsenic, cadmium, cobalt, iron, mercury, manganese, and lead exceeded the quality standards for drinking water, while those of arsenic and cobalt did not exceed the quality standards for water hygiene and sanitation. Arsenic and cobalt quality standards were more stringent for drinking water compared with those for water hygiene and sanitation. Lead–cadmium and iron–manganese in groundwater showed a positive Spearman correlation (p<۰.۰۵) and may originate from the same source. Copper and zinc did not exceed the quality standard in ۱۰۰% of drinking water samples. Iron and zinc in groundwater differed significantly due to variations in topography and soil type (p<۰.۰۵). This study reveals that ۶ out of ۱۰ heavy metals are chemicals of potential concern and are sorted based on potential risks to health, that is, arsenic > mercury > lead > cobalt > manganese > cadmium. Ingestion is the main pathway for potential risk, and children are more likely to be at risk than adults.CONCLUSION: Stakeholders and decision makers must immediately implement sustainable actions to protect public health. Evaluation of water sources, technology, maintenance processes, and water quality should be conducted before and after technology use from Refill Drinking Water Depots to ensure that raw and processing water meets the quality standards.

Keywords:

Authors

N. Fahimah

Department of Environmental Engineering, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

I.R.S. Salami

Environmental Management Technology Research Group, Department of Environmental Engineering, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

K. Oginawati

Environmental Management Technology Research Group, Department of Environmental Engineering, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

S.J. Yapfrine

Department of Environmental Engineering, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

A. Supriatin

Industrial Hygiene and Technology Laboratory, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

Y.N. Thaher

Department of Environmental Engineering, Institut Teknologi Bandung, Jalan Ganesha ۱۰, Bandung ۴۰۱۳۲, West Java, Indonesia

مراجع و منابع این Paper:

