Al-Abdulghani E, El-Sammak A, Al-Sarawi M (2013) Environmental assessment of Kuwait Bay: an integrated approach. J Coast Conserv 17:445–462
Article
Google Scholar
Al-Ghadban AN, El-Sammak A (2005) Sources, distribution and composition of the suspended sediments, Kuwait Bay, Northern Arabian Gulf. J Arid Environ 60:647–661
Article
Google Scholar
Al-Khayat J, Al-Mohannadi M (2006) Ecology and biology of the benthic bivalvia Amiantis umbonella (Lamarck) in Khor Al-Adaid, Qatar. Egypt J Aquat Res 32:419–430
Google Scholar
Al-Majed NB, Preston MR (2000) An assessment of the total and methyl mercury content of zooplankton and fish tissue collected from Kuwait territorial waters. Mar Pollut Bull 40:298–307
Article
CAS
Google Scholar
Al-Mohanna SY, Al- Rukhais LB, Meakins RH (2003) Oogenesis in Amiantis umbonella (Mollusca: Bivalvia) in Kuwait Bay, Kuwait. J Mar Biol Assoc UK 83:1065–1072
Article
Google Scholar
Al-Sarawi HA, Jha AN, Al-Sarawi MA, Lyons BP (2015) Historic and contemporary contamination in the marine environment of Kuwait. Mar Pollut Bull 100:621–628
Article
CAS
Google Scholar
Alshemmari HA, Alotaibi Y, Owens RO (2010) Trace metal concentrations in the surface sediments of Sulaibikhat Bay Kuwait. Kuwait J Sci Eng 37:87–110
CAS
Google Scholar
Alyahya H, El-Gendy AH, Al Farraj S, El-Hedeny M (2011) Evaluation of heavy metal pollution in the Arabian Gulf using the clam (Meretrix Linnaeus), 1758. Water Air Soil Pollut 214:499–507
Article
CAS
Google Scholar
Al-Zamel AZ, Bou-Rabee F, Al-Sarawi MA, Olszewski M, Bem H (2006) Determination of the sediment deposition rates in the Kuwait Bay using Cs-137 and Pb-210. Nukleonika 51:S39–S44
CAS
Google Scholar
Al-Zamel A, Firyal A, Bou-Rabee F, Lesniewska E, Szynkowska M, Długosz M, Bem H (2010) Total mercury distribution in sediment cores from Kuwait Bay. Int J Environ Stud 67:505–513
Article
CAS
Google Scholar
Amisah S, Adjei-Boateng D, Obirikorang KA, Quagrainie KK (2009) Effects of clam size on heavy metal accumulation in whole soft tissues of Galatea paradoxa (Born, 1778) from the Volta estuary, Ghana. Int J Fish Aquat Toxicol 1:14–21
CAS
Google Scholar
Besada V, Sericano JL, Schultze F (2014) An assessment of two decades of trace metals monitoring in wild mussels from the Northwest Atlantic and Cantabrian coastal areas of Spain, 1991–2011. Environ Int 71:1–12
Article
CAS
Google Scholar
Blackmore G, Wang WX (2003) Inter-population differences in Cd, Cr, Se, and Zn accumulation by the green mussel Perna viridis acclimated at different salinities. Aquat Toxicol 62:205–218
Article
CAS
Google Scholar
Bosch DT, Dance SP, Moolenbeek RG, Oliver PG (1995) Seashells of Eastern Arabia. Motivate Press, Dubai
Google Scholar
Boyden CR (1974) Trace element content and body size in molluscs. Nature 251:311–314
Article
CAS
Google Scholar
Boyden CR (1977) Effect of size upon metal content of shellfish. J Mar Biol Assoc UK 57:675–714
Article
CAS
Google Scholar
Boyden CR, Phillips DJ (1981) Seasonal variation and inherent variability of trace elements in oysters and their implications for indicator studies. Mar Ecol Prog Ser 30:29–40
Article
Google Scholar
Bryan GW, Langston WJ, Hummerstone LG, Burt GR (1985) A guide to the assessment of heavy metal contamination in estuaries using biological indicators. Occ Publ Mar Biol Assoc UK 4:1–92
Google Scholar
