tôi yêu bản dịch1. IntroductionTreatment ofwastewaterwith microalgal c dịch - tôi yêu bản dịch1. IntroductionTreatment ofwastewaterwith microalgal c Anh làm thế nào để nói

tôi yêu bản dịch1. IntroductionTrea

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1. Introduction
Treatment ofwastewaterwith microalgal cultures has the major advantage
of producing biomass that can be valorized to produce
bioenergy or molecules of interest. In fact, energy production and resource
recovery have been identified as one of the main challenges for
wastewater treatment systems of the future by relevant initiatives
such as the recently created European Innovation Partnership on
Water. However, microalgal wastewater treatment systems such as
high rate algal ponds (HRAP) have some bottlenecks like biomass separation
[1,2]. Since the invention and development of HRAP in California
in the 1950s, the problemof algal biomass separation has remained unsolved.
The main constraint is related to the fact that wastewater is a
product without market value, and therefore any added cost to the
treatment system (such as the implementation of an intensive harvesting
system) cannot be recovered. Nevertheless, this paradigm may
change in the near future if biomass is valorized to obtain bioenergy
or resources, since biomass will then have a market value.
Microalgal harvesting and thickening can be achieved by means of
several techniques including coagulation–flocculation and sedimentation,
flotation, centrifugation, magnetic separation and electrophoresis
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I love a room1. IntroductionTreatment ofwastewaterwith microalgal cultures has the major advantageof producing biomass that can be valorized to producebioenergy or molecules of interest. In fact, energy production and resourcerecovery have been identified as one of the main challenges forwastewater treatment systems of the future by relevant initiativessuch as the recently created European Innovation Partnership onWater. However, microalgal wastewater treatment systems such ashigh rate algal ponds (HRAP) have some bottlenecks like biomass separation[1.2]. Since the invention and development of HRAP in Californiain the bearer, the problemof algal biomass separation has remained unsolved.The main constraint is related to the fact that wastewater is aproduct without market value, and therefore any added cost to thetreatment system (such as the implementation of an intensive bySystem) cannot be recovered. Nevertheless, this paradigm maychange in the near future if the biomass is valorized to obtain bioenergyor resources, since biomass will then have a market value.By Microalgal and thickening can be achieved by means ofseveral techniques including coagulation-flocculation and sedimentation,centrifugation, flotation, magnetic separation and electrophoresis
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Kết quả (Anh) 2:[Sao chép]
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1. Introduction
Treatment microalgal cultures has the major ofwastewaterwith Advantage
of producing biomass có thể valorized to tạo
Bioenergy or molecules of interest. In fact, energy production and resource
recovery Identified as one past tense of the main Challenges for
Wastewater treatment systems of the future by the relevant Initiatives
như the European Innovation Partnership on mới created
Water. Tuy nhiên, microalgal Wastewater treatment systems như
high rate algal ponds (Hrap) have some bottlenecks like biomass separation
[1,2]. Since the invention and development of Hrap in California
in the 1950s, the algal biomass problemof has remained unsolved separation.
The main constraint is related to the fact mà Wastewater is a
product without market value, and therefore any added cost to the
treatment system (vd as an implementation of an intensive the harvesting
system) can not be Recovered. Nevertheless, this garment paradigm
change in the near future if biomass is valorized lấy Bioenergy
or resources, since biomass will then have a market value.
microalgal harvesting and thickening can be Achieved by means clustering of
coagulation-flocculation vài TECHNIQUES gồm and sedimentation,
flotation, centrifugation, magnetic separation and electrophoresis
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