Toxicity of tri- and penta-valent arsenic, alone and in combination, to the cladoceran Daphnia carinata: the influence of microbial transformation in natural waters

Author:

He Wenxiang,Megharaj Mallavarapu,Naidu Ravi

Publisher

Springer Science and Business Media LLC

Subject

Geochemistry and Petrology,General Environmental Science,Water Science and Technology,Environmental Chemistry,General Medicine,Environmental Engineering

Reference34 articles.

1. Adema, D. (1978). Daphnia magna a test animal in acute and chronic toxicity test. Hydrobiologia, 59, 125–134.

2. Ahmann, D., Roberts, A. L., Krumholz, L. R., & Morel, F. M. M. (1994). Microbe grows by reducing arsenic. Nature, 371, 750.

3. Akter, K. F., Chen, Z., Smith, L., Davey, D., & Naidu, R. (2005). Speciation of arsenic in groundwater samples: A comparative study of CE-UV, HG-AAS and LC-ICP-MS. Talanta, 68, 406–415.

4. ANZECC (Australia & New Zealand Environment and Conservation Council). (2000). Australia and New Zealand guidelines for fresh and marine water quality. Canberra: Agriculture and Resource Management Council of Australia and New Zealand.

5. Bolan, N. S., Mahimairaja, S., Megharaj, M., Naidu, R., & Adriano, D. C. (2006). Biotransformation of arsenic in soil and aquatic environments in relation to bioavailability and bioremediation. In R. Naidu et al. (Eds.), Managing arsenic in the environment: From soil to human health (pp. 433–454). Melbourne: CSIRO Publishing.

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