Lead and cadmium content in soil, oil palm fiber, and palm kernel in the oil palm plantation with mulch application

Autores

  • Syifa Divanda Winarko University of Jambi, Jambi
  • Ermadani Ermadani University of Jambi, Jambi
  • Shally Yanova University of Jambi, Jambi

DOI:

https://doi.org/10.18378/rvads.v19i2.10336

Palavras-chave:

Mulch, Inorganic Fertilizer, Soil, Lead, Cadmium

Resumo

Solid waste in palm oil mills is waste that has the potential to have a negative impact on the environment if not used properly. One of the solid wastes from palm oil mills is empty fruit bunche (EFB) which can be used as mulch on oil palm land. The mulch and inorganic fertilizer used can contain heavy metals, such as Pb and Cd. This study was aimed to assess the heavy metal content of Pb and Cd in the soil, fibers and kernels of oil palm fruit. This study evaluated the Pb and Cd content in the soil at depths of 0 – 20 cm and 20 – 40 cm, palm fiber and palm kernel. The results showed of the study showed that the Pb and Cd content of soil on land applied with inorganic fertilizer was greater than the Pb and Cd content of soil on land applied with mulch, where on land applied with mulch the level of Pb contamination was in the very slightly contaminated category, while Cd was in the quite polluted category, and inorganic fertilizer land is heavily polluted. On land where mulch was applied, the Pb and Cd content of fiber and kernel was smaller than the Pb and Cd content of fiber and kernel on land where inorganic fertilizer was applied.

Downloads

Não há dados estatísticos.

Referências

AGUSTINA, T. Kontaminasi Logam Berat Pada Makanan Dan Dampaknya Pada Kesehatan. Teknobuga, 1(1): 53–65. 2014.

ALENGEBAWY, A.; ABDELKHALEK, S. T.; QURESHI, S. R.; WANG. M. Q. Heavy Metals and Pesticides Toxicity in Agricultural Soil and Plants: Ecological Risks and Human Health Implications. Toxics, 9(3): 42, 2021. DOI: https://doi.org/10.3390/toxics9030042

ALHADI, G. Analisis Kandungan Logam Seng (Zn) Dan Tembaga (Cu) Pada Tanah Akibat Penggunaan Pupuk Di Perkebunan Kelapa Sawit. Universitas Islam Negeri Sultan Syarif Kasim Riau. 2022. 51p.

ANYAOHAA, K. E.; SAKRABANIA, R.; PATCHIGOLLAB, K.; MOUAZENC. A. M. Critical evaluation of oil palm fresh fruit bunch solid wastes as soil amendments: Prospects and challenges. Resources, Conservation & Recycling, 136: 399-409. 2018. DOI: https://doi.org/10.1016/j.resconrec.2018.04.022

CHEN, X. X.; LIU, Y. M.; ZHAO, Q. Y.; CAO, W. Q.; CHEN, X. P.; ZOU, C. Q. Health risk assessment associated with heavy metal accumulation in wheat after long-term phosphorus fertilizer application. Environmental Pollution, 262: 114348. 2020. DOI: https://doi.org/10.1016/j.envpol.2020.114348

DEWI, T.; HANDAYANI, C. O.; HIDAYAH, A.; SUKARJO, S. Sebaran Konsentrasi Logam Berat Di Lahan Pertanian Kabupaten Wonosobo. Jurnal Tanah Dan Sumberdaya Lahan, 10(2): 515–521. 2023. DOI: https://doi.org/10.21776/ub.jtsl.2023.010.2.35

FITRIANAH, L.; PURNAMA, A. R. Sebaran Timbal Pada Tanah Di Areal Persawahan Kabupaten Sidoarjo. Journal of Research and Technology, 5(2): 106–116. 2019. DOI: https://doi.org/10.55732/jrt.v5i2.307

HAMID, Y.; TANG, L.; SOHAIL, M. I.; CAO, X.; HUSSAIN, B.; AZIZ, M. Z.; USMAN, M.; HED, Z.; YANG. An explanation of soil amendments to reduce cadmium phytoavailability and transfer to food chain. Science of the Total Environment, 660:80–96. 2019. DOI: https://doi.org/10.1016/j.scitotenv.2018.12.419

HINDARWATI, Y.; SOEPROBOWATI, T. R.; IZZATI, M.; HADIYANTO. Kontaminan Logam Berat ( Pb , Cd , Dan Cu ) pada Tanah dari Pemupukan Berbasis Jerami Padi. Jurnal Ilmu Lingkungan, 21(1): 8–14. 2023. DOI: https://doi.org/10.14710/jil.21.1.8-14

KHAN, M. A.; KHAN, S.; KHAN, A.; ALAM, M. Soil contamination with cadmium, consequences and remediation using organic amendments. Science of The Total Environment. 601: 1591–1605. 2017. DOI: https://doi.org/10.1016/j.scitotenv.2017.06.030

KHASANAH, U.; MINDARI, W.; SURYAMINARSIH, P. Kajian Pencemaran Logam Berat pada Lahan Sawah di Kawasan Industri Kabupaten Sidoarjo. Jurnal Teknik Kimia, 15(2): 73-81. 2021. DOI: https://doi.org/10.33005/jurnal_tekkim.v15i2.2545