لیست زیر مراجع و منابع استفاده شده در این Paper را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود Paper لینک شده اند :
  • Abeer, N.; Khan, S.A.; Muhammad, S.; Rasool, A.; Ahmad, I., ...
  • Ali, H.; Khan, E.; Ilahi, I., (۲۰۱۹). Environmental chemistry and ...
  • Alina, A.T.; Oshunrinade, O., (۲۰۱۶). Comparison of water quality from ...
  • Anyanwu, O.B.; Ezejiofor, A.N.; Igweze, Z.N.; dan Orisakwe, O.E., (۲۰۱۸). ...
  • ATSDR, (۱۹۹۰). ATSDR case studies in environmental medicine. Arsenic toxicity. ...
  • ATSDR, (۲۰۰۴). Toxicological Profile for Cobalt. Agency for Toxic Substances ...
  • Baek, K.; Seo, Y.; Kim, J.; dan Baek, S., (۲۰۲۰). ...
  • Balali-Mood, M.; Naseri, K.; Tahergorabi, Z.; Khazdair, MR.; and Sadeghi, ...
  • Banerjee, S.; Dhar, S.; Sudarshan, M.; Chakraborty, A.; Bhattacharjee, S.; ...
  • Bernat, X.; Sanchez, I.; Stuber, F.; Bengoa, C.; Fortuny, A.; ...
  • Bhardj, V.; Kumar, P.; dan Singhal, G., (۲۰۱۴). Toxicity of ...
  • Bhunia, G.S.; Shit, P.K.; Maiti. R., (۲۰۱۸). Comparison of GIS-based interpolation ...
  • Bielak, E.; Marcinkowska, E., (۲۰۲۲). Heavy metals in leathers, artificial ...
  • Bradman, A.; Eskenazi, B.; Sutton, P.; Athanasoulis, M.; Goldman, L.R., ...
  • BRES, (۲۰۱۸). Ringkasan eksekutif informasi kinerja pengelolaan lingkungan hidup daerah ...
  • Briffa, J.; Sinagra, E.; Blundell, R., (۲۰۲۰). Heavy metal pollution ...
  • Budiman, B.T.P.; Dhahiyat, Y.; Hamdani, H., (۲۰۱۲). Bioakumulasi logam berat ...
  • Czech, T.; Marchewicz, A.; Sobczyk, A.T.; Krupa, A.; Jaworek, A.; ...
  • DHSS, (۲۰۱۳). Arsenic Contaminated Soil. Division of Public Health. Delaware ...
  • Engwa, G.A.; Ferdinand, P.U.; Nwalo, F.N.; Unachukwu, M.N., (۲۰۱۹). Mechanism ...
  • EWG, (۲۰۲۱). Drinking water standards, no-compromise benchmarks to fully protect ...
  • Fadhilah, R.; Oginawati, K.; Romantis, N.A.Y., (۲۰۱۸). The pollution profile ...
  • Fahimah, N.; Oginawati, K.; Suharyanto., (۲۰۲۰). Fate and spatial distribution ...
  • Febrion, C.; Falah, U.S., (۲۰۱۸). Studi identifikasi pencemaran logam timbal ...
  • Force, E.R.; Cox, L.J., (۱۹۱۶). Manganese contents of some sedimentary ...
  • Gao, B.; Gao, L.; Gao, J.; Xu, D.; Wang, Q.; ...
  • Gao, Z.; Liu, W.; Liu, J.; Wang, Z.; Wang, S., ...
  • Gardner, R.M.; Kippler, M.; Tofail, M.; Bottai, M.; Hamadani, J.; ...
  • Gleason, K.M., (۲۰۱۷). Heavy metals, chronic malnutrition and neurodevelopment among ...
  • Hao, Y.; Tian, S.; Jiao, X.; Mi, N.; Zhang, B.; ...
  • Hartmann, A.; Jasechko, S.; Gleeson, T.; Wada, Y.; Andreo, B.; ...
  • Hasanawi, A.; Salami, I.R.S., (۲۰۲۲). Analysis of physicochemical and microbial ...
  • Hooda, P.S., (۲۰۱۰). Trace elements in soils. Wiley Publication (۵۹۵ ...
  • Hossain, M.; Bhattacharya, P.; Frape, S.K.; Ahmed, K.M.; Jacks, G.; ...
  • Hu, X.; Wei, X.; Ling, J.; and Chen, J., (۲۰۲۱). ...
  • Ismael, M.; Mokhtar, A.; Adil, H.; Li, X.; Li, X., ...
  • Jarsjo, J.; Andersson-Skold, Y.; Froberg, M.; Pietron, J.; Borgstrom, R.; ...
  • Jayasumana, C.; Fonseka, S.; Fernando, A.; Jayalath, K.; Amarasinghe, M.; ...
  • Jeyakumar, P.; Debnath, C.; Vijayaraghavan, R.; Muthuraj, M., (۲۰۲۳). Trends ...
  • Jiang, C.; Zhao, Q.; Zheng, L.; Chen, X.; Li, C.; ...
  • JOD, (۲۰۲۰). Sungai Citarum [Citarum River]. Jabar Open Data, West ...
  • Jyothi, N.R.; Farook, N.A.M., (۲۰۲۰). Mercury toxicity in public health. ...
  • Karbassi, A.R.; Heidari, M., (۲۰۱۵). An investigation on role of ...
  • Karbassi, A.R.; Tajziehchi, S.; Afshar, S., (۲۰۱۵). An investigation on ...
  • Kark, R.A.; Poskanzer, D.C.; Bullock, J.D.; Boylen G., (۱۹۷۱). Mercury ...
  • Kayode, O.T.; Aizebeokhai, A.P.; Odukoya, A.M., (۲۰۲۰). Arsenic in agricultural ...
  • Komarawidjaja, W., (۲۰۱۷). Paparan limbah cair industri mengandung logam berat ...
  • Kousa, A.; Komulainen, H.; Hatakka, T.; Backman, B.; Hartikainen, S., ...
  • Kusuma, M.S.B.; Hutosit, L.M.; Kombaitan, B.; Syafila, M.; Setiadi, T.; ...
  • Lestari, I.; Singkam, A.; Agustin, F.; Miftahussalimah, P.; Maharani, A.; ...