Bu-Olayan AH, Subrahmanyam MN, Al-Sarawi M, Thomas BV (1998) Effects of the Gulf War oil spill in relation to trace metals in water, particulate matter, and PAHs from the Kuwait Coast. Environ Int 24:789–797
Article
CAS
Google Scholar
Burger J, Gochfeld M, Batang Z, Alikunhi N, Al-Jahdali R, Al-Jebreen D, Aziz MA et al (2014a) Fish consumption behavior and rates in native and non-native people in Saudi Arabia. Environ Res 133:141–148
Article
CAS
Google Scholar
Burger J, Gochfeld M, Batang Z, Alikunhi N, Al-Jahdali R, Al-Jebreen D, Aziz MA, Al-Suwailem A (2014b) Interspecific and locational differences in metal levels in edible fish tissue from Saudi Arabia. Environ Monit Assess 186:6721–6746
Article
CAS
Google Scholar
BuTayban NA, Preston MR (2004) The distribution and inventory of total and methyl mercury in Kuwait Bay. Mar Pollut Bull 49:930–937
Article
CAS
Google Scholar
de Mora S, Fowler SW, Wyse E, Azemard S (2004) Distribution of heavy metals in marine bivalves, fish and coastal sediments in the Gulf and Gulf of Oman. Mar Pollut Bull 49:410–434
Article
CAS
Google Scholar
Edward FB, Yap CK, Ismail A, Tan SG (2009) Interspecific variation of heavy metal concentrations in the different parts of tropical intertidal bivalves. Water Air Soil Pollut 196:297–309
Article
CAS
Google Scholar
Fischer H (1983) Shell weight as an independent variable in relation to cadmium content of molluscs. Mar Ecol Prog Ser 12:59–75
Article
CAS
Google Scholar
Fu F, Wang Q (2011) Removal of heavy metal ions from wastewaters: a review. J Environ Manag 92:407–418
Article
CAS
Google Scholar
Gagné F, Blaise C, Pellerin J, Strand J (2006) Health status of Mya arenaria bivalves collected from contaminated sites in Canada (Saguenay Fjord) and Denmark (Odense Fjord) during their reproductive period. Ecotoxicol Environ Saf 64:348–361
Article
CAS
Google Scholar
Gagnon C, Fisher NS (1997) Bioavailability of sediment-bound methyl and inorganic mercury to a marine bivalve. Environ Sci Technol 31:993–998
Article
CAS
Google Scholar
Goldberg ED, Bowen VT, Farrington JW, Harvey G, Martin JH, Parker PL, Risebrough RW, Robertson W, Schneider E, Gamble E (1978) The mussel watch. Environ Conserv 5:101–125
Article
CAS
Google Scholar
Hashim A, Hajjaj M (2005) Impact of desalination plants fluid effluents on integrity of seawater, with the Arabian Gulf in perspective. Desalination 182:373–393
Article
CAS
Google Scholar
Hédouin L, Metian M, Teyssié JL, Fowler SW, Fichez R, Warnau M (2006) Allometric relationships in the bioconcentration of heavy metals by the edible tropical clam Gafrariumtumidum. Sci Total Environ 366:154–163
Article
CAS
Google Scholar
Hédouin L, Bustamante P, Churlaud C, Pringault O, Fichez R, Warnau M (2009) Trends in concentrations of selected metalloid and metals in two bivalves from the coral reefs in the SW lagoon of New Caledonia. Ecotoxicol Environ Saf 72:372–381
Article
CAS
Google Scholar
Hübner R, Astin KB, Herbert RJ (2009) Comparison of sediment quality guidelines (SQGs) for the assessment of metal contamination in marine and estuarine environments. J Environ Monit 11:713–722
Article
CAS
Google Scholar
Jenkins RL, Scheybeler BJ, Smith ML, Baird R, Lo MP, Haug RT (1981) Metals removal and recovery from municipal sludge. J Water Pollut Control Fed 53:25–32
CAS
Google Scholar
Langston WJ, Zhou M (1987) Cadmium accumulation, distribution and elimination in the bivalve Macoma balthica: neither metallothionein nor metallothionein-like proteins are involved. Mar Environ Res 21:225–237
Article
CAS
Google Scholar
Lattermann S, Höpner T (2008) Environmental impact and impact assessment of seawater desalination. Desalination 220:1–5
Article
CAS
Google Scholar
Lauenstein GG, Robertson A, O’Connor TP (1990) Comparison of trace metal data in mussels and oysters from a mussel watch programme of the 1970s with those from a 1980s programme. Mar Pollut Bull 21:440–447
Article
CAS
Google Scholar
Luoma SN, Rainbow PS (2008) Metal contamination in aquatic environments. Science and lateral management. Cambridge University Press, Cambridge
Google Scholar
Lyons BP, Barber JL, Rumney HS, Bolamb TPC, Bersuder P, Law RJ, Mason C, Smith AJ, Morris S, Devlin MJ, Al-Enezi M, Massoud MS, Al-Zaidan AS, Al-Sarawi HA (2015) Baseline survey of marine sediments collected from the State of Kuwait: PAHs, PCBs, brominated flame retardants and metal contamination. Mar Pollut Bull 100:629–636
Article
CAS
Google Scholar
Maanan M (2008) Heavy metal concentrations in marine molluscs from the Moroccan coastal region. Environ Pollut 153:176–183
Article
CAS
Google Scholar
Metian M, Warnau M, Cosson RP, Oberhänsli F, Bustamante P (2008) Bioaccumulation and detoxification processes of Hg in the king scallop Pecten maximus: field and laboratory investigations. Aquat Toxicol 90:204–213
Article
CAS
Google Scholar
Naser HA (2013) Assessment and management of heavy metal pollution in the marine environment of the Arabian Gulf: a review. Mar Pollut Bull 72:6–13
Article
CAS
Google Scholar
Naser HA (2014) Marine ecosystem diversity in the Arabian Gulf: threats and conservation. In: Grillo O (ed) Biodiversity: the dynamic balance of the planet. IntechOpen, London, pp 297–328
Google Scholar
Negri A, Burns K, Boyle S, Brinkman D, Webster N (2006) Contamination in sediments, bivalves and sponges of McMurdo Sound, Antarctica. Environ Pollut 143:456–467
Article
CAS
Google Scholar
Pan K, Wang WX (2008) The subcellular fate of cadmium and zinc in the scallop Chlamys nobilis during waterborne and dietary metal exposure. Aquat Toxicol 90:253–260
Article
CAS
Google Scholar
Pan K, Wang WX (2009) Biodynamics to explain the difference of copper body concentrations in five marine bivalve species. Environ Sci Technol 43:2137–2143
Article
CAS
Google Scholar
Pan K, Wang WX (2012) Trace metal contamination in estuarine and coastal environments in China. Sci Total Environ 421:3–16
Article
CAS
Google Scholar
Phillips DJH (1976) The common mussel Mytilus edulis as an indicator of pollution by zinc, cadmium, lead and copper. I. Effects of environmental variables on uptake of metals. Mar Biol 38:59–69
Article
CAS
Google Scholar
Phillips DJH (1980) Quantitative aquatic biological indicators: their use to monitor trace metal and organochlorine pollution. Applied Science Publishers, London
Google Scholar
Phillips DJH (1990) Use of macroalgae and invertebrates as monitors of metal levels in estuaries and coastal waters. In: Furness RW, Rainbow PS (eds) Heavy metals in the marine environment. CRC Press, Boca Raton, pp 81–99
Google Scholar
Rainbow PS (2002) Trace metal concentrations in aquatic invertebrates: why and so what. Environ Pollut 120:497–507
Article
CAS
Google Scholar
Reinfelder JR, Fisher NS, Luoma SN, Nichols JW, Wang WX (1998) Trace element trophic transfer in aquatic organisms: a critique of the kinetic model approach. Sci Total Environ 219:117–135
Article
CAS
Google Scholar
Reiss MJ (1989) The allometry of growth and reproduction. Cambridge University Press, Cambridge
Book
Google Scholar
Saavedra Y, González A, Fernández P, Blanco J (2004) Interspecific variation of metal concentrations in three bivalve mollusks from Galicia. Arch Environ Contam Toxicol 47:341–351
Article
CAS
Google Scholar
Saeedi H (2012) Availability of venerid clam, Amiantis umbonella as potential metal bioindicator in Bandar Abbas coast, the Persian Gulf. Egypt J Aquat Res 38:93–103
Article
Google Scholar
Saeedi H, Ardalan AA (2010) Incidence and biology of Arcotheres tivelae (Crustacea: Decapoda) in Amiantis umbonella (Bivalvia: Veneridae) on the northern coast of the Persian Gulf, Iran. J Mar Biol Assoc UK 90:655–661
Article
Google Scholar
Schartup AT, Balcom PH, Mason RP (2014) Sediment-porewater partitioning total sulfur and methylmercury production in estuaries. Environ Sci Technol 48:954–960
Article
CAS
Google Scholar
Sheppard C, Al-Husiani M, Al-Jamali F et al (2010) The Gulf: a young sea in decline. Mar Pollut Bull 60:13–38
Article
CAS
Google Scholar
Singh YT (2016) Relationships between environmental factors and biological parameters of Asian wedge clam, Donax scortum, morphometric analysis, length-weight relationship and condition index: a first report in Asia. J Mar Biol Assoc UK 97:1617–1633
Article
Google Scholar
Sokołowski A, Wołowicz M, Hummel H, Smolarz-Górska K, Fichet D, Radenac G, Thiriot-Quiévreux C, Namieśnik J (2004) Abnormal features of Macoma balthica (Bivalvia) in the Baltic Sea: alerting symptoms of environmental adversity. Mar Pollut Bull 49:17–22
Article
CAS
Google Scholar
Sokolowski A, Wolowicz M, Hummel H (2007) Metal sources to the Baltic clam Macoma balthica (Mollusca: Bivalvia) in the southern Baltic Sea (the Gulf of Gdansk). Mar Environ Res 63:236–256
Article
CAS
Google Scholar
Strong CR, Luoma SN (1981) Variations in the correlation of body size with concentrations of Cu and Ag in the bivalve Macoma balthica. Can J Fish Aquat Sci 38:1059–1064
Article
CAS
Google Scholar
Tarique Q, Burger J, Reinfelder JR (2012) Metal concentrations in organs of the clam Amiantis umbonella and their use in monitoring metal contamination of coastal sediments. Water Air Soil Pollut 223:2125–2136
Article
CAS
Google Scholar
Tarique Q, Burger J, Reinfelder JR (2013) Relative importance of burrow sediment and pore water to the accumulation of trace metals in the clam Amiantis umbonella. Arch Environ Contam Toxicol 65:89–97
Article
CAS
Google Scholar
Wang WX (2002) Interactions of trace metals and different marine food chains. Mar Ecol Prog Ser 243:295–309
Article
CAS
Google Scholar
West GB, Brown JH, Enquist BJ (1997) A general model for the origin of allometric scaling laws in biology. Science 276:122–126
Article
CAS
Google Scholar
Yu R, Yuan X, Zhao Y, Hu G, Tu X (2008) Heavy metal pollution in intertidal sediments from Quanzhou Bay China. J Environ Sci 20:664–669
Article
CAS
Google Scholar
Zorba MA, Jacob PG, Al-Bloushi A, Al-Nafisi RR (1992) Clams as pollution bio-indicators and depuration. Sci Total Environ 120:195–204
Article
Google Scholar