Oil and Gas Research, Journal of Bioprocess Engineering and Biorefinery, Biomass and Bioenergy. Under normal circumstances, remediation of the pollution related to soil, water, and air is naturally taken care of by recycling of the natural resources. Assessing environmental and indirect human health impacts of biotechnology substances in products governed by the, Establishing new scientific and biotechnology expertise and tools to assess the human health and environmental impacts of biotechnology products and substances. This is done by collecting exposure data often with biotech-based probes and specialized instruments such as quantitative bioassays. Many modern nations have environmental biotechnology research centers that are both publicly and privately funded to advance environmental science technology. Related Journals of Environmental Biotechnology The environment, such as fish and wildlife; and/or. The Safe Environments Programme (SEP) of Health Canada's Healthy Environments and Consumer Safety (HECS) Branch develops, evaluates and validates new biotechnology and bionanotechnology tools used in the regulatory assessments of risks from products of biotechnology and potentially nanotechnology and their by-products. Environmental Biotechnology Environmental Biotechnology. Joint responsibilities include: Health Canada also regulates and conducts research on biotechnology-derived pest control products to protect human health and the environment. Different microbial metabolites such as enzymes, biosurfactants, emulsifiers, organic acids, and solvents play a significant role in bioremediation of contaminated sites with radioactive and heavy metals, chemical pesticides, and organic contaminants such as dyes and hydrocarbons in an environmentally amicable manner. Environmental biotechnology in particular is the application of processes for the protection and restoration of the quality of the environment. Bioconversion of agroindustrial waste products or municipal waste water to industrially useful products like biosurfactants, bioethanol, biogas, and electricity generation by microbial fuel cells is already being exploited as an attractive option. The field of environmental science and technology is becoming increasingly broad-based as industries look for more efficient and less polluting methods of production to comply with government regulations. The principal regulatory authority is CEPA 1999. Environmental biotechnology can be used to detect, prevent and remediate the emission of pollutants into the environment in a number of ways. In addition, Health Canada conducts biotechnology-related, environmental health research which is designed to improve the regulatory system by: Health Canada also works with other federal departments, agencies and international organizations to develop science-based tools and policies to regulate biotechnology. Sign up here as a reviewer to help fast-track new submissions. Health Canada scientists and support staff collaborate with other national and international bodies to improve research and development of innovative biotechnology and nano-based tools and assays. Agriculture - animal feed, human food, and pest control products; Environmental management - biomining/leaching of metals and minerals,municipal and industria l waste and wastewater treatment, and of chemical contaminants in soil and water, Pulp and paper industry - tree biotechnology, biopulping and biobleaching for paper and wood products, and reduction in forest industry waste; and. Aspects of microbial- mediated bioremediation process can benefit the environment by exploiting the capabilities of microorganisms that enable the utilization of noxious compounds, thereby transforming them into utilizable intermediates and value added products. The applications of environmental biotechnology are becoming a benefiting factor for the environment; the applications includes â€" genomics, proteomics, bioinformatics, sequencing and imaging processes are providing large amounts of information and new ways to improvise the environment and protect the environment. Health Canada systematically conducts monitoring as a countermeasure and foresight activity in accordance with the North Atlantic Treaty Organization (NATO) principles of intelligence gathering through surveillance and active field work. Surveillance involves recording the national and global production of biotechnology research and development activities in various sub-sectors, such as health, environment and agriculture, and from technology platforms, such as genomics, proteomics, and bio/nanotechnology. Environmental biotechnology is a field of science and engineering that utilizes organic and living systems to clean up environmental waste, prevent pollution through the development of green technologies, and improve upon industrial processes such as in the manufacture of bioplastics and biofuels through enzymatic actions. Related research involves molecular monitoring of pest control microorganisms in Canadian ecosystems for their genetic elements, their ability to inhibit the growth of or kill other microorganisms and their interactions with other pathogens. Biji Shibulal | Saif N. Al-Bahry | ... | Sanket J. Joshi, N.V. Patel College of Pure and Applied Sciences, Gujarat, India, Indian Institute of Chemical Biology, Kolkata, India, Environmental pollution: routes, causes, and microbial treatment, Environmental biodiversity: OMICS application, Microbial bioremediation of sites contaminated/affected by radioactive and heavy metals, Industrial effluent and waste water treatment (e.g., dye industries and municipal waste water), Value added products from waste (e.g., enzymes, biofuel, and microbial fuel cell). Examples of environmental and industrial biotechnology applications. The halophytes, including Salicornia bigelovii which is a species of dwarf saltwort, are examples of plants that produce biofuel yields comparable to what can be made from soybeans and other oilseed-based grains. Field work involves detecting the presence of products from environmental biotechnology applications (e.g., specific types of bioremediation and biopesticides), and measuring their persistence and fate. This is due to the fact that many synthetic industrial compounds are known to be xenobiotic, accumulating in ecosystems and living organisms since they are not easily broken down by natural processes over time. Longdom Group SA Avenue Roger Vandendriessche, 18, 1150 Brussels, Belgium Phone: +34 911 877 608Email: [email protected]. Feedstocks are useless materials produced by one industrial process that can find additional value in another process instead of being an environmental pollutant and waste product both in material and energy costs. One of the main arenas that environmental biotechnology is focused on as of 2011 includes remediation of old industrial pollution such as that of toxic metal contamination of soil or groundwater. Biotechnology provides tools and technologies that provide solutions to many of today’s global environmental challenges. We will be providing unlimited waivers of publication charges for accepted research articles as well as case reports and case series related to COVID-19. Environmental biotechnology is a multidisciplinary branch of science covering wide aspects of day-to-day life, where environmental pollution is one of the major challenges faced by environmental biotechnologists. Candidates seeking an environmental biotechnology job may pursue teaching, research, … Evaluators in the Biotechnology Section of the New Substances Assessment and Control Bureau assess the information submitted by notifiers as prescribed by the NSNR to determine whether a substance is toxic or capable of becoming toxic as defined in CEPA 1999. For enquiries, contact us. Surveillance is the routine and systematic scanning and recording of data emissions by electronic and manual methods. Cytochrome P450-Mediated Phytoremediation using Transgenic Plants: A Need for Engineered Cytochrome P450 Enzymes. The increase in population and industrialization, issues associated with agriculture (such as erosion of fertile soils and overusage of chemical pesticides), accidental-intentional release of hydrocarbons in sea and land (oil spills), generation of electronic/electrical waste releasing endocrine disruptors, and uncontrolled use of antibiotics both as medicine and in meat industries are few reasons among others, Microbial biotechnology offers environmentally friendly approaches that can be implemented effectively for environmental bioremediation.
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