  • Loho, J.N., (۲۰۱۳). Prevalensi labioschisis di RSUP. Prof. dr. R. ...
  • Long, X.; Liu, F.; Zhou, X.; Pi, J.; Yin, W.; ...
  • Luo, Y.; Rao, J.; Jia, Q., (۲۰۲۲). Heavy metal pollution ...
  • Maity, J.P.; Nath, B.; Yen-Chen, C.; Bhattacharya, P.; Sracek, O.; ...
  • Maleki, A.; Jari, H., (۲۰۲۱). Evaluation of drinking water quality ...
  • Malik, B.; Sandhu, K.K., (۲۰۲۳). Occurrence and impact of heavy ...
  • Manisalidis, I.; Stavropoulou, E.; Stavropoulos, A.; Bezirtzoglou, E., (۲۰۲۰). Environmental ...
  • Martin, S.; Griswold, W., (۲۰۰۹). Human health effects of heavy ...
  • MDEP., (۲۰۲۱). Remedial action guidelines for contaminated sites (RAGs). Maine ...
  • MEMR, (۲۰۱۴). Geology. Ministry of Energy and Mineral Resources ...
  • Mitra, S.; Chakrabortu A.J.; Tareq, A.M.; Emran, T.B.; Nainu, F.; ...
  • Nag. R.; Cummins, E., (۲۰۲۲). Human health risk assessment of ...
  • Nguyen, U.N.T., (۲۰۱۴). Removal of natural organic matter and heavy ...
  • Nordberg, G.F.; Fowler, B.A.; Nordberg, M., (۲۰۱۵). Handbook on the ...
  • Ohiagu, F.O.; Chikezie, P.C.; Ahaneku, C.C.; Chikezie, C.M., (۲۰۲۲). Human ...
  • Olawoyin, R., (۲۰۱۸): Adverse human health impacts in the anthropocene. ...
  • Pandey, S.; Kumari, N., (۲۰۲۳). Chapter ۸ - Impact assessment ...
  • Parker, G.H.; Gillie, C.E.; Miller, J.V.; Badger, D.E.; Kreider, M.L., ...
  • Pei, L.; Duo, J., (۲۰۲۲). Study on treatment of tiny ...
  • Pi, X.; Qiao, Y.; Wei, Y.; Jin, L.; Li, Z.; ...
  • Quaghebeur, W.; Mulhern, R.E.; Ronsse, S.; Heylen, S.; Blommaert, H.; ...
  • Rahman, M.S.; Reza, A.H.M.S.; Ahsan, M.A.; Siddique, M.A.B., (۲۰۲۳). Arsenic ...
  • Ravindra, K.; Mor, S., (۲۰۱۹). Distribution and health risk assessment ...
  • Safeeq, M.; Fares, A., (۲۰۱۶). Groundwater and surface water interactions in ...
  • Saha, A.; Gupta, B.S.; Patidar, S.; Martines-Villegas, N., (۲۰۲۲). Spatial ...
  • Salam, M.A.; Paul; S.C.; Noor, S.N.B.M.; Siddiqua, S.A.; Aka, T.D.; ...
  • Salami, I.R.S.; Pradita, D.P., (۲۰۲۰). The effect of aeration on ...
  • Septiono, M. A.; Roosmini, D., (۲۰۱۵). Heavy metal distribution in ...
  • Silbergeld, E.K.; Waalkes, M.; Rice, J.M., (۲۰۰۰). Lead as a carcinogen: ...
  • Singha, K.; Pandit, P.; Maity, S.; Sharma, S.R., (۲۰۲۱). Chapter ۱۱- ...
  • Smedley P. L.; Kinniburgh D. G., (۲۰۰۲). A review of ...
  • SNI, (۲۰۰۸). Metoda pengambilan contoh air tanah [Groundwater sampling method]. ...
  • SNI, (۲۰۱۸). Cara uji logam menggunakan Spektrometer Emisi Atom ICP ...
  • Sukarjo; Zulaehah, I.; Handayani, C.O.; Zu’amah, H., (۲۰۲۱). Heavy metal ...
  • Sumantri, A.; Rahmani, R.Z., (۲۰۲۰). Analisis pencemaran kromium (VI) berdasarkan ...
  • Takeuchi, M.; Yoshida, S.; Kawakami, C.; Kawakami, K.; Ito, S., ...
  • Thanki, A.; Bhattacharya, D., (۲۰۲۲). Review on the evaluation of ...
  • Thufailah, N.A., (۲۰۲۰). Penilaian Risiko Kesehatan Masyarakat dari Pemakaian Sumber ...
  • Uddin, M.H.; Rumman, M., (۲۰۲۰). Chapter: Cobalt toxicity and human ...
  • USEPA (۲۰۲۲c). Regional screening levels (RSLs) – User’s guide. United ...
  • USEPA, (۲۰۱۶). Quick guide to drinking water sample collection: second ...
  • USEPA, (۲۰۲۲a). Mercury emissions: The global context. United States Environmental ...
  • USEPA, (۲۰۲۲b). Regional screening levels (RSLs) - Equations. United States ...
  • USGS, (۲۰۱۹). Mercury in the environment. The United States Geological ...
  • Utami, D.N., (۲۰۱۹). Kajian kandungan logam berat dalam gabah (oryza ...
  • Van Ginkel, C.H., (۲۰۱۵). Water quality in the Bandung Basin. ...
  • Velusamy, S.; Roy, A.; Sundaram, S.; Mallick, T.K., (۲۰۲۱). A ...
  • Wang B.; Duan X.; Feng W.; He J.; Cao S.; ...
  • Woodward-Clyde. (۱۹۹۸). Chemical of potential concern and chemicals of potential ...
  • Xiao, J.; Wang, L.; Deng, L.; Jin, Z., (۲۰۱۹). Characteristics, ...
  • Zeng. F.; Wei, W.; Li, M.; Huang, R.; Yang, F.; ...
  • Zhai, Y.; Cao, X.; Xia, X.; Wang, B.; Teng, Y.; ...
  • Zhao, X.; Li, Z.; Wang, D.; Xu, X.; Tao, Y.; ...
  • Zhao, Y.; Gao, L.; Zha, F.; Chen, X.; Zhou, X.; ...
  • نمایش کامل مراجع