MAHENDRA, R.; SIAKA, I. M.; SUPRIHATIN, E. I. Bioavailabilitas Logam Berat Pb dan Cd dalam Tanah Perkebunan Budidaya Kubis di Daerah Kintamani Bangli. Ecotrophic, 12(1): 42–49. 2018. DOI: https://doi.org/10.24843/EJES.2018.v12.i01.p06

MORADI, A.;. SUNG, C. T. B.; JOO, G. K.;. HANIF, A. H. M.; ISHAK. C. F. Evaluation of four soil conservation practices in a non-terraced oil palm plantation. Agronomy Journal, 104:1727–1740. 2012. DOI: https://doi.org/10.2134/agronj2012.0120

MURGIANTO, F.; EDYSON, E.; ARDIYANTO, A.; PUTRA, S. K.; PRABOWO, L. Potensi Kandungan Minyak Kelapa Sawit dengan Berbagai Tingkat Berondolan Lepas di Piringan. Jurnal Agro Industri Perkebunan, 9(2): 91–98. 2021. DOI: https://doi.org/10.25181/jaip.v9i2.2161

NOVITASARI, B. P.; ANUGROHO, F.; SUHARTO, B. Pengaruh Konsentrasi Logam Seng (Zn) dalam Tanah Tercemar terhadap Penyerapan oleh Bunga Matahari (Helianthus annuus L.) pada Fase Vegetatif. Jurnal Sumberdaya Alam Dan Lingkungan, 1–11. 2017.

NURALYKYZY, B.; WANG, P.; DENG, X.; AN, S.; HUANG, Y. Heavy Metal Contents and Assessment of Soil Contamination in Different Land-Use Types in the Qaidam Basin. Sustainability, 13(21): 12020, 2021. DOI: https://doi.org/10.3390/su132112020

PATTY, J. O.; SIAHAAN, R.; MAABUAT, P. V. Kehadiran Logam-Logam Berat (Pb, Cd, Cu, Zn) pada Air dan Sedimen Sungai Lowatag, Minahasa Tenggara - Sulawesi Utara. Jurnal Bios Logos, 8(1): 15-20. 2018. DOI: https://doi.org/10.35799/jbl.8.1.2018.20592

PUTRI, M. A.; DINDA AFRIWANA, S.; HILALIYAH PULUNGAN, S.; HASIBUAN, A. Analisis Pemanfaatan Limbah Tandan Kosong Kelapa Sawit sebagai Pupuk bagi Masyarakat Simandiangin Kab. Labuhanbatu Selatan. Journal of Health and Medical Research, 3(3), 408–412. 2023.

ROBARGE, W. P.; BOOS, D.; PROCTOR, C. Determination of Trace Metal Content of Fertilizer Source Materials Produced in North America. ACS Symposium Series, 872, 2003. DOI: https://doi.org/10.1021/bk-2004-0872.ch006

SOIL SCIENCE SOCIETY OF AMERICA. Soil Testing and Plant Analysis. In WALSH, L. M.; BEATON, J. D. (Eds). Soil Sci.Soc.Am. Madison, Wisconsin, USA. 1973.

SUHAENI; WARDI, R. Y. Analisis Kadar Logam Berat Kadmium (Cd) pada Tanaman Kangkung Darat (Ipomoea reptans Poir). Jurnal Dinamika, 7(2), 1–8. 2016.

SUKARJO; HIDAYAH, A.; ZULAEHAH, I. Pengaruh Pupuk Terhadap Akumulasi Dan Translokasi Kadmium Dan Timbal Di Tanah Dan Tanaman. Seminar Nasional Pendidikan Biologi Dan Saintek III. 205–211. 2018.

SULAEMAN; SUPARNO; EVIATI. Analisa Tanah, Tanaman, Air dan Pupuk. Balai Penelitian Tanah, Bogor. 2005.

SUTRISNO; KUNTYASTUTI, H. Pengelolaan cemaran kadmium pada lahan pertanian di indonesia. Buletin Palawija, 13(1):83–91. 2015.

WANGGE, E.; SITO, E.; MUTIARA, C. Uji Kadar Cemaran Kadmium dari dalam Tanah Sawah dan Beras di Kelurahan Lape Kecamatan Aesesa Kabupaten Nagekeo. Agrica, 14(2): 152–157, 2022. DOI: https://doi.org/10.37478/agr.v14i2.1482

YANOVA, S.; SIAGIAN, K. A. M.; GUSANTI, R. Tingkat Cemaran Logam Berat pada Air Sungai Batanghari Provinsi Jambi berdasarkan Indeks C/P (Contamination/Pollution). Jurnal Daur Lingkungan, 3(2), 62–65. 2020. DOI: https://doi.org/10.33087/daurling.v3i2.56

Downloads

Publicado

2024-05-15

Como Citar

WINARKO, S. D.; ERMADANI, E.; YANOVA, S. Lead and cadmium content in soil, oil palm fiber, and palm kernel in the oil palm plantation with mulch application. Revista Verde de Agroecologia e Desenvolvimento Sustentável, [S. l.], v. 19, n. 2, p. 95–99, 2024. DOI: 10.18378/rvads.v19i2.10336. Disponível em: https://gvaa.com.br/revista/index.php/RVADS/article/view/10336. Acesso em: 3 jul. 2024.

Edição

Seção

CIÊNCIAS AGRÁRIAS

Dados de financiamento