By Min-Tze Liong
This publication makes a speciality of using microorganisms with regards to agriculture, aquaculture and comparable fields, starting from biofertilizers to chook construction. the newest recommendations also are incorporated to supply insights into the limitless potentials of microorganisms in those areas.
Individual chapters discover issues comparable to probiotics in bird, biopurification of wastewater, changing agrowastes into value-added purposes and items, rice cultivation, surfactants and bacteriocin as biopreservatives, bioplastics, crop productiveness, biofloc, and the creation of common antibiotics. This quantity should be of specific curiosity to scientists, policymakers and business practitioners operating within the fields of agriculture, aquaculture and public health.
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Additional info for Beneficial Microorganisms in Agriculture, Aquaculture and Other Areas
2012). Currently, significant interest is developed in some advanced world nations such as Australia, the USA, Thailand, Taiwan, and Mexico (Borowitzka and Borowitzka 1989a, b; Wong and Chan 1990; Renaud et al. 1994). Biotreatment with microalgae is particularly attractive because of their photosynthetic capabilities, converting solar energy into useful biomasses and incorporating nutrients such as nitrogen and phosphorus causing eutrophication (De la Nou¨e and De Pauw 1988). This fascinating idea launched some 55 years ago in the USA by Oswald and Gotaas (1957) has since been intensively tested in many countries (Shelef and Soeder 1980; De Pauw and Van Vaerenbergh 1983).
1995; Pe´rez et al. 1998), landfill leachate (Wang and Banks 2007), municipal wastewater (Bodkhe 2008), brewery wastewater (Leal et al. 1998), slaughterhouse wastewater (Ruiz et al. 1997), drug wastewater (Gangagni Rao et al. 2005), distillery wastewater (Acharya et al. 2008), beet sugar water (Farhadian et al. 2007), and wastewater from icecream manufacturing (Hawkes et al. 1995; Monroy et al. 1994). Borja and Banks (1994b, 1995b) have also utilized anaerobic filter for POME treatment. In general, anaerobic filter is capable of treating wastewaters to give good effluent quality with at least 70 % of COD removal efficiency with methane composition of more than 50 % (Poh and Chong 2009).
6 %. Another supported study was performed in this respect (Oswald et al. 1967; Parhad and Rao 1976). The biotreatment of wastewaters with algae to remove nutrients such as nitrogen and phosphorus has been previously reported (Shi et al. 2007; Zhu et al. 2008). Utilization of Microorganisms for Biopurification of Wastewaters (Agricultural. . 33 Field experiments reported by Gale (1986) indicated that live photosynthetic microalgae have an effective role in metal detoxification of mine wastewater.