Profil Plumbum (Pb) dan Cadmium (Cd) sebagai Kontaminan Dampak Penggunaan Agrokimia serta Remediasi Biji Kedelai Menggunakan Swelling Agent pada Khelasi dengan Asam Sitrat

Sapto Priyadi, Purnama Darmaji, Umar Santoso, Pudji Hastuti

Abstract


This research were aimed to know the plumbum (Pb) and cadmium (Cd) profile on soybean seeds as contaminants of the impact use of agrochemistry material impact and to know of swelling agent of N,N-dimethylformamide (DMF) needs at certain level of pH in chelation with citric acid. The results showed that the content of Pb in soybean seeds at cultivation system agrochemistry materials i.e. 0.63 ppm, while cultivation system without agrochemistry materials i.e. 0.46 ppm. Cd content in soybean seeds at cultivation system agrochemistry materials i.e. 0.05 ppm and the cultivation system without agrochemistry materials i.e. 0.1 ppm. Acceptable daily intake in terms of Pb content in soybean after treatment increases to 2.93 times compared before treatment (11.3379 to 33.2099 g per body weight per day). Acceptable daily intake in terms of the content of the Cd in soybean after treatment increases to 5.26 times compared before treatment. The value of the bio-concentration factor which expressed an accumulation of Pb in soybean seeds on both cultivation is low system (BCF<250), while for Cd is a moderate to high level (1.000<BCF>250). Cd reduction on soybeans seeds for all chelation treatment was maximum (not detected-detection limits was 0.01 ppm), while the highest reduction of Pb occurs at swelling agent N, N-dimethylformamide 15 mL at pH 10.


Keywords


cadmium, chelation, heavy metal, plumbum, swelling-agent

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References


Balia, R.L., Harlia, E., Denny & Suryanto. 2007. Keamanan Pangan Hasil Ternak Ditinjau Dari Cemaran Logam Berat. Fakultas Peternakan Universitas Padjadjaran. blogs.unpad.ac.id/roostitabalia/wp-content. (30 Januari 2010).

Charlena. 2004. Pencemaran logam berat timbal (Pb) dan (Cd) pada sayur-sayuran. Falsafah Sain (PSL 702), Program Pascasarjana/S3/Institut Pertanian Bogor. http://www.scribd.com/doc. (30 Januari 2010).

Drazic, G & Mihailovic, N. 2005. Modification of cadmium toxicity in soybean seedlings by salicylic acid. Plant Sci 168: 511–517.

Gonzales, A.G & Horrador, M.A. (2007). A pratical guide to analytical methode validation, including measurement uncertainty and accuracy profiles. TrAC 26: 227–238. Herjuna, S. 2011. Bahan humat sebagai amelioran–abu terbang sebagai amelioran. repository.ipb.ac.id (17 Maret 2012).

Ismail & Hanudin, E. 2005. Degradasi mineral batuan oleh asam-asam organik. Jurnal Ilmu Tanah dan Lingkungan 5(1): 1–17.

Li, Q., Chai, L., Wang, Q., Yang, Z., Yan, H & Wang Y. 2010. Fast esterifikasi of spent grain for enhanced heavy metal ions adsorption. Bioresour. Technol 101: 3796–3799.

Mendoza-Co´zatl, D.G., Jobe, T.O., Hauser, F & Schroeder, J.I. 2011. Long-distance transport, vacuolar seques-tration, tolerance, and transcriptional responses induced by cadmium and arsenic. Current Opinion in Plant Biology 14(5): 554–562.

Shaha, B.A., Shahb, A.V., Bhandaria, B.N & Bhatta, R.R. 2008. Synthesis, characterization and chelation ion-exchange studies of a resin copolymer derived from 8- hydroxyquinoline-formaldehyde-catechol. J Iran. Chem Soc 5(2): 252–261.

Sridhar, S., Kulanthaipandi, P., Arasu, P.T., Thanikachalam, V & Manikandan, G. 2009. Protonating and chelating efficiencies of some biologically important thiocarbo-nohydrazides in 60%(v/v) ethanol-water system by potentiometric and spectrophotometric methods. World Journal of Chemistry 4(2) : 133–140.

Ullah, S. 2007. Chemically enhanced phytoextraction of lead from contaminated soil. Thesis Doctor. Institute of Soil

& Environment Sciences University of Agriculture, Faisalabad Pakistan.

Yong, Z., Bo-Han, L., Qing-Ru, Z., Min, Z & Ming, L. 2008. Surfactant linear alkylbenzene sulfonate effect on soil Cd fractions and Cd distribution in soybean plant in pot experiment. Pedosphere 18(2): 242-247.

Zander, N.E. 2009. Chelating Polymers and Environmental Remediation. Army Research Laboratory Aberdeen

Proving Ground, ARL-CR-0623, MD 21005–5069.

Zheljazkov,V.D., Craker, L.E & Xing, B. 2006. Effects of Cd, Pb, and Cu on growth and essential oil contents in dill, peppermint, and basil. Environ Exp Bot 58: 9–16.




DOI: http://dx.doi.org/10.31258/jnat.15.1.45-51

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