Passage-1
Biomass as fuel for power, heat, and transport has the highest mitigation potential of all renewable sources. It comes from agriculture and forest residues as well as from energy crops. The biggest challenge in using biomass residues is a long-term reliable supply delivered to the power plant at reasonable costs; the key problems are logistical constraints and the costs of fuel collection. Energy crops, if not managed properly, compete with food production and may have undesirable impacts on food prices. Biomass production is also sensitive to the physical impacts of a changing climate. Projections of the future role of biomass are probably overestimated, given the limits to the sustainable biomass supply, unless breakthrough technologies substantially increase productivity. Climate-energy models project that biomass use could increase nearly four-fold to around 150 – 200 exajoules, almost a quarter of world primary energy in 2050. However, the maximum sustainable technical potential of biomass resources (both residues and energy crops) without disruption of food and forest resources ranges from 80 – 170 exajoules a year by 2050, and only part of this is realistically and economically feasible. In addition, some climate models rely on biomass-based carbon capture and storage, an unproven technology, to achieve negative emissions and to buy some time during the first half of the century.
Some liquid biofuels such as corn-based ethanol, mainly for transport, may aggravate rather than ameliorate carbon emissions on a life-cycle basis. Second generation biofuels, based on lignocellulosic feedstocks – such as straw, bagasse, grass and wood – hold the promise of sustainable production that is high-yielding and emit low levels of greenhouse gases, but these are still in the R and D stage.
What is/are the present constraint/ constraints in using biomass as fuel for power generation ?
1. Lack of sustainable supply of biomass.
2. Biomass production competes with food production.
3. Bio-energy may not always be low carbon on a life-cycle basis.
Select the correct answer using the code given below:
Correct Answer :
1, 2 and 3
Solution :
The correct option is 1, 2 and 3.
Based on the provided passage, we can analyze each of the given constraints in the context of using biomass as fuel for power generation:
1. Lack of sustainable supply of biomass:
The passage explicitly states that "The biggest challenge in using biomass residues is a long-term reliable supply delivered to the power plant at reasonable costs". It also mentions that "Projections of the future role of biomass are probably overestimated, given the limits to the sustainable biomass supply". Thus, the lack of a sustainable, reliable supply is a key present constraint.
2. Biomass production competes with food production:
According to the passage, "Energy crops, if not managed properly, compete with food production and may have undesirable impacts on food prices." Furthermore, it refers to the technical potential of biomass resources "without disruption of food and forest resources", confirming that avoiding competition with food production is a major constraint in scaling up biomass production.
3. Bio-energy may not always be low carbon on a life-cycle basis:
The passage notes that "Some liquid biofuels such as corn-based ethanol, mainly for transport, may aggravate rather than ameliorate carbon emissions on a life-cycle basis." This demonstrates that bio-energy is not guaranteed to be low carbon when evaluated on a full life-cycle analysis.
Therefore, all three points act as constraints or challenges associated with using biomass as fuel. Hence, the correct combination is 1, 2 and 3.